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Writing a Research Paper

Asme journals digital submission tool guidelines and information, writing a research paper or technical brief.

Only original contributions to the engineering literature are accepted for publication; work should incorporate substantial information not previously published.

Permissions

If a submission contains excerpts from other copyrighted material (including without limitation any diagrams, photographs, figures or text), it is the responsibility of the authors to acquire in writing all necessary rights from third parties to include those materials in a submission. In addition, appropriate credit for that third-party material must be included in footnotes, figure/table captions, Acknowledgements, References or Bibliography. This is part of the Terms and Conditions of the Copyright Transfer Agreement required form each author prior to publication of an accepted submission.

Resources The Office of Research Integrity has the following guide that may be a useful reference: Avoiding Plagiarism, Self-Plagiarism, and Other Questionable Writing Practices: A Guide to Ethical Writing.

Accuracy It is of the greatest importance that all technical, scientific, and mathematical information contained in the paper be checked with the utmost care.

It is ASME policy that SI units of measurement be included in all papers. When U.S. customary units are given preference, the SI equivalent should be provided in parentheses or in a supplementary table. When preference is given to SI units, the U.S. customary units should be provided in parentheses or in a supplementary table.

A research paper should not exceed 12,000 words. Beyond this amount, a mandatory excess-page charge can be assessed. These charges are described here: Publication Charges .

To estimate figures and tables:

  • 1 journal page = 1000 words
  • Half-journal page or a single column = 500 words
  • Half-column = 250 words
  • Quarter column = 125 words.

The Editor reserves the right to send papers that exceed the length limitation back to the author(s) for shortening before initiating the review process.

Elements of a Paper

The basic elements of a paper or brief are listed below in the order in which they should appear:

  • author names and affiliations
  • body of paper
  • acknowledgments
  • nomenclature
  • figures and tables

Text: 9 or 10 pt. Times Roman medium (or equivalent typeface), justified, with single line spacing

The title of the paper should be concise and definitive.

Author Names and Affiliations

It is ASME policy that all those who have participated significantly in the technical aspects of a paper be recognized as co-authors or cited in the acknowledgments. Author name should consist of first name (or initial), middle initial, and last name. The author affiliation should consist of the following, as applicable, in the order noted:

  • university or company (with department name or company division)
  • mailing address
  • city, state, zip code
  • country name (other than the U.S.)
  • e-mail (university or company email addresses should be used whenever possible)

An abstract (250 words maximum) should open the paper or brief. The purpose of the abstract is to give a clear indication of the objective, scope, and results so that readers may determine whether the full text will be of particular interest to them.

The text should be organized into logical parts or sections. The purpose of the paper should be stated at the beginning, followed by a description of the problem, the means of solution, and any other information necessary to properly qualify the results presented and the conclusions. The results should be presented in an orderly form, followed by the author'/s conclusions.

Headings and subheadings should appear throughout the work to divide the subject matter into logical parts and to emphasize the major elements and considerations. Parts or sections may be numbered, if desired, but paragraphs should not be numbered.

Equations should be numbered consecutively beginning with (1) to the end of the paper, including any appendices. The number should be enclosed in parentheses and set flush right in the column on the same line as the equation. It is this number that should be used when referring to equations within the text. Equations should be referenced within the text as "Eq. (x)." When the reference to an equation begins a sentence, it should be spelled out, e.g., "Equation (x)."

Formulas and equations should be created to clearly distinguish capital letters from lowercase letters. Care should be taken to avoid confusion between the lowercase "l"(el) and the numeral one, or between zero and the lowercase "o." All subscripts, superscripts, Greek letters, and other symbols should be clearly indicated.

In all mathematical expressions and analyses, any symbols (and the units in which they are measured) not previously defined in nomenclature should be explained. If the paper is highly mathematical in nature, it may be advisable to develop equations and formulas in appendices rather than in the body of the paper.

All figures (graphs, line drawings, photographs, etc.) should be numbered consecutively and have a caption consisting of the figure number and a brief title or description of the figure. This number should be used when referring to the figure in text. Figure references should be included within the text in numerical order according to their order of appearance. Figures should be referenced within the text as "Fig. 1." When the reference to a figure begins a sentence, the abbreviation "Fig." should be spelled out, e.g., "Figure 1." A separate list of figure numbers and their respective captions should be included at the end of the paper (for production purposes only). ASME accepts .tiff (.tif) or .eps file formats for figures.

  • TIFF (Tag Image File Format) is for bitmap images (spatially mapped array of bits).
  • EPS (Encapsulated Postscript) is for vector graphics (mathematical expressions of geometrical primitives).

Images created in Word can opened in Adobe Acrobat and saved as .tif or .eps

Figure files greater than 15MB should be checked to see if layers were merged.

All tables should be numbered consecutively and have a caption consisting of the table number and a brief title. This number should be used when referring to the table in text. Table references should be included within the text in numerical order according to their order of appearance. Tables should be inserted as part of the text as close as possible to its first reference — with the exception of those tables included at the end of the paper as an appendix. A separate list of table numbers and their respective captions should be included at the end of the paper (for production purposes only).

Video Files

Currently, the ASME Journal Tool does not accommodate the submission of video files. Authors can contact the Editor by email if they have video files. If accepted by the Editor for review, ASME will provide information for transferring the files by FTP.

Video files should augment a figure that is included in the paper since they will be included as part of the peer-review of the paper, and if accepted for publication, part of the archival version of the paper.

The following file formats can be accepted for video files:

Supplemental Material

Go to “ Supplemental Material ” for information on this.

Acknowledgments

Acknowledgments may be made to individuals or institutions not mentioned elsewhere in the work who have made an important contribution.

Funding Information

Funding information provided will be placed at the end of the Acknowledgment section.

Nomenclature

Nomenclature should follow customary usage. For reference, consult American National Standards Institute (ANSI) recommendations. The nomenclature list should be in alphabetical order (capital letters first, followed by lowercase letters), followed by any Greek symbols, with subscripts and superscripts last, identified with headings.

Sample Nomenclature

  • Pages must be paginated.
  • Highly technical terms or phraseology must be explained and defined.
  • The use of the first person and reference to individuals should be made in such a manner as to avoid personal bias.
  • Company names should be mentioned only in the acknowledgments.
  • All papers should be concise regardless of length.
  • Long quotations should be avoided by referring to sources.
  • Illustrations and tables must be kept to a practicable minimum.
  • Detailed drawings, lengthy test data and calculations, and photographs not integral to the understanding of the subject, should be omitted.
  • Equations should be kept to a reasonable minimum, and built-up fractions within sentences should be avoided.
  • Spell out all acronyms on first use. Put the acronym in parentheses immediately after the spelled-out term.
  • All lines of the initial submission must be numbered.

Within the text, references should be cited in numerical order according to their order of appearance. The numbered reference citation within text should be enclosed in brackets.

Example: It was shown by Prusa [1] that the width of the plume decreases under these conditions.

All references must include a DOI.

In the case of two citations, the numbers should be separated by a comma [1,2]. In the case of more than two references, the numbers should be separated by a dash [5-7].

Note: ASME primarily uses the Chicago Manual of Style for reference format. Authors are encouraged to seek out precise instructions via: http://www.ChicagoManualofStyle.org. ASME does not allow references to Wikipedia.

Sample References

References should be listed together at the end of the paper; footnotes should not be used for this purpose.

References should be arranged in numerical order according to the sequence of citations within the text. Each reference should include the last name of each author followed by initials.

Website Content

  • [2] Wayne, John “John Cowboy Videos 2009,” YouTube video, 7:00, November 13, 2009, http://www.you tube.com/ watch?v= aBcDeFgH9yz.
  • [3] “Apple Privacy Policy,” last modified February 4, 2009, accessed July 19, 2010, http://www.apple.com/intl/en/privacypolicy.html.
  • [17] “WD2000: Visual Basic Macro to Assign Clipboard Text to a String Variable,” revision 1.3, Microsoft Help and Support, last modified November 23, 2006, http://support.microsoft.com/kb/212730.
  • Note: If a site ceases to exist before publication, or if the information is modified or deleted, this must be included: [8] As of February 22, 2013, Sullivan was claiming on her website that … (a claim that had disappeared from her page by March 4, 2013).

Journal Articles and Papers in Serial Publications

  • [3] Adams, Z., 2014, “Bending of an Infinite Beam on an Elastic Substrate,” ASME J Appl. Mech., 3, pp. 221-228.
  • [9] Zhang, T. W., Khun, C., Liu, Q., and Miller, A. P., 2011, “Self-Healing Techniques,” Nature, 332(6662), pp. 888-892.

Textbooks and Monographs

  • [10] Gibson, T.A., and Tucker, M. T., 2008, The Big Book of Cellular Studies, John Wiley and Sons, NY.

Chapter Within a Book

  • [32] Stevens, T. T., 1999, “Stochastic Fields and Their Digital Simulation,” Stochastic Methods. T. A. Sulle, and M. Siiu, eds., Martinius Publishers, Dordrecht, Germany, pp. 22-36.

Individual Conference Papers/Papers in Compiled Proceedings/Collection of Works by Numerous Authors

  • [21] Wions, T. T., and Mills, C. D., 2006, “Structural Dynamics in Parallel Manipulation,” Proceedings of the IDETC/CIE, New Orleans, LA, September 10-13, 2005, ASME Paper No. DETC2005-99532, pp. 777-798.

Theses and Technical Reports

  • [1] Oligaria, T. T., Fredy, C. W., Popullo, A. Z., and Tucker, M. A., 20111, “Characterization of PKM Dynamics,” SAE Technical Paper No. 2011-02-8345, 07ATC-96.
  • [25] Mollen, T., P., 2014, “Use of General Nonlinear Material in Articulated Systems,” Ph.D. dissertation, University of Boston, Boston, MA.
  • [27] Clinton, D., 2013, “Review of Rocket Technology,” NASA Report No. NASA RE-8842.

Books Consulted Online

  • [23] Smith, John, 2014, A Dog’s Life in Berlin. Oxford University Press, New York. Doi: 10.1055/acprof.oso/97890.0394.000.

Citing ASME Journal Titles

In order to improve the accuracy of citation data collection, ASME is standardizing on the following abbreviations for the titles in the ASME Journal Program. Authors should use these abbreviations for ASME titles in their references:

Journal Statements:

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Computer Science > Machine Learning

Title: deep learning in earthquake engineering: a comprehensive review.

Abstract: This article surveys the growing interest in utilizing Deep Learning (DL) as a powerful tool to address challenging problems in earthquake engineering. Despite decades of advancement in domain knowledge, issues such as uncertainty in earthquake occurrence, unpredictable seismic loads, nonlinear structural responses, and community engagement remain difficult to tackle using domain-specific methods. DL offers promising solutions by leveraging its data-driven capacity for nonlinear mapping, sequential data modeling, automatic feature extraction, dimensionality reduction, optimal decision-making, etc. However, the literature lacks a comprehensive review that systematically covers a consistent scope intersecting DL and earthquake engineering. To bridge the gap, the article first discusses methodological advances to elucidate various applicable DL techniques, such as multi-layer perceptron (MLP), convolutional neural network (CNN), recurrent neural network (RNN), generative adversarial network (GAN), autoencoder (AE), transfer learning (TL), reinforcement learning (RL), and graph neural network (GNN). A thorough research landscape is then disclosed by exploring various DL applications across different research topics, including vision-based seismic damage assessment and structural characterization, seismic demand and damage state prediction, seismic response history prediction, regional seismic risk assessment and community resilience, ground motion (GM) for engineering use, seismic response control, and the inverse problem of system/damage identification. Suitable DL techniques for each research topic are identified, emphasizing the preeminence of CNN for vision-based tasks, RNN for sequential data, RL for community resilience, and unsupervised learning for GM analysis. The article also discusses opportunities and challenges for leveraging DL in earthquake engineering research and practice.

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Top 150 Mechanical Engineering Research Topics [Updated]

mechanical engineering research topics

Mechanical engineering is an intriguing discipline that holds significant sway in shaping our world. With a focus on crafting inventive machinery and fostering sustainable energy initiatives, mechanical engineers stand as pioneers in driving technological progress. However, to make meaningful contributions to the field, researchers must carefully choose their topics of study. In this blog, we’ll delve into various mechanical engineering research topics, ranging from fundamental principles to emerging trends and interdisciplinary applications.

How to Select Mechanical Engineering Research Topics?

Table of Contents

Selecting the right mechanical engineering research topics is crucial for driving impactful innovation and addressing pressing challenges. Here’s a step-by-step guide to help you choose the best research topics:

  • Identify Your Interests: Start by considering your passions and areas of expertise within mechanical engineering. What topics excite you the most? Choosing a subject that aligns with your interests will keep you motivated throughout the research process.
  • Assess Current Trends: Stay updated on the latest developments and trends in mechanical engineering. Look for emerging technologies, pressing industry challenges, and areas with significant research gaps. These trends can guide you towards relevant and timely research topics.
  • Conduct Literature Review: Dive into existing literature and research papers within your field of interest. Identify gaps in knowledge, unanswered questions, or areas that warrant further investigation. Building upon existing research can lead to more impactful contributions to the field.
  • Consider Practical Applications: Evaluate the practical implications of potential research topics. How will your research address real-world problems or benefit society? Choosing topics with tangible applications can increase the relevance and impact of your research outcomes.
  • Consult with Advisors and Peers: Seek guidance from experienced mentors, advisors, or peers in the field of mechanical engineering. Discuss your research interests and potential topics with them to gain valuable insights and feedback. Their expertise can help you refine your ideas and select the most promising topics.
  • Define Research Objectives: Clearly define the objectives and scope of your research. What specific questions do you aim to answer or problems do you intend to solve? Establishing clear research goals will guide your topic selection process and keep your project focused.
  • Consider Resources and Constraints: Take into account the resources, expertise, and time available for your research. Choose topics that are feasible within your constraints and align with your available resources. Balancing ambition with practicality is essential for successful research endeavors.
  • Brainstorm and Narrow Down Options: Generate a list of potential research topics through brainstorming and exploration. Narrow down your options based on criteria such as relevance, feasibility, and alignment with your interests and goals. Choose the most promising topics that offer ample opportunities for exploration and discovery.
  • Seek Feedback and Refinement: Once you’ve identified potential research topics, seek feedback from colleagues, advisors, or experts in the field. Refine your ideas based on their input and suggestions. Iteratively refining your topic selection process will lead to a more robust and well-defined research proposal.
  • Stay Flexible and Open-Minded: Remain open to new ideas and opportunities as you progress through the research process. Be willing to adjust your research topic or direction based on new insights, challenges, or discoveries. Flexibility and adaptability are key qualities for successful research endeavors in mechanical engineering.

By following these steps and considering various factors, you can effectively select mechanical engineering research topics that align with your interests, goals, and the needs of the field.

Top 50 Mechanical Engineering Research Topics For Beginners

  • Analysis of the efficiency of different heat exchanger designs.
  • Optimization of airfoil shapes for enhanced aerodynamic performance.
  • Investigation of renewable energy harvesting using piezoelectric materials.
  • Development of smart materials for adaptive structures in aerospace applications.
  • Study of vibration damping techniques for improving vehicle ride comfort.
  • Design and optimization of suspension systems for off-road vehicles.
  • Analysis of fluid flow characteristics in microchannels for cooling electronics.
  • Evaluation of the performance of different brake systems in automotive vehicles.
  • Development of lightweight materials for automotive and aerospace industries.
  • Investigation of the effects of friction stir welding parameters on joint properties.
  • Design and testing of a small-scale wind turbine for rural electrification.
  • Study of the dynamics of flexible multibody systems in robotics.
  • Development of a low-cost prosthetic limb using 3D printing technology.
  • Analysis of heat transfer in electronic packaging for thermal management.
  • Investigation of energy harvesting from vehicle suspension systems.
  • Design and optimization of heat sinks for electronic cooling applications.
  • Study of material degradation in composite structures under various loading conditions.
  • Development of bio-inspired robotic mechanisms for locomotion.
  • Investigation of the performance of regenerative braking systems in electric vehicles.
  • Design and analysis of an autonomous agricultural robot for crop monitoring.
  • Optimization of gas turbine blade profiles for improved efficiency.
  • Study of the aerodynamics of animal-inspired flying robots (bio-drones).
  • Development of advanced control algorithms for robotic manipulators.
  • Analysis of wear mechanisms in mechanical components under different operating conditions.
  • Investigation of the efficiency of solar water heating systems.
  • Design and optimization of microfluidic devices for biomedical applications.
  • Study of the effects of additive manufacturing parameters on part quality.
  • Development of assistive devices for individuals with disabilities.
  • Analysis of the performance of different types of bearings in rotating machinery.
  • Investigation of the feasibility of using shape memory alloys in actuator systems.
  • Design and optimization of a compact heat exchanger for space applications.
  • Study of the effects of surface roughness on friction and wear in sliding contacts.
  • Development of energy-efficient HVAC systems for buildings.
  • Analysis of the performance of different types of fuel cells for power generation.
  • Investigation of the feasibility of using biofuels in internal combustion engines.
  • Design and testing of a micro-scale combustion engine for portable power generation.
  • Study of the mechanics of soft materials for biomedical applications.
  • Development of exoskeletons for rehabilitation and assistance in mobility.
  • Analysis of the effects of vehicle aerodynamics on fuel consumption.
  • Investigation of the potential of ocean wave energy harvesting technologies.
  • Design and optimization of energy-efficient refrigeration systems.
  • Study of the dynamics of flexible structures subjected to dynamic loads.
  • Development of sensors and actuators for structural health monitoring.
  • Analysis of the performance of different cooling techniques in electronics.
  • Investigation of the potential of hydrogen fuel cells for automotive applications.
  • Design and testing of a small-scale hydroelectric power generator.
  • Study of the mechanics of cellular materials for impact absorption.
  • Development of unmanned aerial vehicles (drones) for environmental monitoring.
  • Analysis of the efficiency of different propulsion systems in space exploration.
  • Investigation of the potential of micro-scale energy harvesting technologies for powering wireless sensors.

Top 50 Mechanical Engineering Research Topics For Intermediate

  • Optimization of heat exchanger designs for enhanced energy efficiency.
  • Investigating the effects of surface roughness on fluid flow in microchannels.
  • Development of lightweight materials for automotive applications.
  • Modeling and simulation of combustion processes in internal combustion engines.
  • Design and analysis of novel wind turbine blade configurations.
  • Study of advanced control strategies for unmanned aerial vehicles (UAVs).
  • Analysis of wear and friction in mechanical components under varying operating conditions.
  • Investigation of thermal management techniques for high-power electronic devices.
  • Development of smart materials for shape memory alloys in actuator applications.
  • Design and fabrication of microelectromechanical systems (MEMS) for biomedical applications.
  • Optimization of additive manufacturing processes for metal 3D printing.
  • Study of fluid-structure interaction in flexible marine structures.
  • Analysis of fatigue behavior in composite materials for aerospace applications.
  • Development of energy harvesting technologies for sustainable power generation.
  • Investigation of bio-inspired robotics for locomotion in challenging environments.
  • Study of human factors in the design of ergonomic workstations.
  • Design and control of soft robots for delicate manipulation tasks.
  • Development of advanced sensor technologies for condition monitoring in rotating machinery.
  • Analysis of aerodynamic performance in hypersonic flight vehicles.
  • Study of regenerative braking systems for electric vehicles.
  • Optimization of cooling systems for high-performance computing (HPC) applications.
  • Investigation of fluid dynamics in microfluidic devices for lab-on-a-chip applications.
  • Design and optimization of passive and active vibration control systems.
  • Analysis of heat transfer mechanisms in nanofluids for thermal management.
  • Development of energy-efficient HVAC (heating, ventilation, and air conditioning) systems.
  • Study of biomimetic design principles for robotic grippers and manipulators.
  • Investigation of hydrodynamic performance in marine propeller designs.
  • Development of autonomous agricultural robots for precision farming.
  • Analysis of wind-induced vibrations in tall buildings and bridges.
  • Optimization of material properties for additive manufacturing of aerospace components.
  • Study of renewable energy integration in smart grid systems.
  • Investigation of fracture mechanics in brittle materials for structural integrity assessment.
  • Development of wearable sensors for human motion tracking and biomechanical analysis.
  • Analysis of combustion instability in gas turbine engines.
  • Optimization of thermal insulation materials for building energy efficiency.
  • Study of fluid-structure interaction in flexible wing designs for unmanned aerial vehicles.
  • Investigation of heat transfer enhancement techniques in heat exchanger surfaces.
  • Development of microscale actuators for micro-robotic systems.
  • Analysis of energy storage technologies for grid-scale applications.
  • Optimization of manufacturing processes for lightweight automotive structures.
  • Study of tribological behavior in lubricated mechanical systems.
  • Investigation of fault detection and diagnosis techniques for industrial machinery.
  • Development of biodegradable materials for sustainable packaging applications.
  • Analysis of heat transfer in porous media for thermal energy storage.
  • Optimization of control strategies for robotic manipulation tasks in uncertain environments.
  • Study of fluid dynamics in fuel cell systems for renewable energy conversion.
  • Investigation of fatigue crack propagation in metallic alloys.
  • Development of energy-efficient propulsion systems for unmanned underwater vehicles (UUVs).
  • Analysis of airflow patterns in natural ventilation systems for buildings.
  • Optimization of material selection for additive manufacturing of biomedical implants.

Top 50 Mechanical Engineering Research Topics For Advanced

  • Development of advanced materials for high-temperature applications
  • Optimization of heat exchanger design using computational fluid dynamics (CFD)
  • Control strategies for enhancing the performance of micro-scale heat transfer devices
  • Multi-physics modeling and simulation of thermoelastic damping in MEMS/NEMS devices
  • Design and analysis of next-generation turbofan engines for aircraft propulsion
  • Investigation of advanced cooling techniques for electronic devices in harsh environments
  • Development of novel nanomaterials for efficient energy conversion and storage
  • Optimization of piezoelectric energy harvesting systems for powering wireless sensor networks
  • Investigation of microscale heat transfer phenomena in advanced cooling technologies
  • Design and optimization of advanced composite materials for aerospace applications
  • Development of bio-inspired materials for impact-resistant structures
  • Exploration of advanced manufacturing techniques for producing complex geometries in aerospace components
  • Integration of artificial intelligence algorithms for predictive maintenance in rotating machinery
  • Design and optimization of advanced robotics systems for industrial automation
  • Investigation of friction and wear behavior in advanced lubricants for high-speed applications
  • Development of smart materials for adaptive structures and morphing aircraft wings
  • Exploration of advanced control strategies for active vibration damping in mechanical systems
  • Design and analysis of advanced wind turbine blade designs for improved energy capture
  • Investigation of thermal management solutions for electric vehicle batteries
  • Development of advanced sensors for real-time monitoring of structural health in civil infrastructure
  • Optimization of additive manufacturing processes for producing high-performance metallic components
  • Investigation of advanced corrosion-resistant coatings for marine applications
  • Design and analysis of advanced hydraulic systems for heavy-duty machinery
  • Exploration of advanced filtration technologies for water purification and wastewater treatment
  • Development of advanced prosthetic limbs with biomimetic functionalities
  • Investigation of microscale fluid flow phenomena in lab-on-a-chip devices for medical diagnostics
  • Optimization of heat transfer in microscale heat exchangers for cooling electronics
  • Development of advanced energy-efficient HVAC systems for buildings
  • Exploration of advanced propulsion systems for space exploration missions
  • Investigation of advanced control algorithms for autonomous vehicles in complex environments
  • Development of advanced surgical robots for minimally invasive procedures
  • Optimization of advanced suspension systems for improving vehicle ride comfort and handling
  • Investigation of advanced materials for 3D printing in aerospace manufacturing
  • Development of advanced thermal barrier coatings for gas turbine engines
  • Exploration of advanced wear-resistant coatings for cutting tools in machining applications
  • Investigation of advanced nanofluids for enhanced heat transfer in cooling applications
  • Development of advanced biomaterials for tissue engineering and regenerative medicine
  • Exploration of advanced actuators for soft robotics applications
  • Investigation of advanced energy storage systems for grid-scale applications
  • Development of advanced rehabilitation devices for individuals with mobility impairments
  • Exploration of advanced materials for earthquake-resistant building structures
  • Investigation of advanced aerodynamic concepts for reducing drag and improving fuel efficiency in vehicles
  • Development of advanced microelectromechanical systems (MEMS) for biomedical applications
  • Exploration of advanced control strategies for unmanned aerial vehicles (UAVs)
  • Investigation of advanced materials for lightweight armor systems
  • Development of advanced prosthetic interfaces for improving user comfort and functionality
  • Exploration of advanced algorithms for autonomous navigation of underwater vehicles
  • Investigation of advanced sensors for detecting and monitoring air pollution
  • Development of advanced energy harvesting systems for powering wireless sensor networks
  • Exploration of advanced concepts for next-generation space propulsion systems.

Mechanical engineering research encompasses a wide range of topics, from fundamental principles to cutting-edge technologies and interdisciplinary applications. By choosing the right mechanical engineering research topics and addressing key challenges, researchers can contribute to advancements in various industries and address pressing global issues. As we look to the future, the possibilities for innovation and discovery in mechanical engineering are endless, offering exciting opportunities to shape a better world for generations to come.

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4th International Conference "Coordinating Engineering for Sustainability and Resilience" & Midterm Conference of CircularB “Implementation of Circular Economy in the Built Environment”

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  • Viorel Ungureanu 0 ,
  • Luís Bragança 1 ,
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Dept. Steel Struct. & Struct. Mechanics, Polytechnic University of Timişoara, Timișoara, Romania

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Department of Civil Engineering, University of Minho, Guimaraes, Portugal

School of engineering, university of birmingham, birmingham, uk, civil engineering department, jordan university of science and technol, irbid, jordan.

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Reliability and Durability of Built Environment Under Impact of Climate Natural Hazards

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Resilience Framework for Aged Bridges Subjected to Human-Induced Hazard - Case Study in Ukraine

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Thermal-Structural Modelling and Temperature Control of Roller-Compacted Concrete Gravity Dam: A Parametric Study

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Influence of shear connection and end supports onto self-vibrations of cold-formed steel concrete composite floor.

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Numerical Investigation of Double-Skin Cold-Formed Steel Shear Wall Filled with Concrete

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Comparative Experimental Study on Improving Structural Performance of the Base Upright Profiles of Steel Storage Pallet Racks Under Operational Conditions

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Performance Comparison of Different Vibration Control Strategies

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Exploratory Research on the Thermal Properties of Wood in Real Fire Conditions

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Assessment of Existing Structures for Elongation of the Buildings Lifecycle Based on Ukrainian Experience and Codes

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Procedure for Generation of Finite Element Models of Steel Members from 3D Scanned Data

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The Behavior of Heat-Damaged RC Beams Reinforced Internally with CFRP Strips

  • Rajai Z. Al-Rousan, Khairedin M. Abdalla, Bara’a R. Alnemrawi

Energy Systems and Structures

Other volumes, 4th international conference "coordinating engineering for sustainability and resilience" & midterm conference of circularb “implementation of circular economy in the built environment”.

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  • Circular Economy
  • CA21103 COST Action
  • Sustainable Development
  • rehabilitation of buildings
  • Sustainable infrastructures

About this book

This open access book gathers the proceedings of the 4th International Conference “Coordinating Engineering for Sustainability and Resilience” (CESARE) & Midterm Conference of CircularB “Implementation of Circular Economy in the Built Environment”, held in Timișoara, Romania, on May 29-31, 2024, as part of the COST Action CA21103. The volume represents the state of the art of sustainability and resilience in modern and future built environment, constructions, and infrastructure, and includes topics such as structural materials and robustness, fire engineering, risk assessment, impact of climate change on the built environment, sustainable resilience of systems in the built environment, smart cities, circular economy, design strategies for product design, integration of renewable energy at building and small urban area scales, restoration & rehabilitation of historical buildings, sustainable infrastructures, wind energy structures, façade engineering, green buildings, and waste management.

Editors and Affiliations

Dept. steel struct. & struct. mechanics, polytechnic university of timişoara, timișoara, romania.

Viorel Ungureanu

Luís Bragança

Charalambos Baniotopoulos

Khairedin M. Abdalla

Bibliographic Information

Book Title : 4th International Conference "Coordinating Engineering for Sustainability and Resilience" & Midterm Conference of CircularB “Implementation of Circular Economy in the Built Environment”

Editors : Viorel Ungureanu, Luís Bragança, Charalambos Baniotopoulos, Khairedin M. Abdalla

Series Title : Lecture Notes in Civil Engineering

DOI : https://doi.org/10.1007/978-3-031-57800-7

Publisher : Springer Cham

eBook Packages : Engineering , Engineering (R0)

Copyright Information : The Editor(s) (if applicable) and The Author(s) 2024

Hardcover ISBN : 978-3-031-57799-4 Published: 10 May 2024

Softcover ISBN : 978-3-031-57802-1 Due: 10 June 2024

eBook ISBN : 978-3-031-57800-7 Published: 09 May 2024

Series ISSN : 2366-2557

Series E-ISSN : 2366-2565

Edition Number : 1

Number of Pages : XVIII, 713

Number of Illustrations : 46 b/w illustrations, 232 illustrations in colour

Topics : Sustainable Architecture/Green Buildings , Sustainable Development , Environmental Economics , Construction Management

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Engineering

Browse engineering topics/papers by subfields, engineering research papers/topics, assessment of the influence of sand gradation on site suitability for construction of sand dam; a case study of kitui south sub-county, kenya.

Abstract: This study was undertaken in Kitui South in Kitui County in the south eastern parts of Kenya. The main objective of the study was to develop a spatial model that can be used for selection of suitable sites for sand dam in Kitui South. Data analysis was done using three approaches. The first approach involved the use of the Remote Sensing (RS) technique where data was preprocessed and analyzed using Erdas Imagine software and Geographical Information Systems (GIS) for spatial modell...

PRODUCTION OF BIOGAS FROM MANGO (Mangifera indicaL) FRUIT PEELS AND COW DUNG UNDER ANAEROBIC

Abstract: Biogas is an alternative source of energy that is produced by methanogenic bacteria through the bio-degradation of organic material under anaerobic fermentation of organic matter conditions. The aim of this study was to determine the optimal mix ratio for biogas production from anaerobic digestion of mango fruit peel and cow dung. The experiment was batch operated and daily gas yield from the mixture was monitored for 30 days. The parameters measured were total solids (TS), volatil...

ETHANOL PRODUCTION FROM ORANGE AND PAPAYA FRUIT PEEL WASTES

Abstract: Ethanol produced by microbial fermentation of biomass is used primarily as a substitutive for gasoline. It is produced by using an eco-friendly method to replace fossil fuel. Therefore, this study was focused on co-fermentation of orange and papaya fruit peels waste for bioethanol production with the objective of evaluating its potential for ethanol production with different concentrations (100 g orange peel, 75 g orange peel +25 g papaya peel, 50 g orange peel +50 g papaya peel, 2...

PRODUCTION OF BIOGAS FROM THE MIXTURE OF SAWDUST AND COW DUNG UNDER ANAEROBIC CONDITION

Abstract: Biogas is eco-friendly alternative renewable energy source produced through anaerobic digestion of organic compounds. In this study, biogas production was evaluated from sawdust (SD)and cow dung (CD) co-digestion in five mix ratios under mesophilic conditions (35ºC) using batch digesters in the micro biology Laboratory of Haramaya University to evaluate biogas production potential of sawdust through anaerobic digestion alone or in combination with cow dung .In 100%SD , 100% CD, 50...

PRODUCTION OF BIOGAS FROM INVASIVE WEED (Striga hermonthica) THROUGH ANAEROBIC CO- DIGESTION WITH COW MANURE

Abstract: The unsustainability of conventional energy resources and their associated environmental pollutions made renewable energy the prime need of present time. Therefore, the research was conducted to investigate the production of biogas from Striga hermonthica co-digested with cow manure through anaerobic digestion with five treatment mix ratios were evaluated under mesophilic conditions (38ºC) using batch digesters in the Botanical laboratory of Haramaya University for 30 days of ferm...

PRODUCTION OF BIOGAS FROM Ricinus communis L. Leaves THROUGH ANAEROBIC CO-DIGESTION WITH COW DUNG

Abstract: Production of biogas through anaerobic digestion of organic waste materials provides an alternative eco-friendly renewable energy source. With the aim of biogas production from codigestion of Cow dung and Ricinus communis leaves, a series of experiments were carried out under mesophilic conditions at 38 ºC using batch fermentation for 30 days. Anaerobic fermentation were carried out by mixing the substrates in five different proportions to obtain suitable mix ratio for maximum bio...

BIO-ETHANOL PRODUCTION FROM Desmodium triflorum (L.) USING Saccharomyces cerevisiae

Abstract: Bio-ethanol is a clear liquid alcohol that is made by the fermentation of different biological materials. it is being considered as a potential liquid fuel due to the limited amount of natural resources. This study was undertaken with the objective of producing bio-ethanol from leaves of Desmodium triflorum by fermenting for 16 days. The leaves were first pre-treated with dilute sulfuric acid to ease the hydrolysis of lignocelulosic material and incubated in different substrate con...

BIOGAS PRODUCTION FROM Guizotia scabra SUB-SPECIES scabra LEAVES CO-DIGESTED WITH COW DUNG

Abstract: Alternative energy sources have recently become more and more attractive due to the increasing demand for energy, global warming, depletion of fossil fuels and high prices of petroleum-based fuels. One of the alternative sources of energy is Biogas. In this study, Guizotia scabra sub-species scabra was evaluated for its potential of biogas production codigested with Cow dung (CD ) in five mix ratios under mesophilic condition (38ºC) using batch digester in Botany laboratory of Har...

EVALUATION OF BIOGAS PRODUCTION FROM PROSOPIS JULIFLORA LEAVES CO- DIGESTED WITH COW MANURE

Abstract: Biogas is eco-friendly alternative renewable energy source produced through anaerobic digestion of organic compounds. In this study, biogas production was evaluated from Prosopis juliflora leaves(PJ) and cow manure (CM) co-digestion in five mix ratios under mesophilic conditions (38ºC) using batch digesters in the Botany Laboratory of Haramaya University to evaluate biogas production potential of Prosopis juliflora leaves through anaerobic digestion alone or in combination with co...

BIO-ETHANOL PRODUCTION FROM TEFF (Eragrostis tef) STRAW USING YEAST (Saccharomyces cerevisiae) AS A FERMENTING AGENT

Abstract: Bio- ethanol is suggested as a sustainable fuel which can be produced from renewable resources and reduce the level of greenhouse gases. Therefore, this study was focused on producing bio ethanol fuel from teff (Eragrostis tef) straws in batch fermentation using yeast (Saccharomyces cerevisiae). Fifty grams of acid pretreated and untreated teff straw were incubated with10ml of 1% of yeast under three different temperature (20℃, 30℃ and 40℃) treatments and allowed to ferment o...

PRODUCTION OF BIOGAS FROM WILD SAGE (Lantana camara) CO-DIGESTED WITH COW DUNG

Abstract: Biogas is a clean and renewable form of energy and well substitute for conventional sources of energy especially in the rural sector. In response to the need for addressing the adverse impacts of the increasing trend in biomass energy consumption in Ethiopia, the last three recent decades development of more efficient cooking stove technologies and alternative sources of household energy had been realized. The aim of this study was to determine the optimal mix ratio for biogas prod...

EVALUATION OF BIOGAS YIELD FROM Vernonia amygdalina (Grawa) LEAVES CO-DIGESTED WITH COW DUNG UNDER ANAEROBIC CONDITION

Abstract: Biogas is an alternative renewable energy sources and a mixture of different gases, mainly methane and carbon dioxide, resulting from anaerobic digestion of organic matter. In this study, production of biogas from Vernonia amygdalina leaves co-digested with cow dung in anaerobic condition were evaluated under mesophilic condition at 38ºC using a batch mode digester. Biogas production was evaluated from treatments with different mix ratios A (100%VA) B (75%VA+25%CD), C (75%CD+25%VA...

EVALUATION OF BIOGAS YIELD FROM AVOCADO (Persea americana M.) PEEL WASTE CO-DIGESTED WITH GOAT MANURE

Abstract: Biogas is a well-established fuel that can replace firewood and electricity as an energy source for cooking, lighting, heating and for other purposes in developing countries. Moreover, biogas is a clean, environmental friendly and renewable form of energy generated when micro-organisms degrade organic materials in the absence of oxygen. The aim of this study was to evaluate biogas production potential of avocado fruit peel wastes and goat manure in combination or separately under a...

EFFECT OF VARYING TOTAL SOLIDS ON THE YIELD OF BIOGAS FROM Datura stramonium LEAVES THROUGH ANAEROBIC CO-DIGESTION WITH COW MANURE

Abstract: Production of biogas through anaerobic digestion of organic waste materials provides an alternative environmentally eco-friendly renewable energy. In this study, biogas production from co-digestion of cow manure (CM) and Datura stramonium leaves (DSL) in five mix ratios (100%CM, 60%CM:40%DSL, 50%CM:50%DSL, 40%CM:60%DSL and 100%DSL) were evaluated under mesophilic condition at 38ºC using a batch mode digester over 30 days fermentation. In all the treatments, physico-chemical parame...

GENETIC VARIABILITY AND ASSOCIATION OF MORPHOAGRONOMIC TRAITS IN SELECTED COMMON BEAN (Phaseolus vulgaris L.) GENOTYPES GROWN UNDER MOISTURE STRESSED ENVIROMENTS IN ETHIOPIA

Abstract: Common beans are grown throughout Ethiopia and an increasingly important commodity in the cropping systems of smallholder producers both for food security and income. However, its production is affected by climate change particularly by intensive drought occurrence. The study of genetic variability under moisture stress areas enables selection of drought tolerant genotypes that would give better yields to ensure food security, especially for poor rural farmers. Therefore, this stud...

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CVPR Technical Program Features Presentations on the Latest AI and Computer Vision Research

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LOS ALAMITOS, Calif., 16 May 2024 – Co-sponsored by the IEEE Computer Society (CS) and the Computer Vision Foundation (CVF), the 2024 Computer Vision and Pattern Recognition (CVPR) Conference is the preeminent event for research and development (R&D) in the hot topic areas of computer vision, artificial intelligence (AI), machine learning (ML), augmented, virtual and mixed reality (AR/VR/MR), deep learning, and related fields. Over the past decade, these areas have seen significant growth, and the emphasis on this sector by the science and engineering community has fueled an increasingly competitive technical program.

This year, the CVPR Program Committee received 11,532 paper submissions—a 26% increase over 2023—but only 2,719 were accepted, resulting in an acceptance rate of just 23.6%. Of those accepted papers, only 3.3% were slotted for oral presentations based on nominations from the area chairs and senior area chairs overseeing the program.

“CVPR is not only the premiere conference in computer vision, but it’s also among the highest-impact publication venues in all of science,” said David Crandall, Professor of Computer Science at Indiana University, Bloomington, Ind., U.S.A., and CVPR 2024 Program Co-Chair. “Having one’s paper accepted to CVPR is already a major achievement, and then having it selected as an oral presentation is a very rare honor that reflects its high quality and potential impact.”

Taking place 17-21 June at the Seattle Convention Center in Seattle, Wash., U.S.A., CVPR offers oral presentations that speak to both fundamental and applied research in areas as diverse as healthcare applications, robotics, consumer electronics, autonomous vehicles, and more. Examples include:

  • Pathology: Transcriptomics-guided Slide Representation Learning in Computational Pathology *– Training computer systems for pathology requires a multi-modal approach for efficiency and accuracy. New work from a multi-disciplinary team at Harvard University (Cambridge, Mass., U.S.A.), the Massachusetts Institute of Technology (MIT; Cambridge, Mass., U.S.A.), Emory University (Atlanta, Ga., U.S.A.) and others employs modality-specific encoders, and when applied on liver, breast, and lung samples from two different species, they demonstrated significantly better performance when compared to current baselines.
  • Robotics: SceneFun3D: Fine-Grained Functionality and Affordance Understanding in 3D Scenes – Creating realistic interactions in 3D scenes has been troublesome from a technology perspective because it has been difficult to manipulate objects in the scene context. Research from ETH Zürich (Zürich, Switzerland), Google (Mountainview, Calif., U.S.A.), Technical University of Munich (TUM; Munich, Germany), and Microsoft (Redmond, Wash., U.S.A.) has begun bridging that divide by creating a large-scale dataset with more than 14.8k highly accurate interaction annotations for 710 high-resolution real-world 3D indoor scenes. This work, as the paper concludes, has the potential to “stimulate advancements in embodied AI, robotics, and realistic human-scene interaction modeling.”
  • Virtual Reality: URHand: Universal Relightable Hands – Teams from Codec Avatars Lab at Meta (Menlo Park, Calif., U.S.A.) and Nanyang Technological University (Singapore) unveil a hand model that generalizes to novel viewpoints, poses, identities, and illuminations, which enables quick personalization from a phone scan. The resulting images make for a more realistic experience of reaching, grabbing, and interacting in a virtual environment.
  • Human Avatars: Semantic Human Mesh Reconstruction with Textures – Working to create realistic human models, teams at Nanjing University (Nanjing, China) and Texas A&M University (College Station, Texas, U.S.A.) designed a method of 3-D human mesh reconstruction that is capable of producing high-fidelity and robust semantic renderings that outperform state-of-the-art methods. The paper concludes, “This approach bridges existing monocular reconstruction work and downstream industrial applications, and we believe it can promote the development of human avatars.”
  • Text-to-Image Systems: Ranni: Taming Text-to-Image Diffusion for Accurate Instruction – Existing text-to-image models can misinterpret more difficult prompts, but now, new research from Alibaba Group (Hangzhou, Zhejiang, China) and Ant Group (Hangzhou, Zhejiang, China) has made strides in addressing that issue via a middleware layer. This approach, which they have dubbed Ranni, supports the text-to-image generator in better following instructions. As the paper sums up, “Ranni shows potential as a flexible chat-based image creation system, where any existing diffusion model can be incorporated as the generator for interactive generation.”
  • Autonomous Driving: Producing and Leveraging Online Map Uncertainty in Trajectory Prediction – To enable autonomous driving, vehicles must be pre-trained on the geographic region and potential pitfalls. High-definition (HD) maps have become a standard part of a vehicle’s technology stack, but current approaches to those maps are siloed in their programming. Now, work from a research team from the University of Toronto (Toronto, Ontario, Canada), Vector Institute (Toronto, Ontario, Canada), NVIDIA Research (Santa Clara, Calif., U.S.A.), and Stanford University (Palo Alto, Calif., U.S.A.) enhances current methodologies by incorporating uncertainty, resulting in up to 50% faster training convergence and up to 15% better prediction performance.

“As the field’s leading event, CVPR introduces the latest research in all areas of computer vision,” said Crandall. “In addition to the oral paper presentations, there will be thousands of posters, dozens of workshops and tutorials, several keynotes and panels, and countless opportunities for learning and networking. You really have to attend the conference to get the full scope of what’s next for computer vision and AI technology.”

Digital copies of all final technical papers* will be available on the conference website by the week of 10 June to allow attendees to prepare their schedules. To register for CVPR 2024 as a member of the press and/or request more on a specific paper, visit https://cvpr.thecvf.com/Conferences/2024/MediaPass or email [email protected]. For more information on the conference, visit https://cvpr.thecvf.com/ .

*Papers linked in this press release refer to pre-print publications. Final, citable papers will be available just prior to the conference.

About the CVPR 2024 The Computer Vision and Pattern Recognition Conference (CVPR) is the preeminent computer vision event for new research in support of artificial intelligence (AI), machine learning (ML), augmented, virtual and mixed reality (AR/VR/MR), deep learning, and much more. Sponsored by the IEEE Computer Society (CS) and the Computer Vision Foundation (CVF), CVPR delivers the important advances in all areas of computer vision and pattern recognition and the various fields and industries they impact. With a first-in-class technical program, including tutorials and workshops, a leading-edge expo, and robust networking opportunities, CVPR, which is annually attended by more than 10,000 scientists and engineers, creates a one-of-a-kind opportunity for networking, recruiting, inspiration, and motivation.

CVPR 2024 takes place 17-21 June at the Seattle Convention Center in Seattle, Wash., U.S.A., and participants may also access sessions virtually. For more information about CVPR 2024, visit cvpr.thecvf.com .

About the Computer Vision Foundation The Computer Vision Foundation (CVF) is a non-profit organization whose purpose is to foster and support research on all aspects of computer vision. Together with the IEEE Computer Society, it co-sponsors the two largest computer vision conferences, CVPR and the International Conference on Computer Vision (ICCV). Visit thecvf.com for more information.

About the IEEE Computer Society Engaging computer engineers, scientists, academia, and industry professionals from all areas and levels of computing, the IEEE Computer Society (CS) serves as the world’s largest and most established professional organization of its type. IEEE CS sets the standard for the education and engagement that fuels continued global technological advancement. Through conferences, publications, and programs that inspire dialogue, debate, and collaboration, IEEE CS empowers, shapes, and guides the future of not only its 375,000+ community members, but the greater industry, enabling new opportunities to better serve our world. Visit computer.org for more information.

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Nuclear Engineering International

Serving the nuclear industry since 1956

Small and Advanced Reactors 2024 Call for Papers

The fourth annual Small and Advanced Reactors conference is going live! Hosted by Nuclear Engineering International, the event will take place on 7th March 2024 at the Hilton Garden Inn on the Snake River in Idaho Falls, Idaho, USA.

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The fourth annual Small and Advanced Reactors conference is going live! Hosted by Nuclear Engineering International , the event will take place on 7th March 2024 at the Hilton Garden Inn on the Snake River in Idaho Falls, Idaho, USA.

This key calendar event for the SMR and Advanced reactor community will explore all aspects of this emerging market. Key conference themes include global policy frameworks, the financial structures in place and moves to build customer deployment, the latest technology innovations and efforts to license designs, and the critical related themes that deployment at scale will need. Development of a skilled workforce, a substantial supply chain and the right transport solutions will all feature in the conference programme as we take a snap-shot of the state of the global market development in the context of decarbonisation goals, security of energy supply and the need for system reliability.

We invite submissions of presentation papers on all these themes and more for consideration by our advisory board.

Please send your expression of interest and a presentation outline to the Editor, David Appleyard: [email protected]

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research paper in engineering

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Civil engineering articles from across Nature Portfolio

Civil engineering is the design and fabrication of structures for improving the way we live and work and for enabling rapid, safe and high-volume transportation. Examples include building roads, railways, bridges, canals, skyscrapers and factories. Modern civil engineering often places a focus on aesthetic considerations and environmental impact.

Latest Research and Reviews

research paper in engineering

A novel anti-loosening bolt looseness diagnosis of bolt connections using a vision-based technique

  • Yuanlai Wang

research paper in engineering

Research on overburden structural characteristics and support adaptability in cooperative mining of sectional coal pillar and bottom coal seam

  • Jiang Yufei

research paper in engineering

Experimental and numerical investigations on stress concentration factors of concrete filled steel tube X-joints

research paper in engineering

Research on the mechanism and application of wedge cutting blasting with hole-inner delay

  • Pengfei Gao

research paper in engineering

Assessment of groundwater quality for human consumption and its health risks in the Middle Magdalena Valley, Colombia

  • Boris Lora-Ariza
  • Adriana Piña
  • Leonardo David Donado

research paper in engineering

Influence of coupled water and thermal treatments on the fracture characteristics of a typical sandstone

  • Haohong Zhong

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Advanced transport systems: the future is sustainable and technology-enabled.

Transport has always played a major role in shaping society. By enabling or restricting the movement of people and goods, the presence or absence of transport services and infrastructure has historically been determining for cultures to connect, for knowledge to be shared, and for societies to evolve and prosper, or, in contrast, for societies to decay and fail. Since the beginning of the twenty-first century, transport has been going through a revolution worldwide. One of the primary goals for the transport sector is clear: it needs to be decarbonized and become more sustainable. At the same time, technological advances are shaping the transport sector toward smart services and societies. The Special Collection showcases some of the latest advances in research towards sustainable and technology-enabled transport.

  • Sybil Derrible

research paper in engineering

Leveraging epidemic network models towards wildfire resilience

Wildfires have increased in frequency and intensity due to climate change and have had severe impacts on the built environment worldwide. Moving forward, models should take inspiration from epidemic network modeling to predict damage to individual buildings and understand the impact of different mitigations on the community vulnerability in a network setting.

  • Hussam Mahmoud

research paper in engineering

Inclusive and resilient mobility

  • Danyang Cheng

research paper in engineering

The 2023 Kahramanmaraş Earthquake Sequence: finding a path to a more resilient, sustainable, and equitable society

Learning from the 2023 Kahramanmaraş Earthquake Sequence offers valuable insights into disaster recovery. Carmine Galasso and Eyitayo Opabola delve into the intricacies of the “Build Back Better” (BBB) concept, underscoring the importance of recovery and reconstruction efforts toward a future that is not only more resilient but also more sustainable and equitable.

  • Carmine Galasso
  • Eyitayo A. Opabola

Material durability, material failure, and material investment—the complexity of concrete

Recent high-profile concrete material failures, including the collapse of parts of public buildings in the UK, have highlighted the need for a greater understanding of the durability of concrete. Here, John Provis explores the need to recognise the complexity of concrete when planning both the research and application of this key construction material.

  • John L. Provis

research paper in engineering

Catching up with missing particles

The implementation of particle-tracking techniques with deep neural networks is a promising way to determine particle motion within complex flow structures. A graph neural network-enhanced method enables accurate particle tracking by significantly reducing the number of lost trajectories.

  • Séverine Atis
  • Lionel Agostini

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research paper in engineering

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  1. Engineering

    Sage publishes over 50 engineering journals. The collection includes the 18 journals of the Institution for Mechanical Engineers as well other research in robotics, computing and textiles. The collection also features the leading open access journal in its field, Advances in Mechanical Engineering. Download new special issues, collections, and ...

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    Engineering is the design and construction of systems and structures for influencing the world around us and enhancing our experience within it. Engineers use the fundamental principles of ...

  5. Engineering

    The official journal of the Chinese Academy of Engineering and Higher Education Press Engineering is an international open-access journal that was launched by the Chinese Academy of Engineering (CAE) in 2015. Its aims are to provide a high-level platform where cutting-edge advancements in engineering R&D, current major research outputs, and key achievements can be disseminated and shared; to ...

  6. Engineering Reports

    Engineering Reports is an open access engineering and computer science journal with a broad scope, addressing questions relevant to academia, industry or government. We quickly publish rigorously peer reviewed, well-conducted scientific research, covering areas including biological, chemical, civil, software, electrical, industrial, and mechanical engineering, as well as other engineering ...

  7. Home

    Research in Engineering Design is a journal that publishes research papers on design theory and methodology across all engineering fields. Focuses on mechanical, civil, architectural, and manufacturing engineering. Emphasizes the underlying principles of engineering design. Examines theories of design, foundations of design environments, and ...

  8. Results in Engineering

    Results in Engineering (RINENG) is a gold open access journal offering authors the opportunity to publish in all fundamental and interdisciplinary areas of engineering. Results in Engineering accepts papers that are scientifically sound, technically correct and provide valuable new knowledge to the engineering community. 1. Full research papers.

  9. Journal of Engineering Research

    Journal of Engineering Research (JER) is an international, peer reviewed journal which publishes full length original research papers, reviews and case studies related to all areas of Engineering such as: Civil, Mechanical, Industrial, Electrical, Computer, Chemical, Petroleum, Aerospace, Architectural, etc. JER is intended to serve a wide range of educationists, scientists, specialists ...

  10. Journals in Engineering

    Welcome to the Elsevier Engineering area of Elsevier. For almost 60 years, we have been a leading publisher in the field, publishing highly respected titles, including prestigious society journals, book series, and a range of impressive major reference works. By delivering first class information and innovative tools, we continue to refine our ...

  11. Home

    Electrical Engineering is a journal publishing original papers in electrical engineering with a strong focus on electric power systems. Offers original research articles and insightful reviews. Focusses on areas including smart systems, systems planning, and energy distribution. Welcomes manuscripts describing theoretical, computer application ...

  12. Writing a Research Paper

    A research paper should not exceed 12,000 words. Beyond this amount, a mandatory excess-page charge can be assessed. These charges are described here: Publication Charges. To estimate figures and tables: 1 journal page = 1000 words. Half-journal page or a single column = 500 words. Half-column = 250 words.

  13. Introduction to engineering research (Chapter 1)

    Engineering research is based on precisely the same scientific method; however, the research is directed toward the practical application of science to products, services and infrastructure. Most research starts with a hypothesis; that is, a statement which can be either proved or disproved. In most cases it is easier to disprove a hypothesis ...

  14. Mechanical engineering

    Mechanical engineering is the branch of engineering that deals with moving machines and their components. A central principle of mechanical engineering is the control of energy: transferring it ...

  15. Deep Learning in Earthquake Engineering: A Comprehensive Review

    This article surveys the growing interest in utilizing Deep Learning (DL) as a powerful tool to address challenging problems in earthquake engineering. Despite decades of advancement in domain knowledge, issues such as uncertainty in earthquake occurrence, unpredictable seismic loads, nonlinear structural responses, and community engagement remain difficult to tackle using domain-specific ...

  16. 298943 PDFs

    Explore the latest full-text research PDFs, articles, conference papers, preprints and more on MECHANICAL ENGINEERING. Find methods information, sources, references or conduct a literature review ...

  17. (PDF) Guide and Hints to write engineering research paper

    can follow to write a good and interesting engineering research paper.. Guide to write Engineering research Paper. Plan your research early: Many students who are less comfortable with research ...

  18. Computer Science and Engineering

    This conceptual research paper is written to discuss the implementation of the A.D.A.B model in technology -based and technical subjects such as Computer Science, Engineering, Technical and so on ...

  19. IJETT Journal

    2016 - Volume. 2015 - Volume. 2014 - Volume. 2013 - Volume. 2012 - Volume. 2011 - Volume. Access previous issues of IJETT Journal's archive and explore a rich collection of peer-reviewed articles on engineering, technology, and applied sciences from leading experts and researchers worldwide.

  20. Top 150 Mechanical Engineering Research Topics [Updated]

    Top 150 Mechanical Engineering Research Topics [Updated] General / By Stat Analytica / 10th February 2024. Mechanical engineering is an intriguing discipline that holds significant sway in shaping our world. With a focus on crafting inventive machinery and fostering sustainable energy initiatives, mechanical engineers stand as pioneers in ...

  21. 4th International Conference "Coordinating Engineering for

    This open access book gathers the proceedings of the 4th International Conference "Coordinating Engineering for Sustainability and Resilience" (CESARE) & Midterm Conference of CircularB "Implementation of Circular Economy in the Built Environment", held in Timișoara, Romania, on May 29-31, 2024, as part of the COST Action CA21103.

  22. Mechanical engineering

    Prediction method for the tension force of support ropes in flexible rockfall barriers based on full-scale experiments and numerical analysis. Xin Qi. , Lei Zhao. & Qing-Cheng Meng. Article. 29 ...

  23. Engineering Research Papers, Project Topics

    1 - 15 Of 3373 Results. Browse academic research projects in Engineering. Access and download complete Engineering project topics, Engineering thesis materials, seminar topics, study notes etc. Project topics in Engineering. Engineering topics for students - Page 1.

  24. Feasibility of utilising waste tyre steel fibres to develop sustainable

    Abstract. This study investigates the feasibility of developing sustainable engineered cementitious composite (ECC) with polyvinyl alcohol fibre (PVAF) and recycled tyre steel fibre (RTSF) to reduce the total cost of construction materials and ease the environmental pressure for disposing of waste tyres, putting an emphasis on the engineering properties, impact resistance and environmental ...

  25. CVPR 2024: Latest AI & Computer Vision Research

    LOS ALAMITOS, Calif., 16 May 2024 - Co-sponsored by the IEEE Computer Society (CS) and the Computer Vision Foundation (CVF), the 2024 Computer Vision and Pattern Recognition (CVPR) Conference is the preeminent event for research and development (R&D) in the hot topic areas of computer vision, artificial intelligence (AI), machine learning (ML), augmented, virtual and mixed reality (AR/VR/MR ...

  26. Electrical and electronic engineering

    Control strategy for current limitation and maximum capacity utilization of grid connected PV inverter under unbalanced grid conditions. Jyoti Joshi. , Vibhu Jately. & Brian Azzopardi. Article. 02 ...

  27. Small and Advanced Reactors 2024 Call for Papers

    Small and Advanced Reactors 2024 Call for Papers. The fourth annual Small and Advanced Reactors conference is going live! Hosted by Nuclear Engineering International, the event will take place on 7th March 2024 at the Hilton Garden Inn on the Snake River in Idaho Falls, Idaho, USA.

  28. CUET Chemistry Question Paper 2024 (Code A)

    Students can download the CUET question papers to practice better for the upcoming exams. List of Colleges/Universities accepting CUET 2024 Download our free eBook and make the right choice for your educational future.

  29. Civil engineering

    Civil engineering is the design and fabrication of structures for improving the way we live and work and for enabling rapid, safe and high-volume transportation. Examples include building roads ...