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200+ Civil Engineering Research Topics: Exploring Promising Topics

civil engineering research topics

Civil engineering research is the driving force behind the development of sustainable infrastructure and innovative construction methods. It plays a crucial role in shaping our world, from designing earthquake-resistant buildings to developing advanced transportation systems. 

In this blog post, we will explore the importance of choosing the right civil engineering research topics and provide a list of promising research areas to inspire your academic journey.

Why Choose the Right Research Topic?

Table of Contents

Before delving into the exciting world of civil engineering research topics, it’s important to understand why selecting the right research topic is critical.

  • Impact of the Research Topic Selection: The choice of your research topic can have a profound impact on your academic and professional career. A well-defined, relevant topic can lead to groundbreaking discoveries, publications, and recognition in the field.
  • Facilitation of the Research Process: A clearly defined research topic serves as your roadmap. It guides your literature review, data collection, experimentation, and analysis. Without a focused topic, research can become directionless and overwhelming.
  • Benefits of a Relevant and Engaging Topic: An engaging topic keeps you motivated throughout your research journey. It’s much easier to stay dedicated when you’re passionate about your subject matter.
40+ Interesting In 2023 – Everyone Must Know

How to Select the Perfect Civil Engineering Research Topics?

Choosing the right research topic in civil engineering is a crucial step in your academic and professional career. Here are some steps to help you make the best choice:

  • Consider Your Interests and Passion: Think about what aspects of civil engineering interest you the most. Are you fascinated by structural design, transportation systems, environmental issues, or construction management? Choosing the civil engineering research topics that align with your interests will make the research process more enjoyable and meaningful.
  • Review Recent Developments in the Field: Stay updated with the latest trends and breakthroughs in civil engineering. Browse through academic journals, magazines, and websites to identify emerging issues and areas of interest.
  • Assess the Feasibility and Resources Available: Ensure that your chosen topic is feasible given the resources and facilities at your disposal. You should have access to the necessary equipment, data, and expertise to conduct your research effectively.
  • Discuss with Professors and Mentors: Seek advice from your professors and mentors. They can provide valuable insights, suggest potential research questions, and guide you in the right direction.
  • Explore Interdisciplinary Possibilities: Civil engineering is often interconnected with other fields. Consider exploring interdisciplinary research topics that combine civil engineering with subjects like materials science, environmental science, or computer science for a unique perspective.

200+ Civil Engineering Research Topics: Category Wise

Structural engineering.

  • Innovative materials for earthquake-resistant buildings.
  • Advancements in bridge design and construction.
  • Sustainable skyscraper designs.
  • Application of nanotechnology in structural engineering.
  • Rehabilitation of historic structures using modern techniques.
  • Seismic retrofitting of critical infrastructure.
  • Wind and earthquake-resistant building designs.
  • Performance-based design of structures.
  • Structural health monitoring for bridges and buildings.
  • Resilient design for extreme weather conditions.

Geotechnical Engineering

  • Soil stabilization techniques for foundation support.
  • Geotechnical investigation methods in urban areas.
  • Landslide prediction and prevention.
  • Seismic site characterization and liquefaction assessment.
  • Innovative foundation systems for high-rise buildings.
  • Soil-structure interaction in deep foundations.
  • Geotechnical challenges in offshore engineering.
  • Sustainable slope stabilization methods.
  • Ground improvement techniques for soft soils.
  • Geothermal energy extraction from the Earth’s crust.

Transportation Engineering

  • Traffic management and congestion reduction strategies.
  • High-speed rail systems and urban development.
  • Autonomous vehicles and their role in future transportation.
  • Sustainable urban transportation planning.
  • Transportation network optimization using AI.
  • Public transportation infrastructure development.
  • Pedestrian and cyclist-friendly city design.
  • Environmental impact assessment in transportation projects.
  • Intelligent transportation systems for smart cities.
  • Emergency evacuation and traffic management.

Environmental Engineering

  • Water treatment and purification methods.
  • Green infrastructure and urban stormwater management.
  • Wastewater treatment plant optimization.
  • Air quality monitoring and pollution control technologies.
  • Groundwater contamination assessment and remediation.
  • Solid waste management in urban areas.
  • Renewable energy generation from waste.
  • Climate change adaptation in infrastructure design.
  • Eco-friendly construction materials and practices.
  • Sustainable urban planning and design.

Construction Management

  • Learn construction techniques and practices.
  • Building Information Modeling (BIM) applications in construction.
  • Safety management in construction projects.
  • Risk management in construction projects.
  • Quality control and assurance in construction.
  • Sustainable construction materials and methods.
  • Project scheduling and time management.
  • Cost estimation and budget management in construction.
  • Construction contract management and dispute resolution.
  • Innovative prefabrication and modular construction techniques.

Materials Engineering

  • Development of advanced construction materials.
  • Durability of concrete in harsh environments.
  • Recycling and reuse of construction materials.
  • Nano-materials in construction.
  • Sustainable construction materials.
  • Corrosion protection for infrastructure.
  • High-performance concrete mix design.
  • Materials for lightweight and high-strength structures.
  • Fire-resistant building materials.
  • Testing and quality control of construction materials.

Water Resources Engineering

  • River basin management and flood control.
  • Watershed modeling and management.
  • Sustainable urban water supply systems.
  • Urban drainage system design and management.
  • Dams and reservoir engineering.
  • Water resource optimization and allocation.
  • Water quality modeling and management.
  • Climate change impact on water resources.
  • Groundwater recharge and management.
  • Desalination technologies for freshwater production.

Coastal and Ocean Engineering

  • Coastal erosion control and beach nourishment.
  • Offshore wind energy farms and their impact.
  • Design of marine structures for port facilities.
  • Coastal zone management and resilience.
  • Coastal hydrodynamics and wave modeling.
  • Tidal energy harnessing and environmental considerations.
  • Coastal protection against storm surges and tsunamis.
  • Oceanography and marine environmental studies.
  • Design of breakwaters and seawalls.
  • Harbor and navigation channel design.

Earthquake Engineering

  • Seismic hazard assessment and mapping.
  • Retrofitting of existing structures for earthquake resistance.
  • Seismic design of lifeline systems (water, gas, power).
  • Soil-structure interaction in seismic events.
  • Non-destructive testing for seismic damage assessment.
  • Seismic behavior of innovative materials.
  • Performance-based earthquake engineering.
  • Post-earthquake reconnaissance and lessons learned.
  • Seismic risk assessment and mitigation strategies.
  • Earthquake early warning systems.

Bridge Engineering

  • Innovative bridge designs and aesthetics.
  • Long-span bridge construction and materials.
  • Cable-stayed and suspension bridge technology.
  • Bridge health monitoring and maintenance.
  • Bridge inspection and assessment techniques.
  • Advanced seismic retrofitting of bridges.
  • Smart bridges and sensor technology.
  • Bridge management and asset management systems.
  • Innovative bridge construction techniques.
  • Load rating and capacity evaluation of existing bridges.

Traffic Engineering

  • Traffic flow modeling and simulation.
  • Adaptive traffic signal control systems.
  • Pedestrian and cyclist safety studies.
  • Intelligent transportation systems for traffic management.
  • Congestion pricing and traffic demand management.
  • Driver behavior analysis and safety measures.
  • Intermodal transportation planning.
  • Traffic impact assessment of new developments.
  • Transportation planning for urban and rural areas.
  • Sustainable transportation infrastructure.

Urban Planning and Design

  • Sustainable urban development and planning.
  • Smart city infrastructure and technology integration.
  • Urban revitalization and brownfield redevelopment.
  • Transit-oriented development (TOD) planning.
  • Green building and urban design.
  • Affordable housing design and policy.
  • Historical preservation and urban conservation.
  • Mixed-use development and zoning.
  • Resilient urban planning for climate change.
  • Inclusive and accessible urban design.

Surveying and Geospatial Engineering

  • Land surveying and cadastral mapping advancements.
  • Remote sensing and GIS applications in civil engineering.
  • 3D laser scanning and point cloud data analysis.
  • Geodetic surveying for infrastructure projects.
  • UAVs (drones) in geospatial data collection.
  • GPS technology for precise positioning in construction.
  • BIM integration with geospatial data.
  • Underground utility mapping and detection.
  • Geospatial analysis for disaster management.
  • Geospatial data privacy and security.

Energy-Efficient Buildings

  • Net-zero energy building design.
  • Energy-efficient HVAC and lighting systems.
  • Passive solar design for buildings.
  • Green roofs and living walls in urban design.
  • Building energy modeling and simulation.
  • Building envelope insulation and materials.
  • Daylight harvesting and control systems.
  • Carbon footprint reduction in building design.
  • Sustainable building certification (LEED, BREEAM, etc.).
  • Building-integrated renewable energy systems.

Advanced Computational Techniques

  • Finite element analysis in structural design.
  • Computational fluid dynamics for hydraulic modeling.
  • Artificial intelligence in civil engineering applications.
  • Machine learning for predictive maintenance in infrastructure.
  • Optimization algorithms for infrastructure design.
  • High-performance computing in engineering simulations.
  • Data analytics for infrastructure asset management.
  • Digital twins in civil engineering projects.
  • 3D modeling and visualization tools for design.
  • Virtual reality (VR) and augmented reality (AR) in construction.

Disaster Resilience and Risk Management

  • Disaster risk reduction strategies for infrastructure.
  • Post-disaster recovery and reconstruction planning.
  • Seismic and tsunami hazard mitigation measures.
  • Floodplain mapping and management.
  • Climate change adaptation for infrastructure.
  • Resilience of lifeline systems (water, power, etc.).
  • Risk assessment and vulnerability analysis.
  • Emergency response planning for natural disasters.
  • Insurance and financing for disaster recovery.
  • Public awareness and education for disaster preparedness.

Sustainable Transportation Technologies

  • Electric and hybrid vehicles in transportation.
  • Hydrogen fuel cell technology in transport.
  • Sustainable fuels for aviation and shipping.
  • High-speed magnetic levitation (maglev) trains.
  • Hyperloop transportation system feasibility.
  • Green infrastructure for urban transportation.
  • E-mobility and charging infrastructure.
  • Sustainable transportation policy development.
  • Impact of ride-sharing and carpooling on traffic.
  • Multi-modal transportation integration.

Innovative Bridge Materials

  • Self-healing concrete in bridge construction.
  • Carbon fiber-reinforced polymers (CFRP) in bridges.
  • Ultra-high-performance concrete (UHPC) for bridge connections.
  • Bamboo as a sustainable bridge building material.
  • Bridge cable materials and corrosion resistance.
  • Innovative composites for bridge components.
  • Timber bridge construction and sustainability.
  • Green bridge design with vegetation integration.
  • Recycled and upcycled materials in bridge building.
  • Smart materials for real-time bridge health monitoring.

Smart Infrastructure and IoT

  • Internet of Things (IoT) applications in infrastructure.
  • Sensor networks for structural health monitoring.
  • Smart traffic management systems and IoT.
  • Predictive maintenance of infrastructure using IoT.
  • Asset tracking and management in construction.
  • Smart city infrastructure development.
  • Energy-efficient street lighting systems.
  • Environmental monitoring with IoT.
  • Remote control and automation of infrastructure.
  • Data analytics for smart infrastructure decision-making.

Nanotechnology in Civil Engineering

  • Nanomaterials for enhanced construction materials.
  • Nanosensors for structural health monitoring.
  • Nanotechnology applications in water treatment.
  • Nano-coatings for corrosion protection.
  • Nanomaterials in geotechnical engineering.
  • Nanoparticles for pollutant removal in soil and water.
  • Nanofibers in lightweight and high-strength materials.
  • Nanostructured materials for earthquake resistance.
  • Nanorobotics for infrastructure inspection and repair.
  • Nanotechnology in sustainable building design.

Examples of Recent Research Breakthroughs

To illustrate the impact of research in civil engineering, let’s look at a few recent breakthroughs in the field:

  • 3D-Printed Concrete Structures: Researchers have developed 3D-printing technology that can construct complex concrete structures, offering cost-effective and sustainable building solutions.
  • Self-Healing Materials: Self-healing materials , such as concrete that can repair its own cracks, have the potential to extend the lifespan of infrastructure.
  • Smart Transportation Systems: Smart transportation systems use real-time data and sensors to optimize traffic flow and reduce congestion, making transportation more efficient and sustainable.
  • Zero-Energy Buildings: Research into zero-energy buildings has led to the development of structures that produce as much energy as they consume, reducing the environmental impact of construction.

Challenges and Considerations

As you embark on your civil engineering research topics journey, consider these challenges and important factors:

  • Ethical Considerations: Ensure that your research is conducted with the highest ethical standards, considering the safety and well-being of both people and the environment.
  • Funding Opportunities and Grants: Seek out funding sources and grants to support your research endeavors. Many organizations offer financial support for innovative civil engineering projects.
  • Collaboration and Networking: Collaborate with fellow researchers, attend conferences, and join professional organizations to network and stay updated with the latest developments in the field.

Selecting the right civil engineering research topics are the first and most crucial step in your journey as a civil engineering researcher. The choice of topic can define the impact and success of your research. The field of civil engineering is vast, dynamic, and full of exciting possibilities. 

Whether you’re interested in structural engineering, geotechnical engineering, transportation systems, environmental engineering, or construction management, there are countless avenues to explore. 

As you embark on your research, remember that every innovation in civil engineering contributes to a more sustainable and advanced world.

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Professor of Classical Studies, Brandeis University

new research paper topics in civil engineering

Emeritus Professor, Civil Engineering, University of Warwick

new research paper topics in civil engineering

Senior lecturer, Stellenbosch University

new research paper topics in civil engineering

Berger Chair Professor and Lead, Resilient and Equitable Infrastructure, Tufts University

new research paper topics in civil engineering

PhD Candidate, Brunel University London

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Comparative Analysis of Work–Life Balance Perceptions of Civil Engineering Students

Ice proceedings.

In addition to Civil Engineering, ICE Proceedings includes 18 specialist journals. Papers and articles published in the most recent issues are listed here. Summaries of all these and other papers and articles published can be read free in the ICE Virtual Library at www.icevirtuallibrary.com/content/journals .

Incorporating Socioeconomic Metrics in Civil Engineering Projects: The Resilience Perspective

New report evaluates the challenges that women still face in the construction sector.

Civil engineer Joana Palha of business consultancy Ayming introduces a report her firm published last year on the challenges still facing women in construction. Contributors included former Civil Engineering editorial panel member Liz King of Mott MacDonald.

Reform and Practice of the Core Curriculum of Civil Engineering and Architecture Based on the “1+X” System

The “1+X” system has a great impact on the development of vocational education. Based on this system, it is imperative to carry out the reform and practice of the core curriculum of Civil Engineering and Architecture. Several vocational colleges have made attempts in the reform and practice of the curriculum, but the effect is not ideal. Under the influence of various factors, such as the lack of experience, there are also several problems in the reform and practice of the curriculum. Among them, the most apparent problems are as follows: the curriculum reform is not synchronized with the development of teaching materials, the pertinence of practical teaching is lacking, and the guidance provided for professional certificate examinations is not well-established. This paper specifically analyzes the problems existing in the reform and practice of the core curriculum of Civil Engineering and Architecture under the “1+X” system, and then puts forward effective strategies for these problems.

CELEBRATING THE 55TH ANNIVERSARY OF THE JOURNAL OF CIVIL ENGINEERING AND MANAGEMENT: EDITOR’S INTRODUCTION

Celebrating the 55th anniversary of the Journal of Civil Engineering and Management: editor’s introduction. Journal of Civil Engineering and Management, 28(1), 1–5.

Contribution on the Use of Household Waste as Bio-Admixture

In the civil engineering field, the incorporation of chemical admixtures is now a practical technics' used for improving the properties of concrete, such as improved workability, decreasing the water demand, increasing strength, etc. However, chemical admixtures have some disadvantages such as environmental pollution during both their manufacture and their use, else, there are rare somewhere. Because of this background, bio-admixtures appear principally useful, due to their environmental effect and friendly properties, bio-admixtures are substances obtained from a biodegradable product also resulting from the methanisation. The objective of this research is the valorization of household waste used as a bio-admixture. Moreover studying its effect on cement path workability, start/end of the cement setting.

Developing Multifunctional/Smart Civil Engineering Materials to Fight Viruses

Mapping the physical properties of soils and the california bearing ratio (cbr) value for different soil types: a case study in the bukit kemuning and pugung tampak areas.

It is widely accepted that soil is a mixture of mineral constituents that have accumulated over time. The physical characteristics of soil vary according to the mineral and organic matter content and the process of formation. The soil`s unique characteristics have been the subject of research in the field of civil engineering, which has continued to evolve to the present day due to the land`s requirement for civil engineering construction, such as road paving. As a result, the current study sought to determine the similarity of soil samples based on their physical properties and California Bearing Ratio (CBR) values, as well as the relationship between the soil`s physical properties and CBR values. To our knowledge, there is hardly little research in the literature investigating the topic under our investigation. Furthermore, we also mapped the physical characteristics and CBR values of numerous distinct soil samples using a Geographical Information System (GIS). This study concentrated on the West Lampung Regency, specifically the area between Bukit Kemuning in Central Lampung and Liwa in West Lampung, along the lines of Bukit Kemuning, Liwa, and Krui, all the way to the Lampung – Bengkulu province border. The soil samples from the area were taken for two tests: the unsoaked CBR test and the soaked CBR test. The results of the tests show that a 31-kilometre distance does not result in a significant difference in soil properties, which are generally similar except in clay-rich areas. Furthermore, the results of the laboratory analysis show that the amount of water in the soil sample affects the Liquid Limit (LL), Plastic Limit (PL), Maximum Dry Density (MDD), and CBR values; the lower the plastic limit value, and thus the lower the CBR value, the less water in the soil. The implications of the current findings are also discussed.

XXX Russian-Polish-Slovak Seminar Theoretical Foundation of Civil Engineering (RSP 2021)

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Civil engineering has the utmost importance in today's society, serving as the profession in which our day-to-day infrastructure is designed and built. Civil engineering is a broad profession, including several specialized sub-disciplines. It is linked to knowledge of structures, materials science, geography, geology, soils, hydrology, environmental science, mechanics, project management, along with other fields.

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Manuscript preparation guidelines for journal authors – Engineering

Our engineering journal titles report the latest research and current practice for the benefit of the international civil engineering profession and related disciplines. We also cover historical research and lessons learned from past events. Each paper is independently assessed and peer-reviewed.

All of our engineering titles broadly follow the guidelines below. More specific instruction may be found on the journal homepage of the title that you are submitting to.

Types of content

  • Paper  (including research, case study or project papers) A Research article is an original presentation of findings from an investigation. A case study looks at the effects of the implementation of, for example, a system and analyses it, in context of the situation.
  • State-of-the-art review A state-of-the-art review is an up-to-date summary of knowledge on a particular subject or issue and represents an overview of recent developments.
  • Briefing articles Short, topical updates, which are not sufficiently comprehensive or novel to be submitted as a research article. Typically, briefings are used to provide authoritative updates of relevant technical, regulatory and professional developments. They can introduce new ideas, explain new legislation, reflect on industry trends, provide the background to a new product or service, discuss anniversaries and events, or simply report a short case history.
  • Book review A book review provides a short description of an academic title and evaluates its quality and contribution to the field in question.
  • Discussion This article format allows reader to comment on previously published papers. Authors of the paper being discussed are given the right to reply. All correspondence is peer-reviewed by a member of the Editorial Board or Panel.
  • Letters ( Géotechnique Letters only, 2,000 words max) Géotechnique Letters seeks the presentation of novel or emerging ideas and designs, current case studies or the results arising from recently completed research or work in progress that may be of immediate interest to the wider geotechnical community. The shorter format encourages the rapid publication of articles.

Length (excluding abstract and reference list)

  • Research articles have a maximum length of 5,000 words (excluding article title, abstract and reference list).
  • Briefing articles have a word count limit of 1,800.
  • Across all journals there is a word count limit of 500 for discussions and book reviews.
  • Géotechnique  research articles have a page limit corresponding to 12 published journal pages, combining all aspects of the paper ( See here for more details ).

If your article exceeds these restrictions, you can upload the additional information as supplementary data. Please note, that this is only published online and not in the print version of the journal. You can find out more information by reading our supplementary information policy .

Format and elements of submitted texts

Please prepare your main text document in Microsoft Word, text should be double line spaced, line numbered and pages should be numbered. We have a template available should you need it.

We also accept Latex files; you may use one of the following three templates i) Géotechnique ii Géotechnique Letters iii) Proceedings of ICE journal . Latex file manuscripts must be submitted using  our template along with a PDF copy of the manuscript.

Please note that the style that you submit your paper in (e.g. any additional italics or bold fonts, bullet points, etc.) may be changed on publication to accommodate our house style.

  • The text should be written in UK English, in the third person and all spelling follow the latest edition of The Concise Oxford English Dictionary, with a preference for ‘s’ rather than ‘z’ spellings, e.g. specialise.
  • The manuscript should be able to be readily understood by a civil engineer and avoid any colloquialisms.
  • The terms, including nomenclature and abbreviations, and style should be consistent throughout the text. Please bear this in mind when collaborating with other authors on the text.
  • Referring directly to the names of individuals, organisations, products or services is forbidden unless essential to the comprehension of the manuscript. Gratuitous flattery or derogatory remarks about any person/organisation should not be included.
  • Principal participants in a project should be listed separately in a table or acknowledgement at the end of the text. If a person/client is involved, you should seek their permission to detail the project.
  • We do not accept footnotes.
  • Symbols and Units: SI and derived units should be used, including for historical structures.
  • Abbreviations: the use of internationally recognised abbreviations is allowed in the text provided they are defined on first use. Abbreviations should not be used in the title unless a commonly used, non-specialist term. Any abbreviations which can be pronounced as a word (i.e. acronyms) should generally have an upper-case initial only (e.g. Defra). Symbols for chemical elements and compounds should not be used as abbreviations unless in the context of a chemical equation. In particular, ‘carbon dioxide’ should not be abbreviated to ‘CO2’ or ‘carbon’.
  • Use bullet points rather than numbered lists.
  • Text should be 1.5 spacing or double spaced.

The following is a detailed manuscript preparation guide for research articles to ICE Publishing’s engineering titles; however, they can, in the most part, be used as a basis for other article types amending to concur with the word limit and premise of the formats, as appropriate.

On the first page of your main text document please provide:

  • The date that the text was written or revised
  • Title of paper (please see below for guidance on titles)
  • Full names and post-nominal letters of author(s)
  • Positions, affiliations and ORCID number of author(s)
  • Contact address and email addresses of all authors 
  • Number of words in the main text (excluding abstract and references) and the number of figures and tables.
  • Please DO NOT include your personal telephone number on the title page.

Titles are limited to 90 characters, including spaces. Please avoid the use of any abbreviations, acronyms or formulae. Titles should clearly reflect the content of the manuscript and any search terms that readers may use should be considered and incorporated.

Please provide a 150–200 word summary of the submission (briefings, research articles and letters only). This should be a concise reflection of the aims, findings, conclusions and any interesting or important results. Take care to incorporate any terms that may be used by potential interested readers to improve the article’s discoverability online (search engine optimisation). This should contain no references; abbreviations that are not commonly used should be defined (for the benefit of the non-specialist reader) at first use.

List of notations

Please provide a list of symbols and definitions used in the text that would be helpful for the reader.

These are used for indexing your article on ICE Virtual Library (this website). Please select a minimum of three keywords from this MS Excel file (if it displays as symbols on a webpage, try opening them in a browser other than Internet Explorer). When you submit your article, you may also type in keywords not on this list.

Introduction

A concise, accurate, but not exhaustive, summary of current knowledge, with reference to relevant previous and recent works in the field should be presented. This should be accompanied with the aims of and justification for the work contained in the submitted manuscript.

The methods and processes applied to investigate and achieve the aims should be communicated in sufficient detail that readers could repeat the work successfully. The results should be reported clearly and logically, must be interpreted accurately and discussed fairly. Figures/tables can be used to support these findings, but data must not be reproduced in more than one form.

It is a requirement that all research articles include a section at the end of the main text that highlights the contribution of the findings to the field and any potential applications.

All research articles, case studies and project papers should discuss how the work relates to mitigation of or adaptation to climate change. Where relevant, a section on health and safety should be included.

In general, we recommend one figure per 500 words of text. Examples of figures and guidance on filetypes can be seen on our Figure Guidance page . For specific advice and step by step guidance on accepted file formats and our figure requirements please open, download and save our figure guidelines PDF.

All figures are published in colour online. The following four journals also have a black and white printed version: Bridge Engineering, Géotechnique, Ground Improvement  and  Magazine of Concrete Research . This should be considered when trying to convey information through colour, use greyscale where necessary. If you wish, you can pay a charge of 750 GBP for colour printing. To do so, send this form to the journal office.

If reproducing or adapting figures from other published work, this must be referenced in the caption and appropriate permissions sought. Please see our copyright page for more information.

Conclusions

A concise summary of the findings or, in the instance of case studies or project papers, the lessons learned. No new information should be introduced here. If necessary, you should explain here the applicability / relevance of your article to readers in other countries.

Research papers must explain the practical relevance and potential applications of the work described. This is important to readers working in civil engineering and related practice.

Similarly, case studies and project papers must highlight the relevance of the work described and summarise the lessons learned. As with research papers, they must also include relevant references to demonstrate how previous research and practice has been used. These references could be standards, codes or relevant past ICE Publishing journal papers.

Additional information, such as tables or mathematical calculations/derivations can be included and should be clearly referred to, from the main text, as belonging to the appendix. These will be included in the print and online versions of the article.

Acknowledgements

Please provide details from those (individuals and institutions) other than co-authors that contributed to the paper. Additional details required by funding bodies can be placed here too, as well as information about the source of the work (i.e., based on a presentation etc.)

Please add a list of literature cited in the manuscript at the end of the text. Harvard style (author, date) referencing is used in engineering papers. Further details about Harvard referencing .

Unpublished material should not be included in the Reference list.

  • If an article has been submitted but not yet accepted, it should only be cited within the text and not the reference list. For example, at the first citation ‘(see ‘Title of publication’ by Author, submitted to Journal’). Subsequent citations can be presented as ‘Author (submitted)’ or ‘(Author, submitted)’.
  • If an article has been submitted and accepted but is not yet published, it should be included in the reference list with 'in press' at the end. A DOI number should be included where possible.

Mathematical equations

Only relevant equations should be included in the main text and should be numbered – anything else can be added as an appendix or as supplementary information. Simple, single line equations can be written using word; an equation editor program is required for more complex formulae.

Figures and tables caption list: Please supply a figure caption list at the end of your main text document. Figures and tables must be mentioned in the text in consecutive order, but as different sets (i.e., Figure 1, Table 1 etc.) All figures must have a brief title accompanied with a short description that can be able to be understood without reference to the main text.

Author photos

Authors are encouraged to provide a passport style photograph of themselves. These will be published only if a file for every named author is provided.

Corresponding authors

We only permit one corresponding author per submission. Co-authors can be added, and their email addresses and institutions must be provided.

Supplementary information

Additional information, data and other material that may enhance the manuscript but is not necessary to the conclusions can be uploaded as supplementary material. Any reference to supplementary information in the main text should be referred to as, e.g., Figure S1. Further details, please read our supplementary information policy .

Once you have completed your manuscript preparation, please go through this submission checklist . When you are ready, please upload your MS Word document text, and separate high-resolution image files, to the journal submission website. All of our titles use ReView, a manuscript management system - all articles must be uploaded through this.

We have more instructions on how to submit your article . This will save you emailing large files through to us. Please do not submit all of your files as one PDF. You will receive a confirmation email once you have successfully submitted your paper online.

Copyright information

Information on copyright, including text extracts and the reuse of permission published elsewhere, can be found via our Copyright and Permissions page .

If you have any queries, please contact the editorial office.

Editor-in-Chief

  • Claudia Currie AtkinsRéalis
  • Meshi Taka Waterman Aspen - United Kingdom

Associate Editors

  • Abiodun Akinyemi Skanska UK Plc, Nuneaton - United Kingdom
  • Afshin Asadi EnvoGéotechnique Ltd - New Zealand
  • Alex Backhouse AtkinsRéalis, London - United Kingdom
  • Alper Beser independent consultant, Dublin - Republic of Ireland
  • Paul Corbett Jacobs, Auckland - New Zealand
  • Erdal Ergul PLC Contracting LLC, Dubai - U.A.E.
  • Emma Ferranti University of Birmingham - United Kingdom
  • Gul Hameed Khalil Pakistan Civil Aviation Authority - Pakistan
  • Alex Heward Laing O'Rourke, Dartford - United Kingdom
  • Bushra Hussain Aurecon, Dubai - U.A.E.
  • Debabrata Mukherjee AtkinsRéalis, Bengaluru - India
  • Matt Parker Hinkley Point C - United Kingdom
  • Milda Pladaite Leyton, Brussels - Belgium
  • Muhammad Rahman Northumbria University - United Kingdom
  • Vasilis Sarhosis University of Leeds - United Kingdom
  • Dian Saunders Agate Regional Consultancy Services, Nassau - Bahamas
  • Sakthy Selvakumaran University of Cambridge - United Kingdom
  • Alpa Sheth VMS consultants Pvt, Ltd, Mumbai - India
  • Giulia Sospotti WSP, London - United Kingdom
  • Bin Wang Sichuan University - P.R China
  • Ben Ramster Emerald Publishing - UK [email protected]

Journal Editorial Office (For queries related to pre-acceptance)

  • Meghna Arya Emerald Publishing - India [email protected]

Supplier Project Manager (For queries related to post-acceptance)

  • Manmeet Nirmal Emerald Publishing [email protected]

Citation metrics

CiteScore 2023

Further information

CiteScore is a simple way of measuring the citation impact of sources, such as journals.

Calculating the CiteScore is based on the number of citations to documents (articles, reviews, conference papers, book chapters, and data papers) by a journal over four years, divided by the number of the same document types indexed in Scopus and published in those same four years.

For more information and methodology visit the Scopus definition

CiteScore Tracker 2024

(updated monthly)

CiteScore Tracker is calculated in the same way as CiteScore, but for the current year rather than previous, complete years.

The CiteScore Tracker calculation is updated every month, as a current indication of a title's performance.

2023 Impact Factor

The Journal Impact Factor is published each year by Clarivate Analytics. It is a measure of the number of times an average paper in a particular journal is cited during the preceding two years.

For more information and methodology see Clarivate Analytics

5-year Impact Factor (2023)

A base of five years may be more appropriate for journals in certain fields because the body of citations may not be large enough to make reasonable comparisons, or it may take longer than two years to publish and distribute leading to a longer period before others cite the work.

Actual value is intentionally only displayed for the most recent year. Earlier values are available in the Journal Citation Reports from Clarivate Analytics .

Publication timeline

Time to first decision

Time to first decision , expressed in days, the "first decision" occurs when the journal’s editorial team reviews the peer reviewers’ comments and recommendations. Based on this feedback, they decide whether to accept, reject, or request revisions for the manuscript.

Data is taken from submissions between 1st January 2023 and 31st December 2023

Acceptance to publication

Acceptance to publication , expressed in days, is the average time between when the journal’s editorial team decide whether to accept, reject, or request revisions for the manuscript and the date of publication in the journal.

Acceptance rate

The acceptance rate is a measurement of how many manuscripts a journal accepts for publication compared to the total number of manuscripts submitted expressed as a percentage %

Data is taken from submissions between 1st January 2023 and 31st December 2023 .

This journal is abstracted and indexed by

  • Web of Science

Reviewer information

Peer review process.

This journal engages in a single anonymous peer review process, which strives to match the expertise of a reviewer with the submitted manuscript. Reviews are completed with evidence of thoughtful engagement with the manuscript, provide constructive feedback, and add value to the overall knowledge and information presented in the manuscript.

The mission of the peer review process is to achieve excellence and rigour in scholarly publications and research.

Our vision is to give voice to professionals in the subject area who contribute unique and diverse scholarly perspectives to the field.

The journal values diverse perspectives from the field and reviewers who provide critical, constructive, and respectful feedback to authors. Reviewers come from a variety of organizations, careers, and backgrounds from around the world.

All invitations to review, abstracts, manuscripts, and reviews should be kept confidential. Reviewers must not share their review or information about the review process with anyone without the agreement of the editors and authors involved, even after publication. This also applies to other reviewers’ “comments to author” which are shared with you on decision.

new research paper topics in civil engineering

Resources to guide you through the review process

Discover practical tips and guidance on all aspects of peer review in our reviewers' section. See how being a reviewer could benefit your career, and discover what's involved in shaping a review.

More reviewer information

Calls for papers

How can civil engineering help us to meet the un sustainable development goals, infrastructure maintenance projects.

Civil Engineering, the ICE Member international journal, is inviting proposals for papers on both small and large innovative maintenance projects; lessons learned, real performance versus predicted and “what we would do if we had our time...

The Institution of Civil Engineers Member journal, covering all aspects of civil engineering today.

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Aims and scope

Civil Engineering , listed by the Web of Science, is the ICE's flagship journal. Practical and diverse in its scope, it publishes accessible papers for the non-specialist on any subject relevant to civil engineering today. Topics range from landmark projects to philosophical, ethical, environmental, management and safety issues.

Peer review, copyediting, and colour publication by Civil Engineering are free. If accepted, published papers are easily found by Google search, as well as in specialist citation indexes. There is also the option of making your article open access, should you wish to.

Published authors receive a free electronic copy of their article to share with their peers. Furthermore, as well exposure to ICE's 96,000-strong membership, published papers are promoted via our social media channels, accessing the wider civil engineering community.

It is free to submit a paper to this journal. Papers appear Ahead of Print (below) as soon as they are ready to be published. Ahead of print articles are fully citable. using the DOI system

Each year Civil Engineering publishes two special issues (CESI), find out more about their history .

Awards: Every year, the papers rated best by the Editorial Panel are awarded the Coopers Hill War Memorial Prize .  

Key content

Each year Civil Engineering publishes two special issues (CESI), find out more about their history and watch supporting videos.

Civil Engineering Special Issues: video resource

Meet the authors behind the papers in this exclusive video series for ice members subscribing to civil engineering special issues. .

For over 25 years, Civil Engineering Special Issues (CESI) have been providing ICE Members with case studies detailing the most innovative projects worldwide. From the Channel Tunnel , to Hong Kong international airport and London 2012 , each curated special issue contains articles written by the project engineers themselves and reviewed by a panel of experts. Published in May and November annually, each eight-article edition is available exclusively to ICE members in both print and online format. 

Watch the videos

Now, as part of their CESI subscription, ICE members benefit from online access to exclusive project-related video content created by the authors and editors. Hosted on the same page of the ICE Virtual Library as the project paper itself, every issue of CESI will contain several project-related videos.

Please find below a list of the full-length videos published in the  Civil Engineering Special Issue, for you to easily click and watch our authors talking about their projects. This resource is available exclusively to subscribing ICE Members only.

  • Examples of integrating hydraulic equipment into temporary works by Mercedes Ascaso Til and Wilson Wong. Watch the YouTube preview .
  • Planning and delivering a major expansion of the Tema container port in Ghana by Finlo Paish and Anthony Moroney. Watch the YouTube preview .
  • Design and construction of the Karuma hydropower project in Uganda by Adolph Karubanga and Rodgers Mugume. Watch the YouTube preview .
  • Private finance essential to provide stimulus to post-Covid-19 rebuilding by Katherine Jackson and Kerry Thompson. Watch the YouTube preview
  • Using community data to improve rural water infrastructure in India by Hamish Hay, Philip Songa, and Vera Ngosi. Watch the authors' video now .
  • Doubling the capacity of Kempegowda International Airport in Bengaluru, India by Rohit Kumar Chikatamarla and Sundar Chandramouli. Watch the YouTube preview
  • Restoration and development of listed heritage buildings in Kolkata, India by Mainak Ghosal and Indranil Ghosh. Watch the YouTube preview.
  • Managing climate change related risks by Julian Vercruysse, Kim Yates, Davide Stronati. Watch the YouTube preview .
  • Learning from the River Nile about engineering sustainable futures by Mike Muller. Watch the YouTube preview .
  • Great Western railway electrification, UK: collectively delivering a sustainability strategy by Emmanuel Deschamps and Mike Franklin. Watch special lockdown video in full or the YouTube preview .
  • Underground construction: working in high pressure compressed air by Donald Lamont and Roy Slocombe. Watch the full interview with authors or the YouTube preview .
  • Rock cavern development in Hong Kong: past, present and future by Tony Ho, Leslie Tsang, and Chi Cheung Chan. Watch the full video or the YouTube preview .
  • Improving safety through design at London Underground’s Bank station capacity upgrade by Cate Anthony, Sebastian Kumpfmüller, Andreas Feiersinger, and Juan Ares. Watch the full author interview or the YouTube preview .
  • Automated construction: boosting on-site productivity using a platform-based approach by Kevin Masters and Jaimie Johnston. Watch the full author video or the YouTube preview .
  • Introduction to the Special issue on major and innovative projects in China by Dr Yancheng Cai. Watch three exclusive videos .
  • Engineering future liveable, resilient, sustainable cities using foresight , by Professor Chris Rogers. Watch the full video or the YouTube preview . 
  • Developing and procuring London’s highway infrastructure to enable an electric future by Louise Clancy, Spencer Palmer, Jamie Blake. Watch the full video  or the YouTube preview .
  • Urban and landscape design in the Arabian Gulf region: a new paradigm for sustainability , by Robert Cooke. Watch the full video or the YouTube preview .
  • Using stored snow as cooling at Oslo Airport, Norway , by Jesper Mæx Moe. Watch the full video or the YouTube preview .
  • Digital engineering enables multinational input on Bergen’s light rail extension, Norway , by Jim Sherry. Watch the full video or the YouTube preview .
  • Crossrail project to deliver London’s Elizabeth line: from options to parliamentary bill , by Simon Bennett. Watch the full video or the YouTube preview .
  • Crossrail project: the execution strategy for delivering London’s Elizabeth line , by William Tucker. Watch the full video or the YouTube preview .
  • Crossrail project: a deep-mined station on the Elizabeth line, London , by Adrian St. John, John Barker, Stephen Frost, David Harris. Watch the full video or the YouTube preview .
  • Introduction to Hong Kong Special Issue by Stuart Ross: Watch the full video .

Not a member yet? 

As well as using the preview links above, we have some videos below. If you are a member of the ICE, find out more about subscribing on MyICE. Are you an author?

Video is an innovative way for civil engineers to communicate project information and news. This can support peer-reviewed technical papers by showing readers site details, testing, and by letting the reader hear the authors themselves explain their work. If this is something you would like to do for your paper, please see our video guide or contact us for more information. 

sustainable

This title is aligned with our sustainable structures and infrastructures goal

We recognise the transformative power of sustainable engineering, design and building practices in creating a world where our planet and its inhabitants can thrive.

SDG 3 Good health & well-being

new research paper topics in civil engineering

International Journal of Civil Engineering

  • Focuses on interdisciplinary research in civil engineering, encompassing related sub-topics.
  • Provides a forum for international civil engineering community for discussions and developments.
  • Covers Structures, Geotechnics, Transportation, Environment, Earthquakes, Water Resources and more.
  • Mohammad Hassan Baziar

Societies and partnerships

Iran University of Science and Technology

Latest issue

Volume 22, Issue 10

Transaction A:Civil Engineering

Latest articles

Influences and prediction of compaction degree and dry-wet cycles on the water holding properties of low liquid limit clay.

  • Runzhou Luo

new research paper topics in civil engineering

Experimental and Numerical Tests on Beams with Web Openings Under Cyclic Loading

  • Mahyar Maali
  • Nurullah Çınar

new research paper topics in civil engineering

Tunnel Face Stability During Slurry-Shield Tunnelling in Saturated Cohesionless Soil Considering Slurry Infiltration

  • Qingfeng Shi

new research paper topics in civil engineering

Experimental Investigation on Flow and Bed Sediment Transport around a Semi-Circular Abutment in the Presence of Irregular Vegetation

  • Gholamreza Azadi
  • Hossein Afzalimehr
  • Moses Karakouzian

new research paper topics in civil engineering

Experimental and Constitutive Modeling Investigations of the Mechanical Behaviors of a Gravelly Soil Material Under Large-Size Triaxial Cyclic Tests

  • Jiu-Chang Zhang
  • Ru-Bin Wang

new research paper topics in civil engineering

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