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Novel Infrastructure Techniques - Select Proceedings of NITCon 2025

Anglais · Livre Relié

Paraît le 21.12.2025

Description

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This book explores the recent advancements in Civil Engineeringpresented and conveyed at the International Conference on Novel Infrastructure Techniques -2025. The book focuses on transformative technologies that drive industrial progress and societal well-being. It engages with presentations covering a diverse range of topics including and not limited to integration of Internet of Things (IoT) and Artificial Intelligence (AI) in civil engineering domain to enhance infrastructure monitoring, optimize construction processes, and improve safety and maintenance through real-time data analysis and predictive modelling. In earthquake engineering, the focus lies on developing resilient structural designs and seismic monitoring systems to mitigate the impact of earthquakes. Geospatial technology plays a critical role in planning, surveying, and managing civil infrastructure projects through tools such as GIS, remote sensing, and spatial data analysis. Additionally, sustainable construction materials and methods are gaining prominence, emphasizing the use of eco-friendly, durable, and energy-efficient materials along with innovative building techniques to reduce the environmental footprint of construction activities. This comprehensive resource is an essential read for researchers, practitioners, and policymakers seeking to stay ahead in the evolving landscape of smart and resilient infrastructure.

Table des matières

The effect of slaked lime water on mechanical properties of Ultra-fine high-volume fly ash mortar.- Treated Wastewater as an Alternative Resource in Concrete Manufacturing: Addressing Water Shortages in Construction- A review.- Stability Analysis of Multilayered Slopes Under Horizontal Seismic Forces Using Inclined Slices By Sarma s Method.- Comparative Analysis of Asphalt Mixes Incorporating Plastic Char and Biochar as Sustainable Additives.- Enhancing Lateral Load Capacity of Bentonite Clay Soil  Using Fly Ash Granular Columns.- Dynamic analysis of isotropic shells with different degrees of damage.

A propos de l'auteur

Prof. Deepankar Choudhury is working as a Professor of Civil Engineering Department at the Indian Institute of Technology (IIT) Bombay, India. His research focuses on Geotechnical Earthquake Engineering and Computational Geomechanics. He is the fellow of multiple prestigious academies. Prof. Choudhury has made significant contributions in earthquake-resistant geotechnical structures. He has authored over 310 publications, supervised several PhD theses, and has served as an expert for national projects like India's longest sea bridge, etc. He also holds leadership roles in disaster resilience and other important academic committees.  
Prof. Damodar Maity is a Professor of Civil Engineering Department at the Indian Institute of Technology (IIT) Kharagpur, India. He holds a Ph.D. in Fluid-Structure Interaction from the same institution. His expertise spans seismic analysis, fluid-structure interaction, and cost-effective housing solutions. He is the recipient of several prestigious awards, including the George Oomen Memorial Prize, Dr. Maity has led numerous research projects and has been a key contributor to earthquake-resistant design methods. He has also authored books, several Journal Papers in the national and international sphere.  
Prof. Sibapriya Mukherjee is currently the Professor of Department of Civil Engineering at Narula Institute of Technology, Kolkata, India. Previously, he served as Dean of Faculty Engineering and Technology, and also as Head of the Department of Civil Engineering at Jadavpur University, Kolkata. He holds a Ph.D. from IIT Kharagpur, He has expertise in Geotechnical Earthquake Engineering and Ground Improvement technology. A life fellow of the Institution of Engineers (India) and Indian Geotechnical Society, Dr. Mukherjee has received quite a few prestigious awards for his research and has contributed extensively as a consulting Engineer to various government and private projects. He also has authored several Research articles in Geotechnical as well as multi-disciplinary domain.  
Dr. Ujjwal Saha is an Assistant Professor in Civil Engineering at the Indian Institute of Engineering Science and Technology (IIEST) Shibpur, India with a PhD from IISc Bangalore. His research focuses on the impacts of climate change on hydrological systems, particularly urban flooding. Dr. Saha has contributed to numerous high-impact publications and has made significant contributions towards integrating machine learning with rainfall prediction models. Dr. Saha has also worked on various consultancy projects related to flood management and water resource infrastructure. Dr. Saha is a life member of the Indian Water Resources Society. 

Résumé

This book explores the recent advancements in Civil Engineeringpresented and conveyed at the International Conference on Novel Infrastructure Techniques -2025. The book focuses on transformative technologies that drive industrial progress and societal well-being. It engages with presentations covering a diverse range of topics including and not limited to integration of Internet of Things (IoT) and Artificial Intelligence (AI) in civil engineering domain to enhance infrastructure monitoring, optimize construction processes, and improve safety and maintenance through real-time data analysis and predictive modelling. In earthquake engineering, the focus lies on developing resilient structural designs and seismic monitoring systems to mitigate the impact of earthquakes. Geospatial technology plays a critical role in planning, surveying, and managing civil infrastructure projects through tools such as GIS, remote sensing, and spatial data analysis. Additionally, sustainable construction materials and methods are gaining prominence, emphasizing the use of eco-friendly, durable, and energy-efficient materials along with innovative building techniques to reduce the environmental footprint of construction activities. This comprehensive resource is an essential read for researchers, practitioners, and policymakers seeking to stay ahead in the evolving landscape of smart and resilient infrastructure.

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