Abhijeet Das | Water Resource Engineering | Excellence in Innovation

Dr. Abhijeet Das | Water Resource Engineering | Excellence in Innovation

C.V. Raman Global University (CGU), Bhubaneswar, Odisha | India

Dr. Abhijeet Das is a dynamic and highly skilled civil engineering professional specializing in Water Resource Engineering, with extensive expertise in watershed hydrology, hydrological modeling, and advanced engineering design. He has contributed significantly to the development and optimization of water management systems, integrating innovative methodologies with emerging technologies like machine learning, GIS, and remote sensing. With a vision to address global water resource challenges, Dr. Das has been actively engaged in collaborative research and consultancy projects across multiple countries, enhancing water quality assessment, environmental impact studies, and sustainable infrastructure planning.

Professional Profiles

SCOPUS
ORCID

Education

Dr. Das holds a Ph.D. in Water Resource Engineering from C.V. Raman Global University, Bhubaneswar. He completed his M-Tech in Water Resource Engineering from Biju Patnaik University of Technology (BPUT), Rourkela, and a B-Tech in Civil Engineering from the same university. His academic foundation is rooted in rigorous research and practical exposure, enabling him to integrate theoretical knowledge with real-world applications in hydrological systems, climate change impact studies, and sustainable water management.

Experience

Dr. Das possesses over a decade of cumulative professional experience encompassing project consultancy, teaching, research, and industry exposure. He served as a Project Consultant at Madhu Smita Design & Engineers Studio, where he worked on large-scale projects related to water resource planning and GIS-based analysis. His teaching experience spans prestigious institutions such as IGIT Sarang and CET Bhubaneswar, where he mentored students in civil and water resource engineering disciplines. Additionally, he has gained valuable industrial exposure through internships and consultancy projects focusing on flood management, water quality optimization, and environmental sustainability.

Research Interests

His research interests include watershed hydrology, climate change impact assessment, drought and flood analysis, Food-Energy-Water (FEW) Nexus, machine learning applications in water resource engineering, remote sensing and GIS-based modeling, numerical and simulation-optimization modeling, water quality control, environmental impact assessment, and geoinformatics. Dr. Das is passionate about integrating artificial intelligence techniques like artificial neural networks and fuzzy logic to enhance predictive accuracy in water management systems.

Awards and Recognitions

Dr. Das has been honored with multiple Best Paper Awards at reputed national and international conferences. His research on water quality assessment, pollution source investigation, and surface water potential zone characterization has been recognized across forums such as ISDMME, ICSEEGT, RASTEMS, TRACE, and ICET. He has also presented award-winning posters on sustainable water quality demarcation and innovative water management techniques. These accolades reflect his commitment to advancing sustainable water resource engineering through cutting-edge research and practical applications.

Publications

An optimization based framework for water quality assessment and pollution source apportionment employing GIS and machine learning techniques for smart surface water governance. (2025). Discover Environment.

Reimagining biofiltration for sustainable industrial wastewater treatment. (2025).

A data-driven approach utilizing machine learning (ML) and geographical information system (GIS)-based time series analysis with data augmentation for water quality assessment in Mahanadi River Basin, Odisha, India. (2025). Discover Sustainability.

Evaluation and prediction of surface water quality status for drinking purposes using an integrated water quality indices, GIS approaches, and machine learning techniques. (2025). Desalination and Water Treatment.

Bioplastics: a sustainable alternative or a hidden microplastic threat? (2025). Innovative Infrastructure Solutions.

Conclusion

Dr. Abhijeet Das represents a new generation of civil engineering professionals dedicated to sustainable water management and environmental conservation. His career integrates academic excellence, industry-focused research, and impactful contributions to international collaborative projects. With his multidisciplinary expertise, he aims to contribute to the global mission of ensuring water security, optimizing resource utilization, and promoting climate-resilient infrastructure. His work continues to bridge the gap between scientific innovation and real-world challenges, fostering sustainable development across diverse regions.

Samet Ceri – Numerical Modelling – Best Researcher Award 

Mr. Samet Ceri - Numerical Modelling - Best Researcher Award 

Imperial College London -  United Kingdom 

Author Profile

Early Academic Pursuits

Mr. Samet Ceri's academic journey began with a strong foundation in Mechanical Engineering at Bursa Technical University, where he distinguished himself as the top student in the Engineering Faculty, graduating with a first-class degree in 2016. During his undergraduate studies, he exhibited a keen interest in research, evident from his publication of a conference paper titled “Investigation Of Effect Of Tooling Parameters On The Clinching Of Dissimilar Sheets” at the 8th Automotive Technologies Congress in Bursa, 2016. This early exposure to research laid the groundwork for his future endeavors in academia.

Professional Endeavors

Following his undergraduate studies, Ceri pursued further education at Imperial College London, where he obtained his MSc degree in Advanced Aeronautics in 2019. Notably, he received a prestigious scholarship from the Ministry of National Education of Türkiye, highlighting his academic excellence and potential. Subsequently, Ceri embarked on his doctoral journey as a PhD researcher in the Department of Aeronautics at Imperial College London, focusing on Impact Engineering with a specialization in High-Velocity Impact Modeling.

Contributions and Research Focus On Numerical Modelling

Throughout his academic career, Ceri has made significant contributions to the field of Impact Engineering and Structural Health Monitoring (SHM). His research endeavors revolve around the numerical analysis of sensorized structures under high-velocity impact conditions, with the overarching goal of advancing SHM systems for space structures. Ceri's expertise spans fracture mechanics, material modeling, and both numerical and experimental testing, underscoring his interdisciplinary approach to research.

Accolades and Recognition

Mr. Ceri's contributions to academia have been recognized through various accolades and honors. Notably, he was selected for the prestigious Alex. Charters Student Scholar Program at the Hypervelocity Impact Symposium 2022 in Alexandria, Virginia, USA. Furthermore, Ceri has presented his research findings at international conferences, including the International Conference on Fracture, Damage, and Structural Health Monitoring, where he showcased his work on Hyper-Velocity Impact simulation using adaptive numerical methods.

Impact and Influence

Mr. Ceri's research has the potential to significantly impact the field of aerospace engineering and structural integrity. By developing advanced numerical models and methodologies for assessing the integrity of space structures under extreme conditions, Ceri's work contributes to enhancing the safety and reliability of aerospace systems. Moreover, his publications in reputable journals and conferences disseminate valuable knowledge to the scientific community, fostering collaboration and further research in the field.

Legacy and Future Contributions

Looking ahead, Ceri's legacy lies in his dedication to advancing knowledge and innovation in Impact Engineering and SHM. His multidisciplinary approach, coupled with his passion for research, positions him as a trailblazer in the field. Ceri's future contributions are poised to continue shaping the trajectory of aerospace engineering, driving advancements in structural integrity assessment and paving the way for safer and more resilient space exploration missions.

Notable Publication