Rohini Kale | Civil Engineering | Research Excellence Award

Dr. Rohini Kale | Civil Engineering | Research Excellence Award

Medicaps University Indore, India

Dr. Rohini Chhatrapati Kale is an accomplished academic and researcher in Civil Engineering with specialization in Geotechnical and Geoenvironmental Engineering. Educated at premier national institutions, she has extensive experience in teaching, consultancy, and doctoral research. Her research focuses on sustainable construction materials, bentonite behavior, geoenvironmental applications, waste utilization, biochar, and machine learning in geotechnics. She has published widely in high-impact journals, holds a patent, received multiple national research awards, and actively contributes to academic leadership and research mentoring.

Citation Metrics (Google Scholar)

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Citations
160

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4

Citations

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Featured Publications


A review on the impact of thermal history on compacted bentonite in the context of nuclear waste management


Environmental Technology & Innovation (Elsevier) · Review Article · Cited by 58


Influence of thermal loading on index and physicochemical properties of Barmer bentonite


Applied Clay Science (Elsevier) · Research Article · Cited by 45


Influence of thermal history on swell pressures of compacted bentonite


Process Safety and Environmental Protection (Elsevier) · Research Article · Cited by 29


Response of compacted bentonite to hyperalkalinity and thermal history


Scientific Reports (Nature) · Open Access · Cited by 14


Influence of thermal gradient and canister corrosion on the hydration of compacted Barmer bentonite


Annals of Nuclear Energy (Elsevier) · Research Article · Cited by 5

Amar Deep Maurya | Civil Engineering | Research Excellence Award

Mr. Amar Deep Maurya | Civil Engineering | Research Excellence Award

Rajkiya Engineering College Mainpuri | India

Amar Deep Maurya is a researcher in civil engineering with contributions in sustainable construction materials, structural optimization, and innovative testing methods. His academic background includes a bachelor’s degree in civil engineering with strong engagement in interdisciplinary learning across environmental sciences and digital design tools. He has gained practical experience through engineering internships focused on road estimation, planning, sustainability, and environmental assessment. His research centers on waste-derived construction materials, particularly the statistical modeling and optimization of waste-glass-based paver blocks using Response Surface Methodology, which demonstrated marked improvements in strength and durability while reducing environmental impact. He has also contributed to the development of advanced mortar testing methods and has completed multiple design-based projects in AutoCAD and 3D modeling. His scholarly output includes research and review articles with measurable impact metrics such as h-index, citation count, and document contributions as reflected through academic indexing platforms. His publications explore areas including sustainable paver blocks, RSM-based prediction models, and self-healing concrete. Recognized for academic excellence, he secured a technical poster award and additional certifications enhancing his professional competence. Overall, his work reflects a commitment to sustainable engineering innovations and practical solutions for future-ready civil infrastructure.

Profile: Scopus

Featured Publication

Statistical modeling and optimization of waste glass-based paver block properties. (2025). Next Materials.

Siva Krishna Reddy | Engineering | Best Researcher Award

Dr. Siva Krishna Reddy | Engineering | Best Researcher Award

IIT Madras, India

Author Profile

GOOGLE SCHOLAR

🎓 EARLY ACADEMIC PURSUITS

Dr. Siva Krishna Reddy’s academic journey has been deeply rooted in Civil Engineering, beginning with a strong foundational education through B.Tech and M.Tech degrees. His inquisitive nature and passion for hydraulics led him to pursue a Ph.D. from the prestigious Indian Institute of Technology Madras, where he specialized in Hydraulics and Water Resources Engineering. His academic pursuits were marked by a hands-on approach, particularly focused on river mechanics and sediment transport phenomena.

🏢 PROFESSIONAL ENDEAVORS

As a Research Scholar at IIT Madras, Dr. Reddy has demonstrated exceptional capability in experimental research. He has successfully led laboratory-scale studies involving complex hydraulic setups and fluid mechanics instruments. He has also engaged in mentoring junior researchers and actively participated in technical workshops and academic seminars, showcasing his dedication to academic growth and technical dissemination.

📚 CONTRIBUTIONS AND RESEARCH FOCUS IN ENGINEERING

Dr. Reddy’s core research investigates the scour and turbulence behavior around bridge piers, with an emphasis on experimental hydraulics and sediment transport dynamics. His unique contribution lies in integrating machine learning techniques to develop predictive models for scour depth—a critical factor in ensuring the structural integrity and safety of bridges. He has studied the influence of pier shape, spacing, and flow conditions, resulting in practical insights for resilient and cost-effective bridge design.

🏅 ACADEMIC CITATIONS, ACCOLADES AND RECOGNITION

Dr. Reddy has published 3 high-quality journal papers in SCI/Scopus-indexed outlets and 4 conference papers, earning growing citations as evidence of his scholarly impact. His contributions are frequently cited in domains related to river hydraulics, sedimentology, and computational modeling. He maintains an updated academic profile on Google Scholar showcasing his citation metrics and influence in the field.

🌍 IMPACT AND INFLUENCE

His research provides actionable insights for the civil engineering community, especially in mitigating hydraulic failures around riverine structures. By contributing vital experimental data and novel ML-based prediction tools, his work bridges the gap between academic theory and real-world engineering challenges. His studies on tandem and compound piers enhance the understanding of flow-structure interactions, directly influencing infrastructure resilience and environmental safety.

🧭 LEGACY AND FUTURE CONTRIBUTIONS

With a robust foundation in experimental and applied hydraulics, Dr. Reddy aspires to lead interdisciplinary research combining fluid mechanics, geotechnics, and artificial intelligence. His vision includes creating open-source datasets for scour studies and developing real-time predictive systems for infrastructure monitoring. He also aims to contribute to national standards and codes on hydraulic structure design, leaving a legacy of research-driven engineering solutions.

 ✅CONCLUSION

Dr. Siva Krishna Reddy stands out as a promising researcher whose work is at the nexus of civil engineering, experimental science, and artificial intelligence. His commitment to rigorous experimentation, academic integrity, and impactful innovation reflects his potential to become a thought leader in hydraulic engineering and water infrastructure safety. His candidature for the Best Researcher Award is strongly supported by his focused contributions, growing citation footprint, and the transformative impact of his research on engineering practices and policy.

🔬NOTABLE PUBLICATION:

Title: Investigation on Scouring and Turbulence Characteristics Around T-Head Spur Dike
Authors: T.K. Pradhan, G.C. Malasani, S. Krishna Reddy, V. Chandra
Journal: Journal of Applied Water Engineering and Research
Year: 2024

Title: Local Scour Around Different-Shaped Bridge Piers
Authors: S.K. Reddy, S.T. Kalathil, V. Chandra
Journal: Civil Engineering Journal (Civ Eng J)
Year: 2024

Title: Prediction Models for Scour Depth Around Circular Compound Bridge Piers
Authors: S.K. Reddy, V. Chandra
Journal: Water Science and Engineering
Year: 2025

Title: Experimental Study of Turbulent Flow Characteristics Around a Circular Compound Bridge Pier
Authors: S.K. Reddy, V. Chandra
Journal: River Flow
Year: 2024

Title: Experimental Study of Turbulent Flow Characteristics Around a Circular Bridge Pier
Authors: S.K. Reddy, V. Chandra
Journal: International Association for Hydraulic Environmental Engineering and Research (IAHR)
Year: 2022