Parthasaarathi R | Civil Engineering | Best Researcher Award

Mr. Parthasaarathi R | Civil Engineering | Best Researcher Award

Mr. Parthasaarathi R | Civil Engineering – Assistant Professor at Hindusthan College of Engineering and Technology Coimbatore, India

Er. R. Parthasaarathi is a dynamic structural engineering professional and academic researcher whose work bridges practical civil engineering challenges with cutting-edge sustainable innovations. With over a decade of combined industry and academic experience, he has consistently demonstrated excellence in structural analysis, material innovation, and sustainable concrete technology. Currently finalizing his Ph.D. in Structural Engineering, his scholarly output and practical engagements position him as a deserving candidate for the Best Researcher Award. His contributions are rooted in experimental investigations, analytical modeling, and a strong passion for eco-conscious structural systems.

Academic Profile

ORCID  |  Google Scholar  |  Scopus

Education

His educational path reflects a steady climb through the academic ranks of engineering excellence. He began with a Diploma in Civil Engineering from Muthayammal Polytechnic, followed by a Bachelor’s degree (B.E.) in Civil Engineering from Anna University Regional Center, Coimbatore. He then completed a Master’s degree (M.E.) in Structural Engineering from Mahendra Engineering College under Anna University with distinction. Currently, he has submitted his doctoral thesis in Structural Engineering at the Karpagam Academy of Higher Education, focusing on performance-optimized composite structures and sustainable reinforcement materials.

Experience

Er. Parthasaarathi’s experience spans over 10 years, including roles in industry, academia, and international training. He worked as a Site Engineer with Gee Pee Constructions, gaining first-hand knowledge of real-world structural execution. He then transitioned into academia, serving as an Assistant Professor at SVS College of Engineering and later at Hindusthan College of Engineering and Technology, Coimbatore. Additionally, he contributed globally as a Technical Trainer through ASTI Academy, UAE, specializing in civil engineering software and design standards. His practical, teaching, and mentorship roles demonstrate a holistic approach to engineering education and application.

Research Interest

His research revolves around sustainable construction materials, fiber-reinforced composites, structural retrofitting, and nanotechnology applications in concrete. He actively explores the use of natural fibers (coir, coconut shell, bamboo) and nano-enhanced materials (e.g., graphene oxide) as sustainable alternatives in concrete structures. His work addresses environmental concerns and promotes eco-friendly construction techniques that meet modern performance demands while reducing carbon footprints.

Awards and Recognitions

Though early in his formal research career, Er. Parthasaarathi has received notable academic attention. He has published in several SCI and Scopus-indexed journals, with multiple citations across civil and structural research databases. He has also presented his work at international conferences such as ERTSE at VIT Chennai and Selvam College of Technology, drawing appreciation for his novel material testing frameworks. His work contributes directly to the global agenda of green infrastructure and sustainable development goals.

Publications

  1. 🏗️ “An In-depth Assessment of the Structural Integrity and Advantages of Bamboo-Reinforced Cement Concrete Elements (BRCC)”, published in Revista Materia (2024, SCI-indexed) – This paper is gaining traction for its sustainable reinforcement proposal using bamboo alternatives.
  2. 🧱 “A Stiffness Analysis of Treated and Non-Treated Meshed Coir Layer Fibre Reinforced Cement Concrete”, AIP Conference Proceedings (2023, Scopus) – This study contributes to rural and low-cost housing applications.
  3. ⚙️ “Development of High-Performance Concrete by Using Nanomaterial Graphene Oxide in Partial Replacement for Cement”, AIP Conference Proceedings (2023, Scopus) – Highly cited for advancing concrete strength and durability using nanomaterials.
  4. 🔬 “Utilizing Recycled Nanomaterials as a Partial Replacement for Cement to Create High-Performance Concrete”, SCI-indexed journal (2023) – This paper has become a benchmark in waste-reuse research.
  5. 🥥 “Analyzing the Impact and Investigating Coconut Shell Fiber Reinforced Concrete (CSFRC) under Varied Loading Conditions”, ARASET Journal (2023, Scopus) – A promising approach to biodegradable reinforcement techniques.
  6. ♻️ “Study on Stiffness Characteristics of Concrete with Partial Replacement of Solid Waste”, IJNRD (2022) – Cited in discussions on circular construction strategies.
  7. 🔍 “An Experimental Study on Flexural Behavior of Concrete Beam by Partially Replaced Cement Using Waste Glass Powder”, IJRDT (2016) – One of his earliest works laying the groundwork for eco-concrete exploration.

Conclusion

Er. R. Parthasaarathi stands as a promising researcher at the intersection of material innovation and structural design. His ability to align engineering practices with sustainability goals makes his work highly relevant in today’s climate-conscious construction industry. His blend of academic excellence, experimental rigor, and industrial exposure enhances his credibility as a future leader in civil engineering research. Based on his impactful publications, dedicated service in teaching and training, and ongoing contributions to sustainable building solutions, he is undoubtedly a worthy nominee for the Best Researcher Award. His future trajectory holds potential for global collaboration, patent-driven innovation, and high-impact contributions to structural engineering.

Dr. Himanshu Chawla – Concrete Technology – Best Researcher Award

Dr. Himanshu Chawla - Concrete Technology - Best Researcher Award

Thapar Institutue of Engineering and Technology - India

Professional Profiles

Early Academic Pursuits

Dr. Himanshu Chawla's academic journey is characterized by a relentless pursuit of excellence in the field of Civil Engineering. He laid the foundation for his scholarly endeavors with a Bachelor of Engineering degree in Civil Engineering from M.M. Engineering College, Mullana, under Kurukshetra University. Subsequently, he pursued a Master's degree in Structural Engineering from Birla Institute of Technology and Science, Pilani (BITS Pilani), where he honed his skills and deepened his understanding of structural mechanics. His academic trajectory culminated in the completion of a PhD in Structural Engineering from BITS Pilani in 2018, focusing on the structural behavior of FRP-concrete hybrid beams.

Professional Endeavors

Dr. Chawla's professional journey is marked by a diverse range of roles and responsibilities in academia and research. He embarked on his career as a Teaching Assistant at BITS Pilani, where he contributed to the academic and research activities of the institution. Subsequently, he joined Thapar Institute of Engineering and Technology, Patiala, initially as a Lecturer and later as an Assistant Professor, where he continues to make significant contributions to the field of Civil Engineering. His expertise in structural engineering, particularly in the areas of FRP-concrete hybrid beams and structural strengthening, has positioned him as a respected academician and researcher in his field.

Contributions and Research Focus On Concrete Technology

Dr. Chawla's research endeavors encompass a wide range of topics within the realm of structural engineering. His primary areas of focus include the structural behavior of FRP-concrete hybrid beams, modeling of structures using FEM software such as ABAQUS, utilization of waste materials in concrete and FRP laminates, and the design and analysis of FRP bridges. His research on strengthening structures has significant implications for enhancing the durability and resilience of civil infrastructure. Additionally, Dr. Chawla has played a pivotal role in several research projects, including the Structural Health Monitoring of Structures Retrofitted with Graphene-FRP Composites and the Development of Curved U-shaped FRP-Concrete Composite Beams.

Accolades and Recognition

Dr. Chawla's contributions to the field of Civil Engineering have been recognized through various accolades and awards. His doctoral research on the structural response and failure characteristics of thin-walled flanged FRP beams earned him the prestigious PhD degree from BITS Pilani in 2018. Furthermore, his involvement in research projects, such as the Structural Health Monitoring of Structures Retrofitted with Graphene-FRP Composites, has garnered attention and recognition within the academic and research community.

Impact and Influence

Dr. Chawla's research and scholarly contributions have made a significant impact on the field of Civil Engineering, particularly in the domain of structural engineering. His work on FRP-concrete hybrid beams and structural strengthening techniques has contributed to the advancement of knowledge and practices in the field, with implications for enhancing the safety, durability, and sustainability of civil infrastructure. Furthermore, his role as a mentor and supervisor to master's and PhD students has helped nurture the next generation of civil engineers and researchers, ensuring a legacy of excellence and innovation.

Legacy and Future Contributions

As Dr. Chawla's career continues to evolve, his legacy as a dedicated academician and researcher in the field of Civil Engineering is poised to endure. His ongoing research endeavors, mentorship activities, and contributions to academia are indicative of his commitment to advancing knowledge and addressing critical challenges facing the field. Moving forward, Dr. Chawla remains steadfast in his dedication to making meaningful contributions to the field of Civil Engineering, with a focus on sustainability, innovation, and societal impact.

Notable Publications

Design of Steel Intensive Quarantine Centre 2023

Stability and failure characterization of fiber reinforced pultruded beams with different stiffening elements, part 2: Analytical and numerical studies 2019

Hybrid effect of functionally graded hybrid composites of glass–carbon fibers 2018

Influence of curing on the mechanical performance of FRP laminates 2017