Saman Solaimanian | Environmental Engineering | Best Researcher Award

Mr. Saman Solaimanian | Environmental Engineering | Best Researcher Award

Researcher from K. N. Toosi University of Technology, Iran

Saman Solaimanian is a dedicated researcher and Ph.D. candidate in Civil and Environmental Engineering, specializing in sustainable development, renewable energy, and environmental impact assessments. With a strong academic background and hands-on research experience, he has contributed significantly to environmental sustainability, waste management, and water treatment technologies. His expertise extends to environmental modeling, ESG framework development, and risk assessment for construction projects. Proficient in engineering software (AutoCAD, ArcGIS, ETABS, SimaPro) and programming languages (MATLAB, Python), he integrates computational tools with engineering solutions to address environmental challenges. He has published extensively in peer-reviewed journals and international conferences, with research focusing on renewable energy prioritization, AI in water management, and circular economy approaches in urban infrastructure. He has worked in both academic and industry settings, contributing to governmental and private sector projects. His research has been recognized through awards, including a Certificate of Excellence in Reviewing from the International Journal of Environment and Climate Change. Committed to advancing sustainable engineering practices, Saman aims to bridge the gap between academic research and real-world environmental challenges, ensuring that his work contributes to a more sustainable future through scientific innovation and practical application.

Professional Profile

Education

Saman Solaimanian holds a Master of Science in Civil and Environmental Engineering from Khajeh Nasir University of Technology (KNTU), completed in 2022 with an 88% GPA. His master’s thesis, titled “Prioritizing Renewable Energy Use with Neutrosophic AHP: A Tehran Case Study,” reflects his deep commitment to sustainable energy research and decision-making frameworks in urban environments. His coursework included Water & Wastewater Treatment, Air Pollution Control, Environmental Modeling, and Waste Management, providing him with a solid foundation in environmental engineering principles. He earned his Bachelor of Science in Civil Engineering from Islamic Azad University Tehran North Branch (IAUTNB) in 2020, with a 75% GPA. His undergraduate studies focused on structural analysis, geotechnical engineering, building technology, and transportation engineering, equipping him with a well-rounded understanding of civil engineering fundamentals. Throughout his academic career, he has been involved in applied research projects, laboratory analysis, and environmental impact assessments, further strengthening his technical expertise. His academic excellence and interdisciplinary approach to civil and environmental engineering set him apart as a promising researcher in sustainability and infrastructure development.

Professional Experience

Saman Solaimanian has diverse research and professional experience in environmental engineering, sustainability, and civil infrastructure projects. From 2023 to 2025, he worked as a Researcher at the Iranian Army Education Center, where he conducted studies on sustainable development, ESG framework implementation, HSE integration, and environmental mitigation strategies. His work involved waste management, environmental impact assessments, and renewable energy applications. In 2021–2022, he served as a Part-Time Civil Engineering Support at NPHO Builders Engineering Company, where he assisted in technical documentation, quantity take-offs, and site data collection. His role provided him with hands-on exposure to engineering software such as AutoCAD, ArcGIS, and ETABS, allowing him to refine his technical and analytical skills. In 2019, he conducted 300 hours of applied research at Tehran Province Water and Wastewater Company, focusing on water quality analysis, treatment optimization, and process enhancement techniques. This experience solidified his expertise in water management and environmental sustainability. Through these roles, he has developed a strong ability to apply research methodologies to real-world environmental challenges, bridging the gap between academic research and practical engineering solutions.

Research Interests

Saman Solaimanian’s research interests lie at the intersection of civil and environmental engineering, sustainability, and technological innovation. His primary focus areas include renewable energy prioritization, environmental risk assessment, sustainable construction materials, and circular economy models. He is particularly interested in leveraging AI and computational modeling for optimizing environmental engineering processes, including wastewater treatment, water resource management, and urban sustainability planning. His recent research explores the environmental risk assessment of construction projects in developing countries using analytical hierarchy processes (AHP). Additionally, he investigates air pollution dynamics, particularly the impact of urban heat islands and air inversion on public health. His interest in AI-driven environmental solutions has led to studies on constructed wetland optimization, drought forecasting, and decentralized water storage techniques. Saman is passionate about integrating sustainability into urban infrastructure and developing decision-support frameworks for policymakers to enhance environmental resilience. His research extends to climate change adaptation strategies, green building materials, and sustainable water management approaches, all of which align with global environmental goals and sustainable development initiatives.

Research Skills

Saman Solaimanian possesses a strong set of research skills that support his work in environmental engineering and sustainability. He is proficient in quantitative and qualitative research methodologies, including statistical analysis, environmental impact assessment, and risk evaluation techniques. His expertise in neutrosophic AHP and multi-criteria decision-making models allows him to analyze and prioritize sustainable development strategies effectively. He is skilled in engineering software, including AutoCAD, ArcGIS, ETABS, and SimaPro, which he uses for geospatial analysis, structural design, and environmental modeling. Additionally, his programming experience in MATLAB and Python enables him to develop computational models for environmental simulations, AI-driven decision-making, and predictive analytics. His laboratory experience includes water quality analysis, waste management strategies, and pollutant modeling, which he has applied in both academic and industry settings. He is also experienced in technical writing, grant proposal development, and peer-reviewed journal reviewing, making significant contributions to scientific discourse in environmental engineering.

Awards and Honors

Saman Solaimanian has received recognition for his academic and research contributions in the field of environmental and civil engineering. In 2025, he was awarded a Certificate of Excellence in Reviewing by the International Journal of Environment and Climate Change, highlighting his commitment to academic integrity and peer review contributions. His research has been published in high-impact journals and presented at international conferences, including the International Congress on Civil Engineering, Architecture, and Building Materials (Finland), the International Conference on Recent Advances in Engineering, Innovation, and Technology (Belgium), and the International Congress of Developing Agriculture, Natural Resources, and Environment (Iran). He has collaborated on multiple research projects related to sustainability, renewable energy, and water management, earning recognition from the academic community and environmental organizations. His contributions to urban sustainability planning, climate change adaptation, and AI-driven environmental solutions continue to enhance his professional standing in sustainable infrastructure development.

Conclusion

Saman Solaimanian is an emerging leader in environmental and civil engineering research, with a strong academic foundation, hands-on experience, and a passion for sustainability. His research contributions in renewable energy, waste management, and AI-driven environmental solutions demonstrate his commitment to addressing global sustainability challenges. His technical expertise, publication record, and international collaborations position him as a valuable contributor to the scientific community. While he has made significant strides in environmental research, increasing his peer-reviewed journal publications, securing research grants, and expanding international collaborations would further elevate his profile. With continued professional growth, interdisciplinary collaborations, and technological advancements, he is poised to make substantial contributions to global environmental sustainability and infrastructure resilience.

Publications Top Notes

  1. Title: Environmental risk assessment of concrete construction projects in developing countries based on Analytical Hierarchy Process method
    Author: Saman Solaimanian
    Year: 2025

  2. Title: Prioritizing The Sustainable Development Of Strategic Infrastructures Using The Analytic Hierarchy Process: A Case Study Of Iran
    Author: Saman Solaimanian
    Year: 2023

  3. Title: Prioritizing the possibility of using Renewable Energies through the application of Neutrosophic AHP (NAHP): A case study of Tehran
    Author: Saman Solaimanian
    Year: 2023

 

KSHITIJ KACKER | Urban Environment | Best Researcher Award

Mr. KSHITIJ KACKER | Urban Environment | Best Researcher Award

Research Scholar and Indian Institute of Technology Roorkee, India

Kshitij Kacker, a Prime Minister’s Research Fellow at IIT Roorkee, excels in the intersection of architecture, planning, and climate science. His research focuses on urban heat stress and its impacts under changing climatic conditions, aiming to enhance urban resilience and sustainability. With notable projects on heat stress indices and green building productivity, Kacker’s work is instrumental in improving urban climate adaptation strategies. He has received prestigious awards such as the Young Scientist Award and a State Level Gold Medal for his contributions. Kacker’s collaborative efforts with leading institutions and his active participation in workshops and conferences underscore his commitment to advancing knowledge and applied research in his field. His research not only addresses current challenges but also offers practical solutions for building performance and environmental health, making him a strong candidate for the Research for Best Researcher Award.

Profile

Education

Kshitij Kacker has a distinguished educational background in architecture and planning. He is currently pursuing a PhD in Architecture and Planning at the Indian Institute of Technology Roorkee (IIT Roorkee), where he has achieved an impressive CGPA of 9.611. His research focuses on urban heat stress and climate resilience. Prior to his PhD, Kacker earned a Master in Building Engineering & Management (MBEM) from the School of Planning and Architecture, New Delhi, graduating with a CGPA of 8.88. His academic journey began with a Bachelor of Architecture from the Faculty of Architecture and Planning, Dr. APJ Abdul Kalam Technical University (formerly GCA Lucknow), where he achieved a percentage of 84.1%. This strong foundation in architectural and environmental studies supports his current research efforts in enhancing urban resilience to climate change.

Professional Experience

Kshitij Kacker has gained diverse professional experience through various internships and roles in the field of architecture and planning. Notably, he interned at Mathur and Daniel Pvt. Ltd. in Lucknow, where he was involved in the design and management of residential and commercial projects, and at Lateral Architects Pvt. Ltd. in Bangalore, contributing to the drafting and site management of high-rise buildings and various other projects. His role at Point Architects Pvt. Ltd. provided experience in designing and managing large-scale projects, including a water park and commercial buildings. Additionally, Kacker has served as a Teaching Assistant at IIT Roorkee, where he supported course preparation and delivery for subjects related to sustainable environments and architectural design. His practical experience is complemented by his involvement in workshops on urban climate risk assessment and project management, reflecting his broad expertise and commitment to advancing his field.

Research Interests

Kshitij Kacker’s research interests lie at the intersection of architecture, urban planning, and climate science. His work primarily focuses on urban climate and heat stress risk, investigating how changing climatic conditions impact urban environments. Kacker is particularly interested in exploring thermal comfort and building energy efficiency, employing numerical weather modeling to assess and mitigate heat stress in urban areas. His research aims to enhance urban resilience by developing strategies to address the challenges posed by severe heat stress. Additionally, Kacker is involved in sustainability and project management, seeking to integrate climate considerations into architectural and planning practices. His work encompasses both theoretical and applied aspects, striving to provide actionable insights for improving urban planning and design in the context of a changing climate. Through his interdisciplinary approach, Kacker contributes to advancing knowledge and practical solutions for urban climate adaptation.

Research Skills

Kshitij Kacker possesses a diverse and advanced skill set that significantly enhances his research capabilities. His expertise includes sophisticated modeling and simulation techniques using tools such as the WRF model, GIS, and EnviMET, crucial for analyzing urban climate and heat stress. Proficient in SPSS, Minitab, and Design Builder, Kacker excels in data analysis and statistical evaluation, essential for robust research outcomes. His skills in Python programming and various design software like AutoCAD, Sketchup, and Lumion facilitate comprehensive and accurate modeling of architectural and environmental scenarios. Additionally, Kacker’s analytical thinking and adaptability enable him to tackle complex research challenges effectively. His experience in project management, combined with his ability to communicate complex findings clearly, underscores his strong research capabilities and commitment to advancing knowledge in urban climate resilience.

 Awards and Recognition

Kacker has received several prestigious awards, including the Young Scientist Award at the IDRiM Conference in 2023 and a State Level Gold Medal for his academic achievements. These accolades reflect his exceptional contributions to research and his recognition within the academic community.

Conclusion

Kshitij Kacker’s innovative research on urban heat stress and climate resilience demonstrates his significant contributions to the field. His work not only advances scientific understanding but also provides practical solutions for urban planning and environmental health. His accolades, collaborative efforts, and applied research highlight his suitability for the Research for Best Researcher Award.

Publications Top Notes

  1. Framing Bioclimatic Building Design Guidelines for Hot and Dry Climate: Case of Jaipur City
    • Authors: A Kansal, K Kacker
    • Publication Date: 2020
  2. Assessment of Heat Stress Hazard at an Intra-Urban Level: A Case of Delhi, India
    • Authors: K Kacker, M Mukherjee, P Srivastava
    • Conference: Passive and Low Energy Architecture (PLEA 2024 WROCŁAW)
    • Publication Date: 2024
    • Volume: 37
    • Pages: 464-469
  3. Impact of Green Building on Productivity of Offices
    • Authors: K Kacker, A Rastogi, VK Paul
    • Publication Date: 2022
  4. Low Cost Architecture and Associated Benefits: Thermal Comfort and Cost
    • Authors: R Kacker, K Kacker, A Kansal
    • Journal: International Journal of Innovative Research in Technology
    • Publication Date: 2021
    • Volume: 7
    • Issue: 11
    • Pages: 406-412