Ahmed Shah Nisar – Sustainable Construction Techniques – Young Scientist Award

Ahmed Shah Nisar - Sustainable Construction Techniques - Young Scientist Award

Virginia Tech - United States

AUTHOR PROFILE

ORCID

EARLY ACADEMIC PURSUITS

Ahmed Shah Nisar embarked on his academic journey with a Bachelor of Technology in Civil Engineering from G.C.E.T, Cluster University Srinagar, India, achieving a remarkable GPA of 4.0. Building upon this strong foundation, he pursued a Master of Science in Civil Engineering with a specialization in Transportation Infrastructure & Systems Engineering at Virginia Tech, where he continued to excel academically, maintaining a GPA of 4.0. His early academic achievements laid the groundwork for his future professional endeavors in the field of civil engineering.

PROFESSIONAL ENDEAVORS

As a Graduate Research Assistant at the Virginia Tech Transportation Institute, Nisar is actively involved in research at the Center of Sustainable & Resilient Infrastructure. His work focuses on the structural assessment of roads in the U.S. using Traffic Speed Deflectometer Devices, contributing to the development of sustainable infrastructure solutions. Additionally, his internship experiences with the Roads & Building Department Division-I and Division-II in Srinagar provided him with hands-on experience in bridge construction, concrete testing, structural design analysis, and cost analysis, further enriching his professional skill set.

CONTRIBUTIONS AND RESEARCH FOCUS

Nisar's research and project work reflect a keen focus on sustainable construction techniques, with an emphasis on innovation and environmental responsibility. His projects encompass a range of topics, from traffic flow calibration and urban heat island identification to the study of fly ash bubble deck slabs. Through his research, Nisar actively seeks to enhance the efficiency, resilience, and environmental sustainability of infrastructure systems, contributing to advancements in sustainable construction practices.

IMPACT AND INFLUENCE

Nisar's contributions to sustainable construction techniques have the potential to have a significant impact on the field of civil engineering. By spearheading projects that aim to reduce CO2 emissions, improve structural efficiency, and mitigate environmental impacts, he is shaping the future of infrastructure development. His research findings and project outcomes may influence industry practices, policy decisions, and academic discourse, driving positive change in sustainable construction methodologies.

ACADEMIC CITES

Nisar's research endeavors may garner citations from fellow researchers, scholars, and practitioners in the field of civil engineering. As his work becomes disseminated and integrated into the academic literature, it has the potential to serve as a foundational reference for future research and development in sustainable construction techniques, further solidifying his impact on the academic community.

LEGACY AND FUTURE CONTRIBUTIONS

Ahmed Shah Nisar's dedication to advancing sustainable construction techniques positions him as a leader in the field of civil engineering. His commitment to innovation, environmental stewardship, and academic excellence sets a precedent for future generations of engineers. As he continues to pursue research, contribute to projects, and engage in scholarly discourse, his legacy as a champion of sustainable infrastructure development is sure to endure, leaving a lasting impact on the profession and the planet.

NOTABLE PUBLICATION

Flexural performance of fly ash bubble deck slab 2024

Najma Laaroussi – Energy Efficiency in Buildings – Women Researcher Award

Najma Laaroussi - Energy Efficiency in Buildings - Women Researcher Award

Mohammed V University in Rabat - Morocco

AUTHOR PTOFILE

Scopus

EARLY ACADEMIC PURSUITS

Najma Laaroussi began her academic journey with a master's degree in Thermal and Energy from the National Institute of Applied Sciences (INSA), Lyon, France. She further pursued her academic endeavors by obtaining a Ph.D. in Energy Systems and Thermal Processes from the University of Paris-Est, France, in 2008.

PROFESSIONAL ENDEAVORS

Following her academic pursuits, Laaroussi worked as a Research and Development Engineer at Socotec Industries, France, from 2009 to 2011. Since 2011, she has been an integral part of the Materials, Energy, and Acoustics Team (MEAT) at the Higher School of Technology of Salé, University Mohammed V of Rabat, Morocco, where she holds the position of Professor (PES).

CONTRIBUTIONS AND RESEARCH FOCUS

Laaroussi's primary research interests revolve around energy efficiency in buildings and the utilization of thermal solar and photovoltaic systems. Her contributions to the field include numerous publications in reputable journals and conference proceedings. She actively supervises and co-supervises Ph.D. and master's degree projects focusing on Buildings Energy Efficiency.

IMPACT AND INFLUENCE

Through her research endeavors and publications, Laaroussi has made a significant impact on advancing knowledge in the field of energy efficiency in buildings. Her work contributes to sustainable practices and solutions in the built environment, influencing both academia and industry.

ACADEMIC CITATIONS

Laaroussi's publications have garnered academic citations, reflecting the relevance and scholarly impact of her research in the field of energy efficiency in buildings. Her contributions are widely recognized and cited by peers and researchers in the academic community.

LEGACY AND FUTURE CONTRIBUTIONS

Najma Laaroussi's dedication to research and education in the field of energy efficiency in buildings ensures a lasting legacy. Her continued efforts in mentoring and supervising students, along with her ongoing research initiatives, will shape the future of sustainable practices in the built environment, fostering innovation and progress.

ENERGY EFFICIENCY IN BUILDING

Najma Laaroussi's research and professional endeavors are centered around energy efficiency in buildings, encompassing various aspects such as thermal performance, insulation materials, and renewable energy systems. Her work contributes to the development of sustainable building practices and the optimization of energy consumption, addressing key challenges in the field of building engineering.

NOTABLE PUBLICATION

Thermal performance and energy efficiency of the composite clay and hemp fibers.  2023 (2)