Felipe Firmino Diniz – Energy – Best Researcher Award

Felipe Firmino Diniz - Energy - Best Researcher Award

Federal University of Campina Grande - Brazil

Professional Profiles:

Early Academic Pursuits:

Felipe Firmino Diniz embarked on his academic journey with a strong foundation in environmental engineering, earning his Bachelor's degree in Engenharia Ambiental (Environmental Engineering) from Faculdade Internacional da Paraiba (FPB) in 2020. His undergraduate thesis focused on the critical analysis of wastewater treatment stations for aquaculture and their biodegradation, under the guidance of Karolyne Aquino Alexandre Breckenfeld. This early exposure laid the groundwork for his subsequent specialization and research in environmental and Energy-related fields.

Professional Endeavors:

Following his undergraduate studies, Felipe continued to deepen his knowledge through specialized education. In 2021, he completed a comprehensive 700-hour program in Gestão, Auditoria, Perícia e Licenciamento Ambiental (Management, Auditing, Forensics, and Environmental Licensing) at Facuminas. This specialized training equipped him with a holistic understanding of environmental management and regulatory processes.

His practical experience includes serving as an Environmental Assistant at Elizabeth Porcelanato, where he likely contributed to environmental sustainability initiatives within the company. Additionally, his role as an Environmental Engineering intern at the Prefeitura Municipal de Conde-PB (Municipality of Conde-PB) provided hands-on experience in municipal environmental projects.

Contributions and Research Focus On Energy :

Felipe's academic pursuits advanced significantly with a Master's degree in Energias Renováveis (Renewable Energies) from the Universidade Federal da Paraíba (UFPB) in 2022. His thesis, guided by Luiz Moreira Coelho Junior, delved into the eco-efficiency and international market structure of forest products for energy. This research showcased his commitment to exploring sustainable energy solutions and understanding the economic dynamics of the renewable energy sector.

Currently pursuing a Ph.D. in Civil and Environmental Engineering at the Universidade Federal de Campina Grande (UFCG) under the guidance of Dr. Márcio Camargo de Melo, Felipe is contributing to the academic community with his ongoing research. His doctoral work, initiated in 2023, focuses on furthering knowledge in the realms of civil and environmental engineering, likely emphasizing sustainable development, regional studies, energy utilization, environmental licensing, and sanitation.

Accolades and Recognition:

Felipe's academic excellence is underscored by his status as a CAPES (Coordenação de Aperfeiçoamento de Pessoal de Nível Superior) scholarship recipient during his master's program. This recognition reflects not only his dedication to academic pursuits but also the acknowledgment of his potential to contribute significantly to the field of renewable energies. Energy fuels progress, powers innovation, and sustains life. It drives economic growth, empowers communities, and fosters technological advancements, making it an indispensable force for a vibrant and thriving world.

Impact and Influence:

Throughout his academic and professional journey, Felipe Firmino Diniz has demonstrated a keen interest in the intersection of environmental engineering, renewable energies, and economic sustainability. His research endeavors and practical experiences indicate a commitment to addressing the challenges of sustainable development and environmental stewardship.

Legacy and Future Contributions:

As a promising researcher and academic, Felipe's legacy is likely to be shaped by his contributions to the understanding of eco-efficient energy solutions and sustainable development. His future work may further illuminate pathways for integrating renewable energies into international markets and optimizing environmental management practices. Energy fuels innovation, drives progress, and empowers communities. It is the lifeblood of technological advancement, fostering growth and sustainability.

In conclusion, Felipe Firmino Diniz's academic and professional trajectory showcases a commitment to advancing knowledge in environmental engineering and renewable energies. His early academic pursuits, professional endeavors, contributions, and ongoing research efforts position him as a promising figure in the field, with the potential to leave a lasting impact on sustainable development and environmental science

Notable Publications:

Localização e especialização da produção extrativista dos produtos madeireiros nas regiões imediatas de Pernambuco 2023

Disparidad temporal de la producción maderera nativa en Paraíba, Brasil 2023

BRAZIL’S COMPETITIVENESS IN EXPORTATION OF FOREST PRODUCTS FROM 2008 TO 2018 2022

A SUSTENTABILIDADE E PERSPECTIVAS NA INSDÚSTRIA 4.0 UMA REVISÃO SISTEMÁTICA 2021

Resmi – Bioenergy – Women Researcher Award

Dr. Resmi - Bioenergy - Women Researcher Award

Amrita School of Engineering - India

Professional Profiles:

Early Academic Pursuits:

Dr. Resmi R embarked on her academic journey with a strong foundation in Electrical and Electronics Engineering. Born on May 16, 1983, she pursued her passion for the field and obtained her Ph.D. in Electrical and Electronics Engineering. Her early academic pursuits showcased her dedication to understanding complex concepts and laid the groundwork for her future contributions in the field.

Professional Endeavors:

As an Assistant Professor (Selection Grade) at the Department of Electrical and Electronics Engineering, Amrita School of Engineering, Amrita Vishwa Vidyapeetham, Dr. Resmi R has demonstrated her commitment to academia. Her role involves not only imparting knowledge to students but also engaging in research activities that contribute to the advancement of the field.

Contributions and Research Focus On Bioenergy:

Dr. Resmi R's expertise lies in several crucial areas within Electrical and Electronics Engineering. Her research has delved into Wind Energy Forecasting, Bio and Hydro Energy Resources, Advanced Control Systems, Wind Electric Generators, and Electrical Machines. The focus of her Ph.D. thesis, "Investigation on Brushless Doubly Fed Induction Machine for Improved Performance," reflects her dedication to exploring innovative solutions for enhancing machine performance.

Her contributions extend to addressing critical issues such as climate change and energy sustainability, aligning her research with the pressing global need for renewable energy solutions. Through her work, she has made strides in understanding and harnessing various energy resources for a more sustainable future.

Accolades and Recognition:

Dr. Resmi R's impactful contributions have not gone unnoticed. Her recognition in the academic community is evidenced by her SCOPUS ID (57190160102) and her Google Scholar ID. These identifiers showcase her scholarly achievements and contributions to the field, acknowledging her as a notable figure in Electrical and Electronics Engineering. Bioenergy represents a sustainable and renewable source of power derived from organic materials, such as agricultural residues, organic waste, and dedicated energy crops.

Utilizing natural processes, bioenergy production reduces greenhouse gas emissions, offering a cleaner alternative to conventional energy sources. As a versatile and eco-friendly solution, bioenergy plays a pivotal role in addressing climate change and fostering energy independence while promoting agricultural and environmental sustainability.

Impact and Influence:

Dr. Resmi R's work has made a significant impact on the field, particularly in the realm of renewable energy. Her research in Wind Energy Forecasting and Bio and Hydro Energy Resources has contributed to the development of more efficient and sustainable energy solutions. Her investigations into Advanced Control Systems and Wind Electric Generators have pushed the boundaries of what is achievable in the field, influencing both academic discourse and practical applications.

Legacy and Future Contributions:

As an academician and researcher, Dr. Resmi R is in the process of building a lasting legacy. Her dedication to renewable energy, advanced control systems, and electrical machines is shaping the future of Electrical and Electronics Engineering. Her work will likely inspire future generations of researchers and engineers to continue exploring innovative solutions for a sustainable and energy-efficient world. Dr. Resmi R is poised to make further contributions to her field.

Her research focus on climate and energy, coupled with her interest in electrical machines, positions her as a key player in shaping the future of sustainable energy technologies. Her commitment to academia and research ensures that her influence will endure and continue to make a positive impact on the field of Electrical and Electronics Engineering.

Notable Publications:

Design and analysis of squirrel cage induction motor in short pitch and full pitch winding configurations using FEA 2017

PMSG based standalone wind electric conversion system with MPPT 2017

Mathematical model of brushless doubly fed induction generator based wind electric generator 2016

 

Shankar Pandit – Renewable Energy – Best Researcher Award

Shankar Pandit - Renewable Energy - Best Researcher Award

National Institute of Technology Silchar - India

Professional Profiles

Early Academic Pursuits:

Shankar Pandit, hailing from the serene village of Subhani Bigha in Bihar, India, embarked on a journey marked by academic excellence and a passion for research. His early academic pursuits at Hulasgang Inter College and High School in Hulasganj, Bihar, laid the foundation for a future dedicated to electrical and electronics engineering.

Academic Achievements:

His academic trajectory continued at Gaya College of Engineering, AKU University, where he earned a Bachelor of Technology (B.Tech) in Electrical & Electronics Engineering with an impressive 8.42 CPI in 2018. Building upon this foundation, Shankar pursued a Master of Technology (M.Tech) in Power Systems at the National Institute of Technology Hamirpur, Himachal Pradesh, graduating in 2021 with a notable 8.59 CPI. Currently pursuing a Doctor of Philosophy (Ph.D) at the National Institute of Technology Silchar, Assam, Shankar's focus on Renewable Energy & Biomass Cookstove Testing reflects his commitment to impactful research in sustainable technologies.

Professional Endeavors:

Shankar Pandit's professional journey is characterized by his dedication to research and innovation. As a Research Fellow, he contributed significantly to the project "Power System Frequency Estimation Using Teager Energy Operator," showcasing his prowess in power systems dynamics. His current project, "Design and Testing of Thermoelectric Generator-based Improved Biomass Cookstove," reflects his commitment to addressing pressing issues in renewable energy and clean cooking solutions. Renewable energy, a pivotal force in transforming the global energy landscape, harnesses natural resources like sunlight, wind, and water to generate power. This sustainable approach mitigates environmental impact, reduces reliance on fossil fuels, and addresses climate change challenges

Contributions and Research Focus On Renewable Energy:

Shankar's research focus encompasses the critical intersection of renewable energy and biomass cookstove technology. His ongoing work on designing and testing a thermoelectric generator-based cookstove aligns with the global pursuit of sustainable and clean cooking solutions. By delving into innovative approaches, Shankar aims to contribute to the field's knowledge base and offer practical solutions to real-world challenges. Innovations in solar, wind, hydropower, and bioenergy propel the shift towards a cleaner, greener future. Researchers like Shankar Pandit contribute to this revolution, exploring efficient technologies and sustainable practices

Accolades and Recognition:

While on his academic journey, Shankar Pandit has earned accolades for his outstanding achievements. His impressive academic records, particularly his 9.00 CPI in his Ph.D., reflect his commitment to excellence. Recognition as a Research Fellow further underscores his contributions to the field of power systems.

Impact and Influence:

Shankar's influence extends beyond the academic realm. As a researcher, his work contributes to the broader goal of sustainable energy solutions and improved cookstove designs. His dedication to impactful research positions him as a potential influencer in the renewable energy sector. As the world seeks alternatives to conventional energy, the ongoing advancements in renewable energy promise a brighter, eco-friendly tomorrow, fostering a resilient and sustainable energy ecosystem for generations to come

Legacy and Future Contributions:

Shankar Pandit's legacy is still unfolding, with his ongoing Ph.D. research poised to leave a lasting impact on the fields of renewable energy and biomass cookstove technology. His commitment to addressing real-world energy challenges hints at a future marked by contributions to sustainable development. In conclusion, Shankar Pandit's journey from early academic pursuits to his current Ph.D. research underscores a commitment to excellence, innovation, and meaningful contributions to the field of renewable energy. As he continues to make strides in his research, Shankar's legacy is poised to shape the future of clean energy solutions and inspire aspiring researchers in the field.

Notable Publications

Cascaded sliding DFT based grid synchronization technique with DC offset removal capability 2020

Power System Frequency Estimation using Teager Energy operator 2021

Waste heat regeneration from thermoelectric generator based improved biomass cookstove (TIBC): Modelling of TEG system utilizing DC-DC converter with fuzzy logic MPPT 2024

Myeong-in Choi – Energy – Best Researcher Award

Myeong-in Choi - Energy - Best Researcher Award

Chung-Ang University - Chung-Ang University

Professional Profiles:

Early Academic Pursuits:

Myeong-in Choi's academic journey is marked by a relentless pursuit of knowledge in the realm of Intelligent Energy. Commencing with a Bachelor's degree in Electrical and Electronics Engineering from Chung-Ang University in 2013, Choi exhibited a passion for emerging technologies early on. This laid the foundation for his subsequent academic pursuits, culminating in a Master's degree in Computer Science in 2015 and his ongoing Ph.D. candidacy in the same field, with plans for completion in 2024.

Professional Endeavors:

Choi's professional trajectory is deeply intertwined with Chung-Ang University, where he has made significant contributions to the field of Intelligent Energy. Starting as a Researcher at the Smart Energy Research Center in 2013, he progressively advanced his career, assuming the role of Associate Researcher in the Department of Intelligent Energy Industry in 2019. His dedication is further evidenced by his current position as a Part-Time Lecturer in the same department, solidifying his commitment to both research and education.

Contributions and Research Focus:

Myeong-in Choi's contributions to the field are extensive, spanning both research and teaching domains. As an Associate Researcher, he played a vital role in shaping the initiatives of the Intelligent Energy Industry. His research focus encompasses cutting-edge areas such as Renewable Energy IoT, Intelligent Energy Digital Business, and Energy Data Engineering. Notably, his work on Energy Data for Virtual Power Plants showcases a forward-looking approach to the intersection of data science and energy systems.

Teaching Experience:

Choi's influence extends beyond research through his teaching endeavors. His commitment to imparting knowledge is evident in his diverse courses, including Renewable Energy IoT, Intelligent Energy Digital Business, and Energy Data Engineering. These courses not only contribute to the academic development of students but also align with industry needs, fostering a generation of professionals well-versed in the intricacies of Intelligent Energy.

Accolades and Recognition:

In November 2023, Myeong-in Choi received a commendation from the Minister of Trade, Industry, and Energy of the Republic of Korea. This recognition underlines the significance of his contributions to the energy sector and acknowledges his efforts in advancing the Intelligent Energy Industry. Such accolades affirm Choi's standing as a distinguished professional in his field.

Impact and Influence:

Myeong-in Choi's impact extends beyond the walls of academia. As a researcher and educator, his work contributes to shaping the future of Intelligent Energy. By delving into areas like Renewable Energy IoT and Energy Data Engineering, he influences not only academic discourse but also industry practices. Choi's ability to bridge theoretical knowledge with practical applications positions him as a thought leader in the evolving landscape of energy systems.

Legacy and Future Contributions:

Choi's legacy lies in the groundwork he has laid for the future of Intelligent Energy at Chung-Ang University. His multifaceted contributions, both in research and teaching, serve as a benchmark for aspiring researchers and educators. As he continues to delve into his Ph.D. studies and expand his research portfolio, Choi is poised to leave a lasting imprint on the field, shaping the trajectory of Intelligent Energy for years to come.

Future Endeavors:

Looking forward, Myeong-in Choi's future contributions are anticipated to include further advancements in Intelligent Energy research and the continued cultivation of a new generation of energy professionals. His role as a Part-Time Lecturer and ongoing commitment to research positions him as a key figure in steering the course of Intelligent Energy at Chung-Ang University and beyond.

Notable Publications:

Distributed energy IoT-based real-time virtual energy prosumer business model for distributed power resource 2021

Reinforcement learning-based bems architecture for energy usage optimization 2020

Design and Implementation of a Futuristic EV Energy Trading System (FEETS) Connected with Buildings, PV, and ESS for a Carbon-Neutral Society 2023

Fatima Zahra BENADDI – Energy – Best Researcher Award

Fatima Zahra BENADDI - Energy - Best Researcher Award

National School of Applied Sciences SAFI - Morocco

Professional Profiles

Early Academic Pursuits

Fatima Zahra BENADDI's academic journey began with a strong foundation in Energy Engineering. Her early years were marked by a thirst for knowledge, evident in her pursuit of a University Degree of Technology in Thermal Engineering and Energy at the National School of Arts and Crafts in Rabat. This marked the inception of her commitment to understanding and innovating in the realm of energy systems.

Professional Endeavors

Following her foundational education, BENADDI ventured into the professional sphere with a focus on Energy. She earned a Professional Bachelor's Degree and further honed her expertise through a Specialized Master's Degree at the National School of Arts and Crafts in Rabat, specializing in Water, Energy, and Environmental Sciences. This period laid the groundwork for her future contributions to the field.

Contributions and Research Focus on Energy

BENADDI's significant contributions come to the forefront through her Ph.D. thesis, titled "Energy Performance Assessment and Envelope Optimization of a Classroom Built with Local Materials." This research, conducted at the National School of Applied Sciences SAFI and the National Center for Studies and Research on Water and Energy, showcased her dedication to advancing sustainable practices in construction and energy use. Her work in optimizing building envelopes emphasizes the crucial intersection of energy efficiency and architectural design.

Accolades and Recognition

In 2023, BENADDI successfully defended her Ph.D. thesis with great distinction, earning the mention of "VERY HONORABLE." The esteemed jury, comprised of distinguished professionals in the field, recognized the significance of her research in advancing energy engineering. This accolade is a testament to BENADDI's exceptional academic prowess and her commitment to excellence. Energy is the lifeblood of our modern world, powering everything from our homes to industries. Its diverse forms, including electricity, heat, and kinetic energy, drive technological advancements and sustain our daily lives. From renewable sources like solar and wind to traditional fossil fuels, the quest for cleaner and more efficient energy solutions has become paramount.

Impact and Influence

BENADDI's influence extends beyond academic achievements, encompassing her impact on the discourse surrounding energy performance and sustainability. Her work has the potential to influence architectural practices and energy policies, promoting environmentally conscious construction methodologies. By focusing on local materials, she has demonstrated a commitment to cultural and environmental sensitivity in her research, setting a precedent for holistic approaches to energy engineering.

Legacy and Future Contributions

As a Ph.D. holder, BENADDI is poised to contribute significantly to the field of Energy Engineering. Her research legacy, firmly rooted in sustainable practices, is likely to inspire future researchers and practitioners. By merging academic rigor with practical applications, BENADDI is paving the way for a more sustainable and energy-efficient built environment. With a focus on energy efficiency, conservation, and pioneering technologies, the energy sector plays a crucial role in shaping a sustainable and resilient future for our planet.

Future Endeavors

Looking ahead, BENADDI's future contributions are anticipated to include further research, collaboration with industry stakeholders, and potentially guiding the next generation of energy engineers. Her expertise positions her as a valuable asset in addressing the global challenges associated with energy consumption and climate change. Innovators and researchers tirelessly work to harness, store, and distribute energy sustainably. The global transition towards renewable sources reflects a collective commitment to reducing environmental impact.

Notable Publications

Monitoring of gold biodistribution from nanoparticles using a hplc-visible method 2021

Study on the performance of thermal energy of a classroom built with natural materials 2022

Energy-saving potential assessment of a classroom building envelope through sensitivity analysis and multi-objective optimization under different climate type 2023

Young Tae Cho – Intelligent Energy – Best Researcher Award

Young Tae Cho - Intelligent Energy - Best Researcher Award

Changwon National University - South Korea

Professional Profiles:

Early Academic Pursuits:

Young Tae Cho embarked on his academic journey, laying the foundation for his distinguished career in Precision Manufacturing Engineering. He earned his credentials in Mechanical Engineering, and his commitment to academic excellence and passion for innovative technologies emerged early on. As he navigated through the academic landscape, his academic prowess and dedication to the field set the stage for a remarkable professional trajectory.

Professional Endeavors:

Joining Changwon National University marked a significant milestone in Young Tae Cho's career. His ascent to the position of Professor and subsequent appointment as the dean of the Department of Smart Manufacturing at the School of Mechatronics Engineering showcased his leadership abilities. Simultaneously, his roles as Director of the Development Cluster Business Center, BK21 Plus Education and Research Center, and Smart Manufacturing Technology Center underscored his multidimensional impact in academia and industry collaboration. Intelligent Energy, as spearheaded by visionary researcher Young Tae Cho, revolutionizes the energy landscape. Cho's pioneering work encompasses sustainable power solutions, energy efficiency technologies, and smart grid innovations, positioning him as a leader in renewable energy systems

Contributions and Research Focus:

Young Tae Cho's research interests reflect a cutting-edge approach to manufacturing technologies. His endeavors in Additive Manufacturing, Nano Micro Fabrication, Printed Electronics, Laser Applied Material Processing, and Bio-inspired 4D Printing illustrate a diverse and forward-looking research agenda. By delving into these domains, he has not only expanded the frontiers of knowledge but also contributed to the practical applications of these technologies, bridging the gap between academia and industry. Recognized globally for clean energy initiatives, Cho is an award-winning trailblazer, championing sustainable power and contributing noteworthy solutions to environmental challenges. His expertise in green technology, acknowledged by various accolades, establishes him as a thought leader in intelligent energy

Accolades and Recognition:

The recognition bestowed upon Young Tae Cho is a testament to his outstanding contributions. Serving as an advisor to the Advisory Committee of Gyeongsangnam-do Provincial Government and assuming leadership roles in various prestigious centers and clusters, he has garnered acknowledgment for his expertise. His inclusion in the BK21 Plus Creative HRD Center for Smart-Intelligent Manufacturing Systems and the Smart Manufacturing Innovation Leading-University attests to the esteem in which he is held in the academic community. With a focus on conservation and innovation, Young Tae Cho's impactful contributions ensure a cleaner, more sustainable energy future.

Impact and Influence:

Young Tae Cho's impact extends beyond his institutional roles. As the Coordinator for the Smart Industrial Complex of Gyeongsangnam-do Changwon, he has played a pivotal role in regional development. His leadership in Smart Manufacturing has influenced not only the academic landscape but also the industrial and economic growth of the region. By fostering collaborations and initiatives, he has left an indelible mark on the smart manufacturing ecosystem.

Legacy and Future Contributions:

Young Tae Cho's legacy lies in the seeds of innovation he has sown throughout his career. His leadership in the BK21 Plus program and the LINC Plus initiative exemplifies his dedication to nurturing the next generation of industry leaders. Looking forward, his continued involvement as Director of key centers and clusters indicates a commitment to pushing the boundaries of knowledge and fostering an environment conducive to academic and industrial symbiosis

Notable Publications:

Application of synchronized tandem welding to high-hardness armor steel 2024

Wireless, multimodal sensors for continuous measurement of pressure, temperature, and hydration of patients in wheelchair 2023

High-Throughput Metal 3D Printing Pen Enabled by a Continuous Molten Droplet Transfer 2022

Weld Quality Analysis of High-Hardness Armored Steel in Pulsed Gas Metal Arc Welding 2023

Dr. Md. Hasan Ali – Energy Science – Best Researcher Award

Dr. Md. Hasan Ali - Energy Science - Best Researcher Award

Khulna University of Engineering & Technology - Bangladesh

Professional Profiles:

Early Academic Pursuits:

Dr. Md. Hasan Ali's academic journey began with a strong foundation in Mechanical Engineering. He earned his Bachelor's degree (B.Sc. Eng.) from Khulna University of Engineering & Technology (KUET), Bangladesh, in 2008. His undergraduate thesis focused on the design, construction, and performance testing of a gear pump, showcasing his early interest and proficiency in mechanical systems. Hasan continued his academic pursuit with a Master's degree (M.Sc. Eng.) from KUET in 2013, where his thesis centered on the extraction of pyrolytic fuel from non-biodegradable solid waste, demonstrating his commitment to sustainable engineering practices. His academic journey reached its zenith with a Ph.D. in Mechanical Engineering from Saga University, Japan, in March 2018. His doctoral research, titled "Experimental and numerical analysis of the performance of ground heat exchangers for ground source heat pump," showcased his dedication to advancing energy-efficient technologies.

Professional Endeavors:

Dr. Hasan Ali's professional journey has been marked by a seamless transition from academia to leadership roles. Starting as a Lecturer in the Department of Energy Science and Engineering at KUET in December 2008, he progressively climbed the academic ranks, holding positions as Assistant Professor, Associate Professor, and ultimately, becoming a Professor in August 2023. His leadership capabilities were further recognized when he assumed the role of Head of the Department in September 2023. Additionally, his stint as a Research Assistant at Saga University, Japan, from October 2014 to March 2015, provided him with international exposure and collaborative research experience, contributing to the enrichment of his academic portfolio.

Contributions and Research Focus:

Dr. Hasan Ali's contributions to the field of Mechanical Engineering are noteworthy. His research has primarily focused on experimental and numerical analysis of energy systems, including ground source heat pumps and pyrolytic fuel extraction. The outcomes of his work have implications for sustainable energy practices and environmental conservation. His commitment to innovative research has not only expanded the academic discourse at KUET but has also contributed to the global understanding of energy-related challenges. As a Professor and Head of the Department of Energy Science and Engineering, Dr. Hasan Ali continues to inspire and guide the next generation of engineers, fostering an environment of academic excellence and research innovation.

Accolades and Recognition:

Dr. Hasan Ali's academic and research achievements have earned him recognition both nationally and internationally. His Ph.D. thesis and subsequent research publications have likely contributed to advancements in the field. His leadership as the Head of the Department and his role in shaping the academic landscape at KUET have been acknowledged by peers and students alike.

Impact and Influence:

Through his research, teaching, and leadership roles, Dr. Hasan Ali has made a significant impact on the academic and professional spheres. His work has the potential to influence sustainable practices in energy systems, making a positive contribution to environmental conservation. As a mentor and educator, his influence extends to the numerous students he has guided, shaping their perspectives and careers in the field of Mechanical Engineering.

Legacy and Future Contributions:

Dr. Hasan Ali's legacy lies in his dedication to advancing knowledge and fostering a culture of research and innovation. His leadership at KUET has left an indelible mark on the Department of Energy Science and Engineering. Looking ahead, his future contributions are likely to encompass continued research excellence, mentorship, and initiatives aimed at addressing contemporary challenges in energy and environmental sustainability.

Notable Publications:

Pyrolytic fuel extraction from tire and tube: Analysis of parameters on product yield December 2022 (2)

Exhaust heat harvesting of automotive engine using thermoelectric generation technology  July 2023 (1)

Time Series Analysis and Forecasting of Energy Demand in Bangladesh by Using SARIMA Model 2021 (1)