Mr. Dinesh Kumar Saini | Thermal Engineering | Best Researcher Award
National Institute of Technology, Kurukshetra, India
Author Profile
Early Academic Pursuits 🎓
Dinesh Kumar Saini’s academic journey reflects a consistent drive toward excellence in the field of mechanical engineering. His foundational education began with a Bachelor of Engineering (B.E.) in Mechanical Engineering at Sunderdeep College of Engineering and Technology, Ghaziabad, affiliated with Dr. A.P.J. Abdul Kalam Technical University, Lucknow. Graduating in 2015 with an impressive 81.16% (First Division), he demonstrated early on his aptitude for engineering concepts and problem-solving.
Motivated by a passion for thermal systems, Dinesh pursued a Master of Technology (M.Tech) in Thermal Engineering at the National Institute of Technology (NIT), Kurukshetra. His research during this period focused on the “Design and performance analysis of an ejector as an expansion device in vapor compression systems”, a topic that underscores his interest in innovative thermal technologies. Achieving a stellar 9.5 CGPA, he solidified his expertise and commitment to advancing energy systems.
Currently, Dinesh is pursuing a Doctor of Philosophy (Ph.D.) in Mechanical Engineering (Thermal) from NIT Kurukshetra. Since January 2021, he has been deeply engaged in experimental investigations of phase change materials (PCMs) for thermal energy storage systems. His research is driven by the need for sustainable and efficient energy solutions, placing him at the forefront of innovation in this critical domain.
Professional Endeavors 🏢
Dinesh’s professional journey is intricately tied to his academic pursuits, with a strong focus on applied research. His master’s thesis introduced him to experimental techniques and performance analysis, skills that he continues to employ in his doctoral work.
As a Senior Research Scholar at NIT Kurukshetra, Dinesh has contributed to the advancement of solar thermal energy storage systems and their application in solar water heating and space heating. His hands-on approach to understanding PCMs and their integration into thermal systems has provided valuable insights into energy efficiency and sustainability.
Contributions and Research Focus 🌞
Dinesh’s research revolves around solar thermal energy storage systems, with a particular emphasis on phase change materials (PCMs). These materials, known for their ability to store and release latent heat, are crucial for enhancing the efficiency of thermal systems.
His work addresses key challenges in the field, including:
- Material selection: Identifying and testing PCMs that offer optimal thermal properties.
- System integration: Developing methods to incorporate PCMs into solar water heating and space heating systems.
- Performance optimization: Experimentally analyzing and improving the efficiency of thermal energy storage systems.
By bridging the gap between theoretical concepts and practical applications, Dinesh’s research contributes to the development of energy systems that are not only efficient but also environmentally sustainable.
Accolades and Recognition 🏅
Dinesh’s academic achievements are a reflection of his dedication and hard work. Graduating with distinction during both his undergraduate and postgraduate studies, he has consistently stood out among his peers. His 9.5 CGPA in his M.Tech program is a testament to his commitment to academic excellence.
His research contributions have also gained recognition within the scientific community. Through publications and conference presentations, Dinesh has shared his findings with researchers and professionals, earning accolades for his innovative approach to solving real-world energy challenges.
Impact and Influence 🌟
Dinesh’s work in thermal energy storage has a far-reaching impact on both the academic and industrial sectors. By improving the efficiency of solar thermal systems, his research supports the transition to renewable energy sources, aligning with global efforts to combat climate change.
As a Senior Research Scholar, he has also influenced the next generation of researchers through mentorship and collaboration. His ability to communicate complex concepts in an accessible manner has inspired many to explore the potential of sustainable energy technologies.
Legacy and Future Contributions 🚀
Looking ahead, Dinesh Kumar Saini aims to expand the scope of his research to include large-scale applications of thermal energy storage systems. His work on PCMs has the potential to revolutionize the way energy is stored and utilized, offering solutions that are both cost-effective and environmentally friendly.
In addition to his technical contributions, Dinesh is committed to fostering a culture of innovation and sustainability. By mentoring young researchers and engaging with the broader community, he aspires to leave a lasting legacy as a pioneer in solar thermal energy and phase change materials research.
In conclusion, Dinesh Kumar Saini’s journey is a shining example of how dedication to learning and innovation can drive meaningful change. His contributions to the field of mechanical engineering and energy storage are paving the way for a greener, more sustainable future. 🌱✨
Citations
A total of 16 citations for his publications, demonstrating the impact and recognition of his research within the academic community.
- Citations 16
- h-index 07
- i10-index 02
Notable Publications
- Fabrication and Investigation of Stearic Acid-Based Thermal Battery with Water to Enhance the Heat Transfer Rate
- Authors: Saini, D.K., Chandrashekara, M.
- Journal: Journal of Energy Storage
- Year: 2024.
- Enhancing Paraffin Wax-Based Thermal Battery Performance with Water: Fabrication and Experimental Analysis
- Authors: Saini, D.K., Chandrashekara, M.
- Journal: International Communications in Heat and Mass Transfer
- Year: 2024.
- A Systematic Review of Thermal Energy Storage and Phase Change Materials
- Authors: Saini, D.K., Chandrashekara, M.
- Journal: NanoWorld Journal
- Year: 2023.
- Experimental Investigation of Stearic Acid in the Thermal Battery Comprising a Fin and Tube Heat Exchanger
- Authors: Saini, D.K., Chandrashekara, M.
- Journal: Evergreen
- Year: 2023.
- Optimized Refrigerant Flow Rate and Dimensions of the Ejector Employed in a Modified Ejector Vapor Compression System
- Authors: Sharma, D., Sachdeva, G., Saini, D.K.
- Journal: International Journal of Air-Conditioning and Refrigeration
- Year: 2020.