Surjan Singh | Heat Transfer | Best Researcher Award

Best Researcher Award

Surjan Singh
Department of Mathematics, Eternal University, India
Surjan Singh
Researcher Surjan Singh
Affiliation Department of Mathematics, Eternal University
Country India
Scopus ID 7406398935
Documents 23
Citations 264
h-index 8
Subject Area Heat Transfer
Event  Indian Scientist Awards
ORCID 0000-0002-2429-1477

Surjan Singh is a researcher affiliated with the Department of Mathematics at Eternal University, India, whose research profile is associated with the subject area of heat transfer. The available bibliographic information identifies 23 documents, 264 citations, and an h-index of 8 in the supplied Scopus profile information. His academic profile is considered in the context of research activity, scholarly publications, citation impact, and contributions related to heat-transfer studies. [1]

Abstract

This academic recognition profile presents the research background and bibliographic indicators associated with Surjan Singh of the Department of Mathematics, Eternal University, India. The supplied research information places his scholarly activity within the broad area of heat transfer. The profile records 23 documents, 264 citations, and an h-index of 8 according to the supplied Scopus information. Heat transfer research encompasses the analysis of thermal transport, convection, conduction, energy exchange, and related mathematical and engineering models. Evaluation of a researcher in this field may consider publication activity, citation patterns, research relevance, methodological contributions, and the continuity of scholarly work. [1]

Keywords

Surjan Singh; Heat Transfer; Department of Mathematics; Eternal University; Thermal Transport; Mathematical Modelling; Research Publications; Citation Impact; Scholarly Research.

Introduction

Heat transfer is a multidisciplinary field concerned with the movement and exchange of thermal energy. Its theoretical foundation includes conduction, convection, and radiation, together with mathematical descriptions of temperature distributions, boundary conditions, transport coefficients, and energy balances. Correlation methods and analytical or numerical models are widely used to characterize heat-transfer behaviour in different physical systems.

Research Profile

Surjan Singh is affiliated with the Department of Mathematics at Eternal University in India. The supplied bibliometric profile reports 23 scholarly documents, 264 citations, and an h-index of 8. These indicators provide quantitative information about publication output and citation activity, although bibliometric measures represent only selected dimensions of academic research and should be interpreted in relation to field, publication period, authorship, and research context. [1]

Profile Indicator Supplied Information
Institution Eternal University
Department Department of Mathematics
Country India
Subject Area Heat Transfer
Documents 23
Citations 264
h-index 8

Research Contributions

The supplied research classification places Surjan Singh’s academic work within heat transfer. Research in this domain commonly addresses the formulation and solution of thermal transport problems, including the study of temperature fields, heat flux, convection mechanisms, and mathematical representations of physical systems. Depending on the research problem, such work may combine analytical methods with numerical or computational approaches.[1][2]

Publications

The supplied Scopus information records 23 documents associated with the research profile. Publication-level evaluation should distinguish original research articles, reviews, conference papers, book chapters, and other indexed documents because publication types and citation practices vary across scholarly fields. [1]

  • Reported indexed documents: 23.
  • Reported citations: 264.
  • Reported h-index: 8.
  • Primary supplied subject area: Heat Transfer.

For publication-specific verification, the researcher’s indexed author record should be consulted directly because bibliographic databases can change as records are added, corrected, merged, or reclassified.

Research Impact

The supplied citation count of 264 and h-index of 8 indicate measurable citation activity associated with the indexed research record. Citation indicators can be useful for describing scholarly visibility, but they do not by themselves establish the quality, originality, societal value, or practical significance of individual research outputs. Citation behaviour also differs between disciplines and across publication years.

Award Suitability

The profile has been prepared in the context of the Indian Scientist Awards and identifies Surjan Singh’s research domain as heat transfer. The supplied academic affiliation, publication indicators, citation count, and h-index provide documented profile information that can be considered during an award-review process. [1][2]

Conclusion

Surjan Singh’s supplied academic profile is associated with the Department of Mathematics at Eternal University, India, and with the subject area of heat transfer. The reported research record comprises 23 documents, 264 citations, and an h-index of 8. These indicators provide a concise quantitative description of the indexed scholarly record. Further evaluation of research significance would require detailed examination of the underlying publications, methodologies, collaborations, and applications. [1]

References

    1. Scopus. Surjan Singh — Author Profile and Indexed Research Record. Scopus author profile.
      https://www.scopus.com/authid/detail.uri?authorId=7406398935.
    2. ORCID. ORCID record: 0000-0002-2429-1477.
      https://orcid.org/0000-0002-2429-1477.
    3. Unsteady state thermal analysis of 2-D elliptic fin: A wavelet Galerkin approach
      https://www.sciencedirect.com/science/article/pii/S0735193326015009

    4. Thermal analysis of fins operating with hybrid nanofluids under non-linear thermal properties: legendre wavelet based approach
      https://link.springer.com/article/10.1007/s10999-026-09959-5

Karthic SV | Energy | Best Researcher Award

Dr. Karthic SV | Energy | Best Researcher Award

Madras Institute of Technology, India

Author Profile

SCOPUS

🎓 EARLY ACADEMIC PURSUITS

Dr. Karthic S. V began his academic journey with a Bachelor’s degree in Mechanical Engineering (2009–2013), followed by a Master’s in Thermal Engineering (2013–2015). His academic excellence and deep inclination toward sustainable energy systems led him to pursue a Ph.D. at the prestigious Madras Institute of Technology, Anna University, specializing in Hydrogen Dual Fuel Engine Research. His formative years laid the foundation for his enduring contributions to clean energy and combustion research.

🏢 PROFESSIONAL ENDEAVORS

Dr. Karthic is currently serving as a Test Engineer (R&D) in the electric vehicle domain, with a strong focus on Battery Thermal Management Systems (BTMS). He brings a multidisciplinary approach to testing, automation, thermal analysis, and simulation using platforms like ANSYS CFD, AVL Indsmart, and CONVERGE CFD.

His career has seen impactful stints:

  • Test Engineer – Designing simulation models for BTMS in EVs, evaluating nanofluid coolants, and managing emission tests.

  • Research Assistant – At the Hydrogen production plant and Combustion Engine Lab, MIT, where he was involved in lab setups and experimental methodologies.

  • Research Scholar – Engaged in full-time hydrogen combustion research, he developed an advanced test bench for hydrogen-based dual fuel engines.

📚 CONTRIBUTIONS AND RESEARCH FOCUS IN ENERGY

Dr. Karthic’s core research revolves around Hydrogen Dual Fuel Engines, Alternative Fuels, Emission Control, and BTMS using Nanofluids. He has consistently integrated Artificial Neural Networks (ANN) and simulation-based optimization techniques in engine and battery thermal systems. His work targets high thermal efficiency, lower emissions, and innovative cooling mechanisms for sustainable mobility and energy conversion.

Notable areas of contribution include:

  • Hydrogen Biofuel-based RCCI Engines

  • Methanol & Waste Cooking Oil in CRDI Systems

  • Hydrogen enrichment and knock-limiting strategies

  • AI-based modeling for combustion performance

🏅 ACCOLADES AND RECOGNITION

  • Recognized as a leading early-career hydrogen fuel researcher

  • His publications in top-tier journals have earned him international repute

  • Acknowledged for the development of a custom engine test bench for hydrogen combustion

  • Esteemed by faculty and researchers for his interdisciplinary methodology and innovation

🌍 IMPACT AND INFLUENCE

Dr. Karthic’s research has a significant technological and environmental impact. By focusing on cost-effective, scalable, and application-oriented solutions, his work advances clean energy technologies aligned with UN SDG 7 (Affordable and Clean Energy) and SDG 13 (Climate Action). His studies on renewable-fueled engines and emission optimization hold the potential for industrial application in both automotive and power sectors.

His influence extends to mentoring, technical collaborations, and contribution to the growing body of AI-integrated combustion science.

🧭 LEGACY AND FUTURE CONTRIBUTIONS

Dr. Karthic aims to revolutionize clean mobility through:

  • Integrating hydrogen fuel technologies with real-time AI simulations

  • Creating next-gen BTMS for safer and more efficient electric vehicles

  • Expanding his research to green hydrogen production and fuel cell integration

  • Training the next generation of engineers and researchers in sustainable power systems

His vision is to bridge the gap between academic research and real-world energy solutions.

 ✅CONCLUSION

Dr. Karthic S. V exemplifies the synergy of research brilliance, industrial pragmatism, and environmental foresight. With a strong footing in thermal sciences, hydrogen fuel, and electric vehicle systems, his contributions are poised to reshape clean energy landscapes. Through his continued innovations, collaborative efforts, and future-forward thinking, Dr. Karthic stands as a beacon of sustainable engineering and energy research.

🔬NOTABLE PUBLICATION:

Title: Experimental investigations on hydrogen biofueled reactivity controlled compression ignition engine using open ECU
Author: Karthic, S.V., M. Senthil Kumar
Journal: ENERGY
Year: 2021

Title: Split injection strategies based RCCI combustion analysis with waste cooking oil biofuel and methanol in an open ECU assisted CRDI engine
Author: Karthic, S.V., et al.
Journal: FUEL
Year: 2022

Title: Assessment of hydrogen-based dual fuel engine on extending knock limiting combustion
Author: Karthic, S.V., M. Senthil Kumar, et al.
Journal: FUEL
Year: 2020

Title: An assessment on injection pressure and timing to reduce emissions on diesel engine powered by renewable fuel
Author: Karthic, S.V., M. Senthil Kumar, et al.
Journal: Journal of Cleaner Production
Year: 2020

Title: Experimental assessment of effects of n-Butanol on performance, emission, and combustion characteristics of Mahua oil fueled Reactivity Controlled Compression Ignition (RCCI) engine
Author: Selvaraju, Karthic
Journal: Emission Control Science and Technology
Year: 2020