Jimin Youn | Thermal Model | Best Researcher Award

Best Researcher Award

Jimin Youn

Korea Advanced Institute of Science and Technology, South Korea

Jimin Youn
Affiliation Korea Advanced Institute of Science and Technology
Country South Korea
Scholar ID I5NaMdcAAAAJ
Documents 14
Citations 8
h-index 1
Subject Area Thermal Model
Event International Environmental Scientists Award

Jimin Youn is affiliated with the Korea Advanced Institute of Science and Technology and is associated with research in the area of thermal modeling. The available profile information records 14 documents and identifies Thermal Model as the principal subject area for this recognition profile.

Abstract

This academic recognition profile presents Jimin Youn’s research association with thermal modeling at the Korea Advanced Institute of Science and Technology. Thermal models are important analytical tools for describing heat transfer, temperature behavior, energy balances, and coupled thermal phenomena in engineering systems.[1]

Keywords

Jimin Youn, Best Researcher Award, Thermal Model, thermal modeling, heat transfer, computational modeling, engineering research, Korea Advanced Institute of Science and Technology.

Introduction

Thermal modeling provides a framework for representing temperature fields and energy transport through mathematical, numerical, and computational approaches. Such models support analysis and design across engineering and scientific applications, particularly where thermal behavior interacts with materials, structures, or operating conditions.[2]

Research Profile

The supplied academic information identifies Jimin Youn with the Korea Advanced Institute of Science and Technology in South Korea and records 14 research documents. The documented subject focus for this profile is Thermal Model, while detailed citation and h-index information has not been supplied.

Research Contributions

Within thermal-model research, contributions may involve mathematical formulation, numerical simulation, parameter analysis, and validation of predicted thermal behavior. These approaches are commonly used to improve understanding of heat-transfer processes and support evidence-based engineering decisions.[3]

Publications

The supplied profile records 14 documents associated with the researcher. Individual publication titles, journals, publication years, and DOI identifiers were not provided in the source data; therefore, no specific publication is attributed here without independent bibliographic verification.

Research Impact

The potential research value of thermal modeling lies in its capacity to connect physical principles with computational prediction and system analysis. Thermal simulation and modeling can contribute to improved system understanding, design optimization, and assessment of energy-related performance.[4]

Award Suitability

The profile provides an academic affiliation, a defined thermal-model subject area, and a documented research output of 14 documents. These details can form part of an award assessment, alongside independently verified evidence concerning research quality, originality, scholarly contribution, and broader relevance.

Conclusion

Jimin Youn’s supplied profile connects research activity at the Korea Advanced Institute of Science and Technology with the field of Thermal Model. The Best Researcher Award profile can serve as a structured academic summary while leaving detailed impact assessment to documented evidence and the award evaluation process.

References

  1. Incropera, F. P., DeWitt, D. P., Bergman, T. L., & Lavine, A. S. (2011). Fundamentals of Heat and Mass Transfer. Wiley.
    https://doi.org/10.1002/9780470937529
  2. Jimin Youn, Hyeongjun Kim, Kyeongsu Shi, Kyoungchul Kong (2024). Thermal characteristic modeling and compensation for the improvement of actuator homeostasis
  3. Versteeg, H. K., & Malalasekera, W. (2007). An Introduction to Computational Fluid Dynamics: The Finite Volume Method. Pearson.
  4. Jongwon Kim, Abhiraj Singh, Jimin Youn, Hyeongjun Kim, Jeongsu Park, Jinsu Park, Kyoungchul Kong (2025). Optimization of crutch-free walking for a powered exoskeleton considering human adaptation
  5. Embodied Teaching for Powered Exoskeletons via Variance-Decomposed Impedance Learning
  6. Active Temperature Limitation Algorithm to Maximize Potential Driving Current Capability of Electric Motors

Guy Trudon Muya | Thermodynamic Engineering | Best Researcher Award

Mr. Guy Trudon Muya | Thermodynamic Engineering | Best Researcher Award

University of Gabes | Tunisia

Mr. Guy Trudon Muya is a PhD scholar at the National Engineering School of Gabès, University of Gabes, advancing research in mechanical engineering with a specialization in energy mechanics and applied thermodynamics. Building on a strong foundation in electromechanics and applied mechanics, his research centers on thermo-economic modeling, thermodynamic assessment, and multi-criteria optimization of advanced energy systems, particularly the integration of the Kalina cycle within multigeneration technologies. He has contributed to three research projects and published in reputable outlets, including the Fuels journal, with his work gaining visibility through indexed citation platforms. His scientific interests encompass detailed thermodynamic analysis of systems powered by low- and medium-temperature heat sources, evaluation of exergy destruction across system components, and performance enhancement strategies for hybrid configurations. His recent contributions include a comprehensive thermodynamic and exergy-based investigation on combined electricity and green hydrogen production, analyzing the effects of geothermal temperature, operating pressures, ammonia–water concentration ratios, and key heat-exchange parameters. This study enabled the identification of an optimized multigeneration system with improved exergy efficiency and enhanced hydrogen output. He is associated with the Laboratory of Applied Thermodynamics, where he collaborates on advanced modeling and optimization approaches for next-generation energy solutions. His research demonstrates a commitment to innovation in sustainable energy systems, with a focus on improving efficiency, minimizing exergy losses, and supporting the development of environmentally responsible technologies. Through his scholarly work and ongoing doctoral research, he continues to contribute valuable insights to the field of thermodynamic system integration and green energy production.

Profiles: Orcid

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