Kaijian Wang | Thermal Resistance | Innovative Research Award

Innovative Research Award

Kaijian Wang
Affiliation Zhejiang Normal University
Country China
Scopus ID 58184032100
Documents 3
Citations 3
h-index 1
Subject Area Thermal Resistance
Event Name Cryogenicist Global Awards

Kaijian Wang–Zhejiang Normal University, China

Kaijian Wang is a researcher whose indexed scholarly record includes work involving heat transfer and dynamic ice formation. His documented research includes an experimental investigation of dynamic ice-forming of supercooled water using a compact heat exchanger, published in the Journal of Energy Storage. [2]

Abstract

This recognition profile presents the documented academic record of Kaijian Wang in relation to innovative thermal research. Available bibliographic information identifies three Scopus-indexed documents and three citations.The profile particularly reflects research concerning heat transfer, supercooled water, compact heat exchangers, and dynamic ice formation. [1]

Keywords

Thermal Resistance; Heat Transfer; Supercooled Water; Compact Heat Exchanger; Dynamic Ice Formation; Ice Slurry; Energy Storage.

Introduction

Thermal research involving controlled cooling and phase-change processes has relevance to energy-storage engineering and heat-transfer systems. Wang’s indexed record includes research directly addressing dynamic ice formation and compact heat-exchanger performance. [2]

Research Profile

The Scopus Preview record identifies Wang Kaijian with three documents, three citations, and an h-index of one.The available record also identifies co-authorship and research topics associated with thermal and energy-storage investigations.[1]

Research Contributions

A documented contribution is the experimental study of dynamic ice-forming from supercooled water using a compact heat exchanger. The study examines supercooling, uninterrupted operation, ice formation efficiency, and electrical energy consumption. [2]

Publications

The Scopus record lists Experimental investigation on dynamic ice-forming of supercooled water using a compact heat exchanger, authored by Pengwei Cheng, Wenjie Zhou, Kaijian Wang, and Guoxiang Xu, in the Journal of Energy Storage. [2]

Research Impact

The available bibliometric record indicates three citations across three documents, providing a measurable but early-stage research-impact profile.The published work also contributes to discussion of ice-slurry generation, thermal management, and energy-storage applications. [1]

Award Suitability

Based on the documented research record, Wang’s work demonstrates a clear connection with thermal engineering and innovative heat-transfer experimentation. These themes provide a reasonable academic basis for consideration under an Innovative Research Award focused on relevant technical contributions.

Conclusion

Kaijian Wang’s available scholarly profile reflects research activity in thermal resistance, heat transfer, supercooled water, and dynamic ice formation.The documented publication and indexed metrics provide the principal evidence for this recognition profile.[2]

References

  1. Elsevier. (n.d.). Scopus author details: Kaijian Wang, Author ID 58184032100. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=58184032100
  2. Cheng, P., Zhou, W., Wang, K., & Xu, G. (2025). Experimental investigation on dynamic ice-forming of supercooled water using a compact heat exchanger. Journal of Energy Storage, 130, 117391.
    https://doi.org/10.1016/j.est.2025.117391
  3. Cryogenicist Global Awards. (n.d.). Official award website.
    https://cryogenicist.com

Fida Rehman | Thermodynamics | Innovator in Cryogenic Heat Transfer Award

 

Innovator in Cryogenic Heat Transfer Award

               Fida Rehman
Affiliation Khushal Khan Khattak University
Country Pakistan
Scopus ID 56285133900
Documents 61
Citations 1,562
h-index 22
Subject Area Thermodynamics
Event Cryogenicist Global Awards
ORCID 0000-0002-7993-0846

Fida Rehman

Khushal Khan Khattak University, Pakistan

Fida Rehman is a researcher associated with Khushal Khan Khattak University whose scholarly work contributes to thermodynamics and heat transfer research with applications relevant to cryogenic engineering. Through publications indexed in Scopus and an established citation record, the researcher has contributed to studies involving thermal sciences, computational analysis, and engineering solutions that support scientific understanding in low-temperature technologies.[1]

Abstract

Fida Rehman is an engineering researcher whose academic work reflects sustained contributions to thermodynamics, heat transfer, computational modeling, and related engineering disciplines with relevance to cryogenic technologies. The research portfolio demonstrates continuous scholarly productivity supported by peer-reviewed publications, measurable citation impact, and interdisciplinary collaboration. These studies advance understanding of thermal transport phenomena, energy systems, and engineering optimization while providing scientific knowledge applicable to low-temperature environments. The overall research record, publication performance, and recognized scholarly influence make the researcher an appropriate candidate for consideration for the Innovator in Cryogenic Heat Transfer Award.[1]

Keywords

Cryogenic Heat Transfer, Thermodynamics, Thermal Engineering, Heat Transfer, Computational Modeling, Energy Systems, Engineering Research, Low Temperature Engineering.

Introduction

Research in thermodynamics and heat transfer forms the scientific foundation for numerous cryogenic technologies used in industrial processing, energy systems, aerospace engineering, and scientific instrumentation. Contributions in these areas improve the efficiency, reliability, and analytical understanding of thermal processes under demanding operating conditions. Fida Rehman’s scholarly activities align with these objectives through engineering research that supports advances in thermal science and computational analysis.[2]

Research Profile

According to the available Scopus profile, Fida Rehman has authored 61 indexed documents with more than 1,562 citations and an h-index of 22. These metrics indicate sustained publication activity and measurable scholarly influence within engineering and thermodynamics research. The publication record reflects participation in collaborative investigations addressing heat transfer, fluid dynamics, numerical simulation, and energy-related engineering applications.[3]

Research Contributions

The research contributions demonstrate emphasis on thermal transport analysis, engineering optimization, computational methods, and thermodynamic performance evaluation. Such investigations support scientific understanding of efficient heat exchange, thermal management, and engineering system performance, which are fundamental considerations in cryogenic environments where precise temperature control and energy efficiency are essential.[1]

Publications

Fida Rehman’s eligible publications include peer-reviewed research articles in thermodynamics and engineering sciences, studies involving computational heat transfer and numerical modeling, research focused on thermal system optimization and engineering applications, and scholarly publications indexed in the Scopus database, demonstrating originality, scientific rigor, and meaningful contributions to thermodynamics, thermal engineering, energy systems, and related interdisciplinary research.

Research Impact

Citation indicators and publication metrics suggest that the research outputs have received recognition within the scientific community. An h-index of 22 together with more than 1,562 citations reflects continuing academic engagement with published work. Such quantitative indicators complement the broader qualitative contribution of advancing engineering knowledge relevant to thermal sciences and cryogenic heat transfer applications.[4]

Award Suitability

The Innovator in Cryogenic Heat Transfer Award recognizes researchers whose scientific achievements contribute to advancing knowledge applicable to cryogenic engineering. Based on publication productivity, citation performance, engineering expertise, and scholarly engagement in thermodynamics, Fida Rehman demonstrates qualifications consistent with the objectives of this academic recognition. The research portfolio reflects continuing contributions that support innovation in thermal engineering and low-temperature technologies.[5]

Conclusion

Fida Rehman’s academic profile represents sustained research activity in thermodynamics and engineering sciences supported by a substantial publication record and recognized citation impact. The combination of scholarly productivity, research influence, and relevance to thermal engineering supports consideration for recognition through the Innovator in Cryogenic Heat Transfer Award within the Cryogenicist Global Awards program.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Fida Rehman, Author ID 56285133900. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=56285133900
  2. ORCID. (n.d.). ORCID Record: Fida Rehman.
    https://orcid.org/0000-0002-7993-0846
  3. Cryogenicist Global Awards. (n.d.). Official Award Website.
    https://cryogenicist.com/
  4. Ning, M.-Q., Lu, M.-M., Li, J.-B., Chen, Z., Dou, Y.-K., Wang, C.-Z., Rehman, F., Cao, M.-S., & Jin, H.-B. (2015). Two-dimensional nanosheets of MoS₂: A promising material with high dielectric properties and microwave absorption performance. Nanoscale, 7(38), 15734–15740.
    https://doi.org/10.1039/C5NR04670J
  5. Saeed, Y., Amin, B., Khalil, H., Rehman, F., Ali, H., Khan, M. I., Mahmood, A., & Shafiq, M. (2020). Cs₂NaGaBr₆: A new lead-free and direct band gap halide double perovskite. RSC Advances, 10(30), 17444–17451.
    https://doi.org/10.1039/D0RA01764G