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
Kaijian Wang | Thermal Resistance | Innovative Research Award

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