Xiaoming Xu
Jiangsu University
36 Papers
35 Citations
Xiaoming Xu is an academic researcher from Jiangsu University. The author has contributed to research in topics: Lithium-ion battery & Battery (electricity). The author has an hindex of 7, co-authored 36 publications.
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Papers
Numerical study and optimizing on cold plate splitter for lithium battery thermal management system
TL;DR: In this article, the authors used the orthogonal experimental design method to simulate and study the thermal equilibrium performance of battery liquid cooling system through adding splitters into the straight channel.
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Heat Dissipation Analysis on the Liquid Cooling System Coupled with a Flat Heat Pipe of a Lithium-Ion Battery.
Nan Mei,Xiaoming Xu,Renzheng Li +2 more
- 06 Jul 2020
TL;DR: The effects of different discharge rates, differentCoolant flow rates, and different coolant inlet temperatures on the temperature distribution uniformity of the power battery system were analyzed, and the effectiveness of the flat heat pipe in improving the thermal equilibrium performance of the liquid-cooled thermal management system was verified.
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Plate flat heat pipe and liquid-cooled coupled multistage heat dissipation system of Li-ion battery
Abstract: A thermal management system with the capability of achieving excellent heat dissipation is essential to the development of battery pack for transportation devices. To meet the temperature uniformity requirements of the battery pack, the plate flat heat pipe and liquid‐cooled coupled multistage heat dissipation system had been introduced. In this article, the research status of thermal management systems in battery pack was introduced. And the heat generation and heating power of the Li‐ion cell were studied. Then, the structure model of plate flat heat pipe system was proposed. Finally, the enhanced heat conduction effect of the thermal management system proposed in this article was comprehensively analyzed. Through the analysis of the results, in high discharge rates, the thermal management system proposed in this article could meet the temperature uniformity requirements of battery pack; also, the internal difference would reduce by 30.20%.
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