发表论文 [1] W. Tang, L. Sun, H. Liu, et al. Improvement of flow distribution and heat transfer performance of a self-similarity heat sink with a modification to its structure[J]. Applied Thermal Engineering, 2017, 121: 163–171. (SCI: 000406169600016, EI: 20171703608573. IF=3.77) [2]W. Tang, L. Sun, H. Liu, et al. Improvements in performance of a self-similarity heat sink through structure modification[J]. Heat Transfer Engineering, 2019, 41(19). (SCI: 000482692800001. IF=1.693) [3]Wei Tang, Licheng Sun, Hongtao Liu et. al., Investigation on the Extendibility of Self-Similar Heat Sink for Cooling Electrical Equipment With Varying Sizes [J], IEEE Transactions on Components, Packaging and Manufacturing Technology, 2021, 11(1): 57-70. (SCI: 000613373500008. IF=1.889) [4]唐巍,孙立成,刘洪涛,等.分流式微通道热沉强化传热性能数值分析[J]. 电子科技大学学报, 2018, 47(6): 864–868. (EI: 20190706495251) [5]唐巍,刘洪涛,孙立成,等.微通道迎流角对自相似热沉性能的影响[J].工程热物理学报, 2018, 30(10): 2219–2222. (EI: 20185206305473) [6]W. Tang, L. Sun, H. Liu, et al. A numerical investigation on heat dissipation features of heat sinks with self-similarity structure[C]// 8th International Symposium on Multiphase Flow, Heat Mass Transfer and Energy Conversion, Chengdu, 2016. [7]唐巍,孙立成,刘洪涛,等.微通道迎流角对自相似热沉性能的影响[C]// 中国工程热物理学会多相流学术年会,扬州,2017. [8]W. Tang, L. Sun, J. Bao, et al. Numerical analysis of the applicability of self-similar heat sink for cooling electrical equipments with different sizes[C]// Proceedings of the 16th International Heat Transfer Conference, Beijing, 2018. [9]W. Tang, L. Sun, J. Bao, et al. A numerical analysis of Self-Similar Heat Exchanger for cooling the heat release equipments in deep space under the ground[C]// International Conference on Geomechanics, Geo-energy and Geo-resources, Chengdu, 2018. (EI) |
授权专利 1.唐巍,孙立成,杜敏,等. 一种具有特殊分流结构的微通道热沉,专利授权号: 2018102350830,状态: 授权. 2.唐巍,孙立成,杜敏,等. 一种具有射流结构的自相似微通道热沉,专利授权号: 2018105842131,状态: 授权. |