姓名: |
李雪强 |

|
性别: |
男 |
职称: |
副教授 |
职务: |
无 |
专业: |
热能工程 |
导师情况: |
硕士生导师 |
所在机构: |
新能源科学与工程系 |
办公地点: |
天津商业大学4号实验楼 |
邮箱: |
xqli@tjcu.edu.cn |
办公电话: |
18902099200 |
主要经历:
|
2009.09~2013.06,河北建筑工程学院,本科 |
2013.09~2015.06,天津商业大学,硕士 |
2015.09~2019.06,天津大学,博士 |
2017.02~2018.02,瑞典梅拉达伦大学,博士联合培养 |
2019.07~2022.12,天津商业大学,讲师 |
2023.01~至今,天津商业大学,副教授 |
2024.07~2024.12,天津市河东区发改委(挂职) |
2021.01~至今,天津提尔科技有限公司,技术顾问 |
主要研究方向: |
1、数据中心冷却技术 |
2、热管设计与优化 |
3、强化换热 |
主要讲授课程: |
1、《工程热力学》 |
2、《高等工程热力学》 |
3、《新能源热泵制冷技术》 |
主要学术兼职: |
1、《制冷与空调》青年编委 |
2、《Applied energy》等期刊审稿人 |
主要学术成就: |
教学获奖: |
1、2020年教学质量奖,1/1 |
科研获奖: |
1、2024年入围“科创中国”天津U30青年创业榜单 |
主要科研项目: |
主持的主要纵向项目: |
1、省部级, 单相浸没液冷关键技术研究及其在超算数据中心的应用(2024.10~2026.09) |
2、局级,非毛细芯内相变回路热管的运行机制研究,2022.01~2024.12 |
主持的主要横向项目: |
1、 天津提尔科技有限公司,液冷智算中心及余热回收技术研发,2024.10~2026.09 |
参与的主要纵向项目: |
1、国家级, 质子交换膜燃料电池膜电极组件界面传输机理与功能组分协同梯度化的多尺度研究,2022.01~2025.12 |
2、国家级,杂质对二氧化碳低温纯化过程中多流股换热的影响机理,2018.01~2021.12 |
代表性成果: |
代表性期刊论文: |
1、Xueqiang Li, Zhongyao Zhang, Xiaohan Zhao, Shengchun Liu, Hailong Li, Yabo Wang, How to select cooling methods for Li-ion batteries? –A review from the perspective of heat flux, Journal of Energy Storage, 108 (2025) 115072. |
2、Shengchun Liu, Shentong Guo, Haiwang Sun, Zhiming Xu, Xueqiang Li*, Xinyue Wang, Evaluation of energy, economic, and pollution emission for single-phase immersion cooling data center with different economizers, Applied Thermal Engineering, 260 (2025) 125049. |
3、Xueqiang Li, Shentong Guo, Haiwang Sun, Shen Yin, Shengchun Liu, Zhiming Wang, Experimental study of the performance of liquid cooling tank used for single-phase immersion cooling data center, Case Studies in Thermal Engineering, 63 (2024) 105386. |
4、Xueqiang Li, Qihui Wang, Xinyu Huang, Xiaohu Yang, Bengt sunden, Melting and solidification performance of latent heat thermal energy storage system under flip condition, International Journal of Heat and Mass Transfer, 236 (2025) 126370. |
5、Shuai Yang, Xu Luo, Xueqiang Li*, Victor Nian, Shengchun Liu, Yabo Wang, Hailong Li, Comparing different battery thermal management systems for suppressing thermal runaway propagation, Journal of Energy Storage, 2024 (101): 114005. |
6、Xueqiang Li, Xiaohan Zhao, Xiaodan Shi, Zhongyao Zhang, Chengming Zhang, Shengchun Liu, Developing a machine learning model for heat pipes considering different input features, International Journal of Thermal Sciences, 2025 (208): 109398. |
7、Shuai Yang, Xiaohan Zhao, Victor Nian, Xueqiang Li*, Hailong Li, Shengchun Liu, Economic feasibility of using fuel cells as backup power supply in data centers, Sustainable Energy Technologies and Assessments, 2024 (69): 103892. |
8、Shengchun Liu; Shuai Zhang; Xueqiang Li*; Xiuzhen Hu; Qihui Wang; Technical feasibility study of open refrigerated display cabinet with independent air curtain, Thermal Science and Engineering Progress, 2024 (53): 102723. |
9、Xueqiang Li *, Qihui Wang, Xinyu Gao, Gao Shu, Xiaohu Yang, Bengt sunden, Influence of supergravity and tilted condition on melting behavior in a thermal storage tank, Applied Thermal Engineering, 2024, (250): 123526. |
10、Shengchun Liu, Zhiming Xu, Zhiming Wang, Xueqiang Li*, Haiwang Sun, Xinyu Zhang, Haoran Zhang, Optimization and comprehensive evaluation of liquid cooling tank for single-phase immersion cooling data center, Applied Thermal Engineering, 2024, (245): 122864. |
11、Yabo Wang, Yang Zheng, Xiuzhen Hu, Shengchun Liu, Xueqiang Li*, Qihui Wang, Impact of condensate water recycling on the performance of open refrigerated display cabinet, Case Studies in Thermal Engineering, 2024, (54): 104022. |
12、Xueqiang Li, Song Qin, Hailong Li, Shengchun Liu, Yabo Wang, Key factors affecting the performance of the multi-stream heat exchanger for CO2 condensation, International Journal of Thermal Sciences, 2023, (192): 108377. |
13、Xueqiang Li, Zhiming Xu, Shengchun Liu, Xinyu Zhang, Haiwang Sun, Server performance optimization for single-phase immersion cooling data center, Applied Thermal Engineering, 2023 (224), 120080. |
14、Yang Gao, Zhiming Xu, Endi Zhai, Kunfeng Liang, Ran Zhao, Hailong Li, Lei Wang, Shengchun Liu, Xueqiang Li, Cooling pitch cabinets in wind turbines using a pulsating heat pipe: A case study, Case Studies in Thermal Engineering, 2023 (50): 103461. |
15、Xueqiang Li, Zhongyao Zhang, Qihui Wang, Xiaohu Yang, Hooman Kamel, Shengchun Liu, Performance comparison between data centers with different airflow management technologies, Heat Transfer Engineering, 2023. |
16、Xueqiang Li, Huan Liu, Zhongyao Zhang, Xiuzhen Hu, Shengchun Liu, Yonghui Guo, Performance optimization of open refrigerated display cabinet based on response surface method, Applied Thermal Engineering, 2022 (219), 119608. |
17、Xueqiang Li, Wenlei Song, Qihui Wang, Hailong Li, Xiaofeng Ding, Shengchun Liu, Optimizing cooling electronic chips at high altitude with consideration of solar radiation, International Journal of Thermal Science, 2022 (183): 107879. |
18、Xueqiang Li, Zhongyao Zhang, Huan Liu, Xiuzhen Hu, Shengchun Liu*, Zhiming Xu, Performance of an open refrigerated display cabinet with two air curtains, Applied Thermal Engineering, 2022 (212): 118549. |
19、Xueqiang Li, Zhongyao Zhang, Yabo Wang*, Kai Zhu, Shengchun Liu, Characteristic of temperature oscillation during the operation of loop heat pipe enhanced by pressure head of evaporation, Heat and Mass Transfer, 2022 (58): 1145-1155. |
20、Yabo Wang, Zhao Rao, Shengchun Liu, Xueqiang Li, Hailong Li*, Rui Xiong, Evaluating the performance of liquid immersing preheating system for Lithium-ion battery pack, Applied Thermal Engineering, 2021 (190): 116811. |
21、Xueqiang Li, Bingqing Xu, Guodong Zhang, Yabo Wang*, Baomin Dai, Kai Zhu, Shengchun Liu, Experimental investigation on the impact of pressure head of evaporation during the loop heat pipe operation, Applied Thermal Engineering, 2021 (185): 116455. |
22、Xueqiang Li, Kai Zhu, Hailong Li*, Xiaoqing Chen, Yabo Wang, Performance comparison regarding loop heat pipe with different evaporator structures, International Journal of Thermal Sciences, 2019 (136): 86-95. |
23、Kai Zhu, Xueqiang Li, E C Pietro, Hailong Li*, Jinyue Yan, Techno-economic feasibility of integrating energy storage systems in refrigerated warehouses, Applied Energy, 2018 (216): 348-357. |
24、Shengchun Liu, Xueqiang Li, Mengjie Song*, Hailong Li, Zhili Sun, Experimental investigation on drying performance of an existed enclosed fixed frequency air source heat pump drying system, Applied Thermal Engineering, 2018 (130): 735-744. |
25、Kai Zhu, Xueqiang Li, Hailong Li*, Xiaoqing Chen, Yabo Wang, Experimental and theoretical study of a novel loop heat pipe, Applied Thermal Engineering, 2018 (130): 354-362. |
26、李雪强, 赵萧涵, 张钟垚, 刘圣春, 张成明, 李佳欣, 电机散热中毛细芯热管等效导热系数演变规律实验研究, 南京航空航天大学学报, 2024, 56(5): 847-853. |
27、李雪强,江涛,张鑫宇,张柱,刘圣春,王雅博,诸凯,数据中心用并联水冷散热器流量分配研究,热科学与技术,2024,23(3): 225-232. |
28、赵萧涵, 刘圣春, 李雪强, 张钟垚, 李海龙, U型重力热管启动过程中压力和温度的演变规律, 制冷学报, 2024, 45(6): 106-113. |
29、刘圣春, 徐智明, 李雪强, 张鑫宇, 孙海旺, 单相浸没式液冷箱体关键参数的仿真研究, 制冷学报, 2023, 44(2): 159-166. |
30、刘圣春, 张钟垚, 王冕同, 李雪强, 环路热管蒸发腔内池沸腾的模拟研究, 流体机械, 2023, 51(2): 48-55. |
31、王雅博, 郑洋, 李雪强*, 刘圣春, 王棋卉, 工况参数对冷藏陈列柜性能影响的研究, 家电科技, 2022, 6(419): 103-109. |
32、刘圣春, 张钟垚, 徐冰清, 李雪强*, 徐智明. 不同蜂窝蓄热体的性能对比及能耗分析, 热科学与技术, 2022, 21(3): 260-269. |
33、张柱, 张鑫宇, 王璇, 李婷, 李雪强*, 刘圣春, 吴蔚兰, 防止冷库设备层结露的措施探讨, 冷藏技术, 2022, 45(01): 27-30+26. |
34、李雪强, 边雅丽, 张钟垚, 徐冰清, 江涛, 王雅博*, 诸凯, 射流式水冷散热器关键参数对性能影响的模拟研究, 制冷学报, 2021, 42(06): 131-139. |
35、张柱, 王棋卉, 郭永慧, 李婷, 李雪强, 刘圣春, 吴蔚兰, 普通仓库改造为冷库的设计要点, 冷藏技术, 2021, 44(04): 31-35+39. |
36、董贝贝, 诸凯*, 李雪强, 王雅博, 李海龙, 突出气相压头的环路热管启动特性实验与可视化研究, 制冷学报, 2020, 41(01): 118-123. |
代表性专利: |
1、液冷服务器集群及数据中心液冷系统,发明专利 CN 114554762 B,2025-02-07 |
2、浸没式液冷充电模块,发明专利,CN119012660B,2025-01-03 |
3、充电模块浸没式液冷箱,发明专利, CN119012658B, 2025-01-10 |
4、浸没式电池组热管理系统,发明专利,CN116470189B, 2023-08-18 |
5、一种浸没液冷工作站,发明专利,CN116400790B, 2023-08-15 |
6、低压直流供电浸没液冷人工智能服务器,发明专利,CN114860051B,2022-12-23 |
7、数据中心冷却机柜级数据中心冷却装置,实用新型,CN218042263U,2022.12.13 |
8、冷却机柜及数据中心冷却系统,实用新型,CN217825840U,2022.11.15 |
9、液冷箱体及液冷机柜,实用新型,CN218042264U,2022.12.13 |
10、液冷机柜及数据中心冷却系统,实用新型,CN217849961U,2022.11.18 |
11、机柜及数据中心冷却装置系统,实用新型,CN217849960U,2022.11.18 |
12、环路热管及冷却系统,实用新型,CN 216745632 U,2022.06.14 |
13、液冷服务器集群及数据中心液冷系统,实用新型,CN 216775263 U,2022.06.17 |
14、散热装置及机柜,实用新型,2020.4.20,CN213029058U. |