SCI论文
铁路列车超低温热泵蒸汽喷射压缩机的CFD研究与优化 发表于国际期刊 International Journal of Refrigeration 2026.03.26
Che Wang*, Yifeng Ding, Qihang Wu, Pengfei He, Haode Wang, Enhao Zhang, Jianhua Wu, CFD study and optimization of a vapor injection compressor for the ultra low temperature heat pump in railway train [NSFC52406026]基于新型CFD方法对压缩机间隙中的两相薄膜流的制冷剂/润滑油空化进行模拟 发表于国际期刊 International Journal of Refrigeration 2026.03.26
Jiachen Li, Hui Zhang , Yongxiang Guo, Tian Zhang, Zibo Zhao, Che Wang*, Jianhua Wu,Two-phase thin film flow in the compressor’s clearance considering gaseous cavitation of refrigerant/oil based on a novel CFD approach [NSFC52406026]回热近等温压缩二氧化碳制冷循环中压力回收的优势:理论研究 发表于国际期刊 Case Studies in Thermal Engineering 2025.11.26
Che Wang*, Jianhua Wu. Advantages of Pressure Recovery in the Regeneration Nearly-Isothermal Compression CO2 Refrigeration Cycle: A Theoretical Study [NSFC52406026]高速条件下 R290 旋转式压缩机供油特性研究 发表于国际期刊 International Journal of Refrigeration 2025.06.04
Jie Lin , Ran Zhang , Che Wang* , Jianhua Wu* , Liangyou Zhu. Study on the oil supply characteristics of R290 rotary compressors under high-speed conditions [NSFC52406026]涡旋不对称特征对电动汽车涡旋压缩机热力学过程和动力特性的影响 发表于国际期刊 International Journal of Refrigeration
Zibo Zhao , Che Wang* , Jianhua Wu*. Influence of asymmetrical features of scroll plates on thermodynamic processes and orbiting scroll dynamic characteristics of electric vehicle scroll compressors基于机理模型提高高铁超低温热泵性能 发表于国际期刊Applied Thermal Engineering
Wang, Che*, Qihang Wu, Jie Zhang, Zibo Zhao, Hongyan Shi, and Jianhua Wu. "Enhancing ultra-low-temperature heat pump performance for high-speed trains using mechanism-based model." Applied Thermal Engineering (2025): 126021. [NSFC52406026]LGWP 制冷剂喷油近等温压缩的蒸汽压缩循环理论研究
C Wang*, B Lei, Z Zhang, Q Liu, J Wu. Theoretical study on the vapor compression cycles with nearly isothermal compression for various LGWP refrigerants using oil injection. Applied Thermal Engineering, 125510, 2025 [NSFC52406026]高铁用热泵低温启动和除霜动态特性及其对卧式涡旋压缩机可靠性
C. Wang*, Q. Wu, J. Zhang, Z. Zhang, J. Wu, Startup and defrosting dynamic characteristics of the heat pump and its influence on horizontal scroll compressor reliability of high-speed train, Case Studies in Thermal Engineering (2024) 105732. https://doi.org/10/g8xfsz. [NSFC52406026]制冷剂/油溶解度对加压制冷剂环境中挤压膜特性的影响
C. Wang*, H. Zhong, B. Lei, Z. Zhang, J. Wu, Effect of refrigerant-oil solubility on the characteristics of squeeze film in pressurized refrigerant environments, International Journal of Refrigeration (2024). https://doi.org/10/g8xfs2. [NSFC52406026]基于 CFD/CSM 模拟的涡旋压缩机涡旋盘径向和侧面泄漏间隙的接触和尺寸研究
Wang C*, Zhang S, Zhao Z, et al. Study on the contact and size of radial and flank leakage gaps of scrolls in a scroll compressor with CFD/CSM simulations[J]. International Journal of Refrigeration, 2023, 149: 73-82.房间空调器启动及除霜过程中R290/PAG油流动及迁移特性可视化研究
Wang C*, Wu J, Lei B, et al. Visualization study on the flow and migration characteristics of R290/PAG oil in a room air conditioner during startup and defrosting processes[J]. International Journal of Refrigeration, 2023, 150: 149-157.
超高速旋转压缩机排气阀研究:基于实验和 FSI 模拟的研究 被International Journal of Refrigeration收录发表 10/20/2024
低GWP制冷剂压缩机热力学性能和压缩特性分析:实验研究和0-D/3-D模拟 被Applied Thermal Engineering收录发表 09/30/2024
Zhong H, Wang C, Zhang L, et al*. Thermodynamic performance and compression characteristics analysis of low GWP refrigerant in compressors: Experimental investigation and 0-D/3-D simulation[J]. Applied Thermal Engineering, 2024: 124491.高速R290滚动转子压缩机相关研究被International Journal of Refrigeration收录发表 07/25/2024
Zhong H, Lei B, Zhang L, et al*. Performance research and improvement of ultra-high-speed R290 rotary compressor[J]. International Journal of Refrigeration, 2024.车用空调电动涡旋压缩机制冷工况电机及变频器温度分布研究 被国际期刊International Journal of Refrigeration收录发表
Zhang S, Wang C, Zhong H, et al*. Study on the temperature distribution of motor and inverter in an electric scroll compressor for vehicle air conditioning under refrigeration conditions[J]. International Journal of Refrigeration, 2023, 154: 111-124.R290分体热泵启动过程动态特性仿真与实验研究 被国际期刊Applied Thermal Engineering收录发表
Du Y, Lin J, Wu J*, et al. Simulation and experimental study on dynamic characteristics of R290 split heat pump during start-up[J]. Applied Thermal Engineering, 2024, 236: 121564.
涡旋压缩机中带有泄压槽的轴颈轴承系统的弹流体动力润滑:模拟与实验
Wang C, Wu J, Cheng J, et al*. Elasto-hydrodynamic lubrication of the journal bearing system with a relief groove in the scroll compressor: Simulation and experiment[J]. Tribology International, 2022, 165: 107252.不同环境温度下R290房间空调器启动特性实验研究
Wang C, Wu J*, Du Y, et al. Experimental study on startup characteristics of a R290 room air conditioner under various ambient temperatures[J]. International Journal of Refrigeration, 2020, 109: 37-44.系统控制策略对R290房间空调器启动特性的影响
Wu J, Li J, Wang C*, et al. Effects of system control strategies on startup characteristics of R290 room air conditioners[J]. Applied Thermal Engineering, 2020, 172: 115166.
中文论文
电动汽车涡旋压缩机涡旋腔非对称压力分布成因及特性分析 被流体机械 收录发表 20251031
高转速R290旋转压缩机排气结构改进——基于p-V实验和三维流固耦合仿真 压缩机技术 20250222
转子式压缩机泵体压插管力与螺钉拧紧力矩关系的分析与验证 流体机械 20241128
型线偏置对涡旋压缩机动盘尺寸和动力学特性的影响 被流体机械 收录发表 20230718
发明专利
| 序号 | 申请号 | 申请日 | 公开/授权号 | 公开/授权日 | 专利名称 | 发明人 |
| 1 | CN202211730437.1 | 2022/12/30 | CN115853768B | 2026/2/10 | 一种涡旋压缩机的涡旋体厚度修正方法及涡旋压缩机 | 王澈;吴建华;张帅;赵子博 |
| 2 | CN202211737484.9 | 2022/12/30 | CN116026622B | 2025/12/19 | 一种电动汽车二次回路热泵系统测试装置和方法 | 王澈;吴建华;赵子博;张帅 |
| 3 | CN202423011908.0 | 2024/12/6 | CN223551668U | 2025/11/14 | 一种压缩机内润滑油溶解度和粘度的测量装置 | 王澈;吴建华 |
| 4 | CN202310625626.0 | 2023/5/30 | CN116428182B | 2025/9/19 | 一种无油涡旋机械 | 王澈;吴建华 |
| 5 | CN202422998127.9 | 2024/12/5 | CN223435297U | 2025/10/14 | 一种双流体的制冷和热泵循环系统及流动换向传热装置 | 王澈;吴建华 |
| 6 | CN201811300585.3 | 2018/11/2 | CN109140817B | 2023/7/18 | 一种使用加热装置的空调器及其控制方法 | 吴建华;王澈;杜彦君 |
| 7 | CN201811300554.8 | 2018/11/2 | CN109140844B | 2023/6/2 | 使用竖直U形装置防止节流装置油堵的空调器及运行方法 | 吴建华;杜彦君;王澈 |
| 8 | CN201811300292.5 | 2018/11/2 | CN109140843B | 2023/5/30 | 使用排气节流防止节流装置油堵的空调器及运行方法 | 吴建华;杜彦君;王澈 |
| 9 | CN201910395300.7 | 2019/5/13 | CN110207432B | 2023/5/30 | 一种使用截止阀的空调器及运行方法 | 吴建华;杜彦君;王澈 |
软著
用于涡旋压缩机设计的涡旋压缩机模拟软件 [简称:涡旋压缩机模拟软件] V2.4 获批软著 2023SR0146145




