研究成果
一、科研经历
10. 浙江理工大学“青年拔尖人才培育计划”入选人员,2021.01起,主持,在研
9. 企业横向项目,电动汽车用换热系统核心部件的结构开发与计算能力提升,100万,2020.12-2022.12,排名1/7,在研
8. 国家自然科学基金面上项目,基于能量变化率的液体火箭发动机离心泵弱可压流动特性研究,60万,2020.01-2023.12,排名1/10,在研
7. 浙江省重点研究计划项目,高能耗行业节能技术研究及应用-流程工业用泵与透平机组节能与能量回收关键技术研发及工程示范,200万,2020.01~2022.12,排名1/16,在研
6. 机械2019优势特色学科项目,基于能量变化率的液体火箭发动机离心泵弱可压流动特性研究,30万,2019.06~2020.12,排名1/1,在研
5. 国家自然科学基金青年项目,11502236,含空气离解反应的高超声速湍流边界层特性研究,2016-01至2018-12,25.6万,排名1/7,结题
4. 浙江省自然科学基金青年项目,LQ16E090005,基于非定常分离流动的离心叶轮旋转失速特性研究,2016-01至2018-12,5万,排名1/7,结题
3. 浙江省创新团队子项目,基于能量梯度方法的叶片型线设计,2015-01至2016-12,30万,排名1/4,结题
2. 企业横向项目,14020127-J,超声速横向射流的高精度数值模拟及分析,2014-06至2015-06,20万,排名1/7,结题
1. 浙江省机电院重点实验室开放基金,高速旋转叶轮流道内部流动稳定性研究,2015-04至2017-03,2.5万,排名1/5,结题
二、发表论文
1. Xiaoping Chen(*), Xiaopeng Li, Hua-Shu Dou, and Zuchao Zhu. Effects of variable specific heat on energy transfer in a high-temperature supersonic channel flow, Journal of Turbulence, 2018, 19(5): 365~389.
2. Xiaoping Chen(*), Heuy-Dong Kim, Hua-Shu Dou, and Zuchao Zhu. Direct numerical simulation of high-temperature supersonic turbulent channel flow of equilibrium air, AIP Advances, 2018, 8: 115325.
3. Xiaoping Chen and Fei Fei(*), Effects of Dimensional Wall Temperature on Reynolds Stress Budgets in a Supersonic Turbulent Channel Flow with Thermally Perfect Gas, International Journal of Computational Fluid Dynamics, 2018, 32: 315-325.
4. Xiaoping Chen, Xinliang Li(*), and Zuchao Zhu. Effects of dimensional wall temperature on velocity-temperature correlations in supersonic turbulent channel flow of thermally perfect gas, SCIENCE CHINA Physics, Mechanics & Astronomy, 2019, 62(6): 064711.
5. Xiaoping Chen, Zuchao Zhu(*), Hua-Shu Dou, and Yi Li. Large eddy simulation of energy gradient field in a centrifugal pump impeller, Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 2019, 233(11): 4047-4057.
6. Xiaoping Chen, Hua-Shu Dou, Qi Liu, Zuchao Zhu, and Wei Zhang(*). Comparative study of Reynolds stress budgets of thermally and calorically perfect gases for high-temperature supersonic turbulent channel flow, Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering, 2019, 233(11): 4222-4234.
7. Junming Zhang, Xiaoping Chen(*), Yi Li. Velocity-temperature correlations in high-temperature supersonic turbulent channel flows for two gas models. Modern Physics Letters B, 2019, 33(21), 1950247.
三、出版专著
1. 朱祖超,林培锋,陈小平. 离心泵内部流动数值分析及应用,机械工程出版社,2019