个人简介
钱博森,男,主要从事轨道交通空气动力学、传热学以及流固耦合传热方面的研究。2018年于美国天普大学获博士学位。目前主持中南大学青年教师科研启动基金一项,企业合作项目多项,参与工程院战略咨询项目一项,省部级重点基金一项。目前已发表SCI论文10篇,并担任多个国际期刊的审稿人。
教育经历
博士,2015年9月--2018年5月,Temple University, 机械工程
硕士,2013年9月--2015年5月,Temple University,机械工程
工作经历
2018 年 8 月 - 至今 中南大学高速列车研究中心
近期论文
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(1)Bosen Qian, Fei Ren, Yao Zhao, Fan Wu, Tiantian Wang. Enhanced Thermoelectric Cooling through Introduction of Material Anisotropy in Transverse Thermoelectric Composites, Materials, 2019, 12, 2049.
(2)Bosen Qian, Yao Zhao, Fei Ren. Effect of material anisotropy on the transverse thermoelectricity of layered composites, International Journal of Energy Research, 2018;1–8.
(3)Yu Tao, Mingzhi Yang, Bosen Qian, Fan Wu, Tiantian Wang. Numerical and Experimental Study on Ventilation Panel Models in a Subway Passenger Compartment[J].Engineering,2019,5(2):329-336.
(4)Tiantian Wang, Fan Wu, Mingzhi Yang, Peng Ji, Bosen Qian. Reduction of pressure transients of high-speed train passing through a tunnel by cross-section increase, Journal of Wind Engineering and Industrial Aerodynamics, 183, 2018, 235-242,
(5)Yao Zhao, Hsin Wang, Bosen Qian, Haoqi Li, Fei Ren. Copper-polydopamine composite derived from bioinspired polymer coating, Journal of Alloys and Compounds, 742, 2018, 191-198,
(6)Yao Zhao, Hsin Wang, Bosen Qian, Haoqi Li, Fei Ren. Copper-polydopamine composite derived from bioinspired polymer coating, Journal of Alloys and Compounds, 742, 2018, 191-198,
(7)Bosen Qian, Fei Ren. Transverse thermoelectricity in fibrous compos-ite materials.Energies. 2017;10(7):1006.
(8)Zhengfeng Jia, Haoqi Li, Yao Zhao, LaszloFrazer, Bosen Qian, Eric Borguet, Fei Ren, Dmitriy A. Dikin. Electrical and mechanical properties of poly(dopamine)-modified copper/reduced graphene oxide composites, Journal of Materials Science (2017) 52: 11620
(9)Bosen Qian, Fei Ren. Cooling performance of transverse thermoelectric devices.Int J Heat Mass Transfer. 2016;95:787‐794
(10)Fei Ren, Robert Schmidt, Jong K. Keum, Bosen Qian, Eldon D. Case, Ken C. Littrell, Ke An. In situ neutron scattering study of nanoscale phase evolution in PbTe-PbS thermoelectric material[J]. Applied Physics Letters, 2016, 109(8):081903.