删除或更新信息,请邮件至freekaoyan#163.com(#换成@)

中国科学技术大学热科学和能源工程系导师教师师资介绍简介-胡芃

本站小编 Free考研考试/2021-04-24




性 别:男
出生年月:1974.6
籍  贯:山东济南
一、联系方式
单位:中国科学技术大学热科学和能源工程系
地址:安徽合肥中国科学技术大学热科学和能源工程系
邮编:230027
电话:
电子邮件:hupeng@ustc.edu.cn

二、个人经历
1992年9月—1997年7月,中国科学技术大学,热科学和能源工程系,本科/学士
1997年9月—2002年7月,中国科学技术大学,热科学和能源工程系,硕博连读/博士
2001年6月—2006年1月,中国科学技术大学,热科学和能源工程系,讲师
2006年2月—2007年2月,美国国家标准与技术研究院(NIST),访问****
2007年3月—2020年5月,中国科学技术大学,热科学和能源工程系,副教授
2020年6月至今,中国科学技术大学,热科学和能源工程系,教授
2014年12月至今,任热科学和能源工程系党总支书记,期间挂职招生就业处副处长(2017年11月至2019年12月)
三、研究方向
热物性、制冷、传热传质、太阳能

四、学术兼职
中国计量测试学会热物性专业委员会委员,安徽省制冷学会理事
五、主要科研项目
1.HFO/HC、HFO/HFC/HC混合工质气液相平衡及PVTx性质研究,国家自然科学基金项目,负责人,2016~2019
2.整体方位跟踪塔式太阳能系统光学设计和优化基础研究,国家自然科学基金项目,主要成员,2016~2019
3.固固相变潜热型功能流体的热物性和传热性能研究,教育部基本科研业务费专项资金,负责人,2014~2015
4.瞬态辐射热流计,十二五预研项目,2012~2014
5.高辐照度磁分散氙气电弧等离子体太阳模拟器,中科院科研装备研制项目,主要成员,2012~2013
6.多能源互补的分布式冷然电联供系统基础研究-蓄能/释能过程与主动蓄能,国家973项目课题,主要成员,2010~2014
7.HFC/HC多元混合工质气液相平衡性质研究,国家自然科学基金项目,负责人,2010~2012
8.太阳能聚光分频光热光伏综合应用,中科院知识创新工程领域前沿项目,负责人,2009~2011
9.太阳能的分频利用和热发电中的热物理基础科学问题研究,国家自然科学基金重点项目,主要成员,2008~2011
10.沸石分子筛/泡沫铝复合吸附材料强化传热传质机理研究,国家自然科学基金青年项目,负责人,2007~2009
11.沸石分子筛复合吸附材料强化传热传质机理及优化研究,安徽省自然科学基金项目,负责人,2005~2006
12.流体热物性自动测试技术及推算新方法的研究,国家自然科学基金重点项目,主要成员,2004~2007
六、获奖或荣誉
1.2020年度中国科学院教育教学成果奖二等奖(第一完成人),2020
2.2019年度安徽省科技进步奖二等奖(第二完成人),2020
3.优秀学生工作干部,2018
4.平凡基金--教育奖,2016
5.校优秀教材二等奖,2016
6.招生进步奖(集体奖),2015
7.毕业生就业工作先进个人,2015
8.张宗植青年教师奖,2013
9.优秀青年教职工津贴,2007

七、专利
1.一种光伏电池表面镀分光膜的太阳能聚光光伏光热综合利用系统,实用新型,20**
2.一种双环热保护瞬态辐射热流计及测量方法,发明专利,.3
3.一种太阳能聚光分频光伏光热综合利用装置,实用新型,20**
4.一种分段式槽式太阳能聚光器,实用新型,77
5.一种平板型平面玻璃镜反射太阳能聚光器,实用新型,4.X
6.一种固液相变材料稳定性测试系统,发明专利,46
7.太阳能均匀光叠加反射聚光镜的设计方法,发明专利,9.8
8.复合源热泵热水机组,实用新型,3.X
9.一种吸附剂/泡沫铝复合吸附材料及其制备方法,发明专利,3.4
10.高密度太阳能中高温热能转换器,发明专利,5.4
11.利用液化天然气冷能半导体温差发电及制氢的方法与装置,发明专利,**.9
八、主讲课程
1.制冷与热泵,本科生专业选修课
2.高等工程热力学,研究生专业基础课
九、教材专著
1.《量热技术和热物性测定》胡芃,陈则韶编著,中国科学技术大学出版社,2009 (中国科学技术大学精品教材、普通高等教育“十一五”国家级规划教材、“十一五”国家重点图书)
十、近期主要论文

1.Chen, Q.; Hu, P.; Pu, J.; Zhang, T.; Wang, J. H., Interfacial interaction and roughness parameters effects on the residual stresses in DCL-TBC system with different thickness distributions. Ceramics International 2021,47, (2), 2781-2792.
2.Hu, P.; Jiang, Y.-R.; Zhang, G.-W.; Miao, Z., Thermodynamic Analysis for Supercritical Carbon Dioxide Brayton Cycle by Considering Both Thermal Efficiency and Cooler Area. Journal of Thermal Science and Engineering Applications 2021,13, (1).
3.Jiang, Y.-R.; Hu, P.; Ibrahim, A., Experimental and numerical investigation on heat transfer characteristics of supercritical R1234ze(E) cooled in horizontal tubes. International Journal of Heat and Fluid Flow 2020,85.
4.Xu, W.; Hu, P., Numerical study on thermal behavior and a liquid cooling strategy for lithium-ion battery. International Journal of Energy Research 2020,44, (9), 7645-7659.
5.Zhang, N.; Hu, P.; Chen, L.; Zhi, L., Molecular modeling of vapor-liquid equilibrium properties of HFC-161 and its mixture HFC-161+HFO-1234yf. Journal of Molecular Liquids 2020,306.
6.Zhi, L.-H.; Hu, P.; Chen, L.-X.; Zhao, G., Performance analysis and optimization of engine waste heat recovery with an improved transcritical-subcritical parallel organic Rankine cycle based on zeotropic mixtures. Applied Thermal Engineering 2020,181.
7.Zhi, L.-H.; Hu, P.; Chen, L.-X.; Zhao, G., Thermodynamic analysis of an innovative transcritical CO2 parallel Rankine cycle driven by engine waste heat and liquefied natural gas cold. Energy Conversion and Management 2020,209.
8.Zhi, L.-H.; Hu, P.; Chen, L.-X.; Zhao, G., Thermodynamic analysis of a novel transcritical-subcritical parallel organic Rankine cycle system for engine waste heat recovery. Energy Conversion and Management 2019,197.
9.Zhi, L.-H.; Hu, P.; Chen, L.-X.; Zhao, G., Parametric analysis and optimization of transcritical-subcritical dual-loop organic Rankine cycle using zeotropic mixtures for engine waste heat recovery. Energy Conversion and Management 2019,195, 770-787.
10.Chen, L. X.; Hu, P.; Sheng, C. C.; Zhang, N.; Xie, M. N.; Wang, F. X., Thermodynamic analysis of three ejector based organic flash cycles for low grade waste heat recovery. Energy Conversion and Management 2019,185, 384-395.
11.Zhi, L.-H.; Hu, P.; Chen, L.-X.; Zhao, G., Multiple parametric analysis, optimization and efficiency prediction of transcritical organic Rankine cycle using trans-1,3,3,3-tetrafluoropropene (R1234ze(E)) for low grade waste heat recovery. Energy Conversion and Management 2019,180, 44-59.
12.Chen, Q.; Hu, P.; Pu, J.; Wang, J. H., Sensitivity analysis and multi-objective optimization of double-ceramic-layers thermal barrier system. Ceramics International 2019,45, (14), 17224-17235.
13.Huang, W.; Yu, L.; Hu, P., An analytical solution for the solar flux density produced by a round focusing heliostat. Renewable Energy 2019,134, 306-320.
14.Cai, X.-D.; Zhang, N.; Chen, L.-X.; Hu, P.; Zhao, G.; Liu, M.-H., Gaseous PvTx measurements of HFO-1234yf+HFC-32 binary mixture by single-sinker magnetic suspension densimeter. Fluid Phase Equilibria 2018,460, 119-125.
15.Chen, L. X.; Hu, P.; Zhao, P. P.; Xie, M. N.; Wang, F. X., Thermodynamic analysis of a High Temperature Pumped Thermal Electricity Storage (HT-PTES) integrated with a parallel organic Rankine cycle (ORC). Energy Conversion and Management 2018,177, 150-160.
16.Hu, P.; Huang, W., Performance analysis and optimization of an integrated azimuth tracking solar tower. Energy 2018,157, 247-257.
17.Hu, P.; Zhang, N.; Chen, L.-X.; Cai, X.-D., Vapor-Liquid Equilibrium Measurements for 2,3,3,3-Tetrafluoroprop-1-ene + Butane at Temperatures from 283.15 to 323.15 K. Journal of Chemical and Engineering Data 2018,63, (5), 1507-1512.
18.Chen, L. X.; Hu, P.; Zhao, P. P.; Xie, M. N.; Wang, D. X.; Wang, F. X., A novel throttling strategy for adiabatic compressed air energy storage system based on an ejector. Energy Conversion and Management 2018,158, 50-59.
19.Chen, L. X.; Xie, M. N.; Zhao, P. P.; Wang, F. X.; Hu, P.; Wang, D. X., A novel isobaric adiabatic compressed air energy storage (IA-CAES) system on the base of volatile fluid. Applied Energy 2018,210, 198-210.
20.Zhang, G.-W.; Hu, P.; Chen, L.-X.; Liu, M.-H., Experimental and simulation investigation on heat transfer characteristics of in-tube supercritical CO2 cooling flow. Applied Thermal Engineering 2018,143, 1101-1113.
21.Zhi, L.-H.; Hu, P.; Chen, L.-X.; Zhao, G., Viscosity prediction for six pure refrigerants using different artificial neural networks. International Journal of Refrigeration-Revue Internationale Du Froid 2018,88, 432-440.
22.Chen, L.-X.; Hu, P.; Sheng, C.-C.; Xie, M.-N., A novel compressed air energy storage (CAES) system combined with pre-cooler and using low grade waste heat as heat source. Energy 2017,131, 259-266.
23.Hu, P.; Cai, X.-D.; Chen, L.-X.; Xu, H.; Zhao, G., pvT Properties of 2,3,3,3-Tetrafluoroprop-1-ene (HFO-1234yf) in the Gaseous Phase. Journal of Chemical and Engineering Data 2017,62, (10), 3353-3359.
24.Hu, P.; Zhang, G.-W.; Chen, L.-X.; Liu, M.-H., Theoretical Analysis for Heat Transfer Optimization in Subcritical Electrothermal Energy Storage Systems. Energies 2017,10, (2).
25.Zhang, G.; Hu, P.; Liu, M., Thermal performances of non-equidistant helical-coil phase change accumulator for latent heat storage. Science China-Technological Sciences 2017,60, (5), 668-677.
26.Hu, P.; Zhao, P.-P.; Zhang, G.-W.; Wang, X.-H., Thermal properties of Co-60 irradiated crosslinked high density polyethylene. Solar Energy Materials and Solar Cells 2016,149, 55-59.
27.Hu, P.; Zhu, W.-B.; Chen, L.-X.; Cai, X.-D.; Chen, Z.-S., Vapor-liquid equilibria measurements of 1,1,1,2-tetrafluoroethane (HFC-134a)+2,3,3,3-tetrafluoroprop-1-ene (HFO-1234yf) + isobutane (HC-600a) ternary system. Fluid Phase Equilibria 2016,414, 111-116.
28.Huang, W.; Xu, Q.; Hu, P., Coupling 2D thermal and 3D optical model for performance prediction of a parabolic trough solar collector. Solar Energy 2016,139, 365-380.
29.Sheng, C.; Hu, P.; Cheng, X., Design and calibration of a novel transient radiative heat flux meter for a spacecraft thermal test. Review of Scientific Instruments 2016,87, (6).

相关话题/科学 能源