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个人简介

学习经历: 2004年9月-2008年6月,河海大学热能与动力工程专业,工学学士学位; 2008年9月-2010年9月,河海大学水利水电工程专业,硕博连读; 2010年9月-2013年12月,河海大学水利水电工程专业,博士研究生; 2012年9月-2014年1月,加州大学,国家公派联合培养博士生; 2018年12月 - 至今, 清华大学,能源与动力工程系,博士后。 工作经历: 2013年12月-2015年8月,河海大学能源与电气学院 讲师 2015年8月-2015年9月,Universityof Queensland 地热能源中心访问学者 2016年7月-2017年3月,河海大学能源与电气学院 副教授 硕士生导师 2017年4月-至今,河海大学能源与电气学院 青年教授

研究领域

多孔介质与微/纳结构热质传递、流体流动与传热理论及其在风力发电和太阳能热发电中的应用

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

[1] P. Wang, D.Y. Liu, C. Xu, Numerical study of heat transfer enhancement in the receiver tube of direct steam generation with parabolic trough by inserting metal foams, Applied Energy, 102(0) (2013) 449-460. (ESI高被引论文) [2] P. Wang, K. Vafai, D.Y. Liu, Analysis of Radiative Effect under Local Thermal Non-Equilibrium Conditions in Porous Media-Application to a Solar Air Receiver, Numerical Heat Transfer Part a-Applications, 65(10) (2014) 931-948. (SCI) [3] P. Wang, K. Vafai, D.Y. Liu, C. Xu, Analysis of collimated irradiation under local thermal non-equilibrium condition in a packed bed, International Journal of Heat and Mass Transfer, 80(0) (2015) 789-801. (SCI中科院 Top期刊) [4] P. Wang, D.Y. Liu, C.Xu, L.Zhou, L.Xia, Conjugate heat transfer modeling and asymmetric characteristic analysis of the heat collecting element for a parabolic trough collector, International Journal of Thermal Sciences, 101(0) (2016) 68-84. (SCI) [5] P. Wang, D.Y. Liu, C. Xu, L. Xia, L. Zhou, A unified heat transfer model in a pressurized volumetric solar receivers, Renewable Energy, 99 (2016) 663-672. [6] P. Wang, K. Vafai, D.Y. Liu, Analysis of the volumetric phenomenon in porous beds subject to irradiation, Numerical Heat Transfer, Part A: Applications, (2016) 1-14. (SCI) [7] P. Wang, D.Y. Liu, Experimental and theoretical evaluation on the thermal performance of a windowed volumetric solar receiver, Energy (2017) 1-14. (SCI中科院 Top期刊) [8] P. Wang, Li, J. B., Vafai, K., Zhao, L., Zhou, L. Thermo-Fluid Optimization of a Solar Porous Absorber With a Variable Pore Structure. ASME-Journal of Solar Energy Engineering, 139(5), (2017). (SCI) [9] P. Wang, Vafai, K. Modeling and Analysis of an Efficient Porous Media for a Solar Porous Absorber. ASME-Journal of Solar Energy Engineering, 139(5), (2017). (SCI) [10] P. Wang, Li, J. B., D.Y. Liu, Partially Shaded Heat Collector Element - A Practical Approach to Performance Improvement,Renewable Energy, (2018). (SCI) [11] P. Wang, S. Shen., L. Zhou, D.Y. Liu, Modeling the Turbulent Aggregation Mechanism of Respirable Dust Pollutants under Water Spray Suppression using a Two-Fluid Model with the Population Balance Method,International Journal of Environmental Research and Public Health, (2019). (SCI) [12] P. Wang. Analysis on the collimated irradiation in a solar air receiver with porous media 17TH IAHR International conference on cooling tower and heat exchanger. Brisbane, Australia, 2015 [13] P. Wang. Variable Porosity Effect on the Thermal Performance of a SiC Ceramic Absorber, 6TH International conference on porous media and its applications in science and engineering. Hawaii, USA, 2016 [14] P. Wang Application of Field Theory on the Non-uniform Thermal Boundary Condition Analysis on a Parabolic Trough Collectors, IEEE International Conference on Power and Renewable Energy, Shanghai, 2016 [15] P. Wang. Modelling of the three-dimensional distribution of the irradiation in a gradually varied porous absorber, SolarPACES 2019. Daegu, Korea, 2019 [16] L. Zhou, D.Y. Liu, B. Karney, P. Wang, Phenomenon of White Mist in Pipelines Rapidly Filling with Water with Entrapped Air Pockets, Journal of Hydraulic Engineering, ASCE, 139(10) (2013) 1041-1051. (SCI) [17] L. Xia, D.Y. Liu, P. Wang, L. Zhou, Optimization of a seawater once-through cooling system with variable speed pumps in fossil fuel power plants, International Journal of Thermal Sciences, 91(0) (2015) 105-112. (SCI) [18] L. Xia, D. Liu, L. Zhou, P. Wang, Optimal number of circulating water pumps in a nuclear power plant, Nuclear Engineering and Design, 288 (2015) 35-41. (SCI) [19] Wang, H., L. Zhou, B. Karney, P. Wang. CFD Approach for Column Separation in Water Pipelines. Journal of Hydraulic Engineering, 142(10) (2016) (SCI). [20] Zhou, L., Wang, H., Liu, D, P. Wang, A second-order Finite Volume Method for pipe flow with water column separation. Journal of Hydro-environment Research. (2016) (SCI). [21] L. Xia, H. Gurgenci, D. Liu, P. Wang. CFD analysis of pre-cooling water spray system in natural draft dry cooling towers. Applied Thermal Engineering, 105, 1051-1060 (2016) (SCI). [22] L. Xia, H. Gurgenci, P. Wang. Water Consumption Comparison between a Natural Draft Wet Cooling Tower and a Natural Draft Hybrid Cooling Tower – an Annual Simulation for Luoyang Conditions, Heat transfer Engineering (2016) (SCI). [23] S. Guo, D. Liu, P. Wang. Real-time dynamic analysis for complete loop of direct steam generation solar trough collector. Energy Conversion & Management, 126, 573-580 (2016) (SCI). [24] L. Zhou, H. Wang, B. Karney, P. Wang, Discussion of ‘Conceptual analogy for modelling entrapped air action in hydraulic systems’ Journal of Hydraulic Engineering, ASCE, 145 (14) 1633-1641. (2017) (SCI)

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