Application of phase change materials for thermal energy storage in concentrated solar thermal power plants: a review to recent developments B Xu, P Li, C Chan Applied Energy 160, 286-307, 2015 | 676 | 2015 |
Simulation of the chemical/electrochemical reactions and heat/mass transfer for a tubular SOFC in a stack PW Li, MK Chyu Journal of Power Sources 124 (2), 487-498, 2003 | 263 | 2003 |
CFD study of liquid-cooled heat sinks with microchannel flow field configurations for electronics, fuel cells, and concentrated solar cells B Ramos-Alvarado, P Li, H Liu, A Hernandez-Guerrero Applied Thermal Engineering 31 (14-15), 2494-2507, 2011 | 203 | 2011 |
A systematic comparison of different S-CO2 Brayton cycle layouts based on multi-objective optimization for applications in solar power tower plants K Wang, MJ Li, JQ Guo, P Li, ZB Liu Applied energy 212, 109-121, 2018 | 190 | 2018 |
Analysis of heat storage and delivery of a thermocline tank having solid filler material JT Van Lew, P Li, CL Chan, W Karaki, J Stephens | 187 | 2011 |
Experimental study of geopolymer mortar with incorporated PCM R Shadnia, L Zhang, P Li Construction and building materials 84, 95-102, 2015 | 174 | 2015 |
Vapor pressure and corrosivity of ternary metal-chloride molten-salt based heat transfer fluids for use in concentrating solar power systems K Vignarooban, X Xu, K Wang, EE Molina, P Li, D Gervasio, AM Kannan Applied Energy 159, 206-213, 2015 | 171 | 2015 |
CFD study on flow distribution uniformity in fuel distributors having multiple structural bifurcations of flow channels H Liu, P Li, J Van Lew International Journal of Hydrogen Energy 35 (17), 9186-9198, 2010 | 163 | 2010 |
Extending the validity of lumped capacitance method for large Biot number in thermal storage application B Xu, PW Li, CL Chan Solar Energy 86 (6), 1709-1724, 2012 | 159 | 2012 |
Experimental study on drag-reducing channel flow with surfactant additives––spatial structure of turbulence investigated by PIV system Y Kawaguchi, T Segawa, Z Feng, P Li International Journal of Heat and Fluid Flow 23 (5), 700-709, 2002 | 153 | 2002 |
Survey and evaluation of equations for thermophysical properties of binary/ternary eutectic salts from NaCl, KCl, MgCl2, CaCl2, ZnCl2 for heat transfer and thermal storage … Y Li, X Xu, X Wang, P Li, Q Hao, B Xiao Solar Energy 152, 57-79, 2017 | 152 | 2017 |
Transport phenomena in fuel cells B Sundén, M Faghri WIT press, 2005 | 146 | 2005 |
Experimental Test of Properties of KCl–MgCl2 Eutectic Molten Salt for Heat Transfer and Thermal Storage Fluid in Concentrated Solar Power Systems X Xu, X Wang, P Li, Y Li, Q Hao, B Xiao, H Elsentriecy, D Gervasio Journal of Solar Energy Engineering 140 (5), 051011, 2018 | 144 | 2018 |
Small-scale reforming of diesel and jet fuels to make hydrogen and syngas for fuel cells: A review X Xu, P Li, Y Shen Applied energy 108, 202-217, 2013 | 138 | 2013 |
A comprehensive model for analysis of real-time optical performance of a solar power tower with a multi-tube cavity receiver Y Qiu, YL He, P Li, BC Du Applied energy 185, 589-603, 2017 | 126 | 2017 |
Numerical modeling and performance study of a tubular SOFC PW Li, K Suzuki Journal of the Electrochemical Society 151 (4), A548, 2004 | 121 | 2004 |
The performance of PEM fuel cells fed with oxygen through the free-convection mode PW Li, T Zhang, QM Wang, L Schaefer, MK Chyu Journal of Power Sources 114 (1), 63-69, 2003 | 108 | 2003 |
Experimental study and comparison of various designs of gas flow fields to PEM fuel cells and cell stack performance H Liu, P Li, D Juarez-Robles, K Wang, A Hernandez-Guerrero Frontiers in Energy Research 2, 2, 2014 | 105 | 2014 |
Basic properties of eutectic chloride salts NaCl-KCl-ZnCl2 and NaCl-KCl-MgCl2 as HTFs and thermal storage media measured using simultaneous DSC-TGA X Xu, G Dehghani, J Ning, P Li Solar Energy 162, 431-441, 2018 | 101 | 2018 |
Heat transfer enhancement to the drag-reducing flow of surfactant solution in two-dimensional channel with mesh-screen inserts at the inlet P Li, Y Kawaguchi, H Daisaka, A Yabe, K Hishida, M Maeda J. Heat Transfer 123 (4), 779-789, 2001 | 101 | 2001 |