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Shen Du
Shen Du
School of Energy and Power Engineering, Xi'an Jiaotong University
Verified email at xjtu.edu.cn
Title
Cited by
Cited by
Year
Review of the solar flux distribution in concentrated solar power: Non-uniform features, challenges, and solutions
YL He, K Wang, Y Qiu, BC Du, Q Liang, S Du
Applied Thermal Engineering 149, 448-474, 2019
2732019
Pore-scale numerical simulation of fully coupled heat transfer process in porous volumetric solar receiver
S Du, MJ Li, Q Ren, Q Liang, YL He
Energy 140, 1267-1275, 2017
982017
Optical and radiative properties analysis and optimization study of the gradually-varied volumetric solar receiver
S Du, Q Ren, YL He
Applied Energy 207, 27-35, 2017
582017
Optimization method for the porous volumetric solar receiver coupling genetic algorithm and heat transfer analysis
S Du, YL He, WW Yang, ZB Liu
International Journal of Heat and Mass Transfer 122, 383-390, 2018
532018
Experiment and optimization study on the radial graded porous volumetric solar receiver matching non-uniform solar flux distribution
S Du, T Xia, YL He, ZY Li, D Li, XQ Xie
Applied energy 275, 115343, 2020
452020
Tomography-based determination of Nusselt number correlation for the porous volumetric solar receiver with different geometrical parameters
S Du, ZX Tong, HH Zhang, YL He
Renewable Energy 135, 711-718, 2019
412019
Numerical investigation of transient phase-change transpiration cooling based on variable properties of coolant
Y Chen, S Du, D Li, Y Gao, YL He
Applied Thermal Engineering 184, 116204, 2021
232021
Experimental and numerical analysis of the hydraulic and thermal performances of the gradually-varied porous volumetric solar receiver
S Du, ZY Li, YL He, D Li, XQ Xie, Y Gao
Science China Technological Sciences 63 (7), 1224-1234, 2020
192020
Conceptual design of porous volumetric solar receiver using molten salt as heat transfer fluid
S Du, MJ Li, YL He, S Shen
Applied Energy 301, 117400, 2021
182021
Experimental and numerical study on the reflectance losses of the porous volumetric solar receiver
S Du, MJ Li, Y He, ZY Li
Solar Energy Materials and Solar Cells 214, 110558, 2020
162020
A novel solar-driven water and electricity cogeneration integrated system by multistage vaporization enthalpy recycling
BL Bai, S Du, MJ Li, XD Xue, WQ Tao
Desalination 542, 116040, 2022
122022
Thermal and structural evaluation of composite solar receiver tubes for Gen3 concentrated solar power systems
S Du, Z Wang, S Shen
Renewable Energy 189, 117-128, 2022
112022
Electrically driven thermal infrared metasurface with narrowband emission
X Liu, L Jing, X Luo, B Yu, S Du, Z Wang, H Kim, Y Zhong, S Shen
Applied Physics Letters 121 (13), 2022
92022
Visualizing the emotional journey of a museum
S Du, E Shu, F Tong, Y Ge, L Li, J Qiu, P Guillotel, J Fleureau, F Danieau, ...
Proceedings of the 2016 EmoVis Conference on Emotion and Visualization, 7-14, 2016
92016
Pore-scale investigation on the multi-component gas adsorption and diffusion in carbon xerogel microporous structure using molecular simulation methods
JP Dai, D Li, YL He, S Du, JN Li
Microporous and Mesoporous Materials 337, 111890, 2022
72022
Advances in porous volumetric solar receivers and enhancement of volumetric absorption
YL He, S Du, S Shen
Energy Reviews, 100035, 2023
62023
STUDY ON THE THERMAL INSULATION PROPERTY OF SiO2 AEROGEL INFLUENCED BY THE PHENOLIC RESIN PYROLYSIS GAS PERMEATION
JP Dai, D Li, S Du, ZW Cao, XL Xu, YL He
Heat Transfer Research 52 (13), 2021
52021
Numerical study on the optical and radiative properties of the gradually-varied volumetric solar receiver
S Du, YL He, P Li
Energy Procedia 105, 467-472, 2017
32017
Optimization studies of transpiration cooling using porous medium with gradually-changed structure
Y He, S Du, D Li, Y Gao, Y Chen
Frontiers in Heat and Mass Transfer (FHMT) 15 (1), 2020
22020
Study on the dynamic characteristics of a concentrated solar power plant with the supercritical CO2 Brayton cycle coupled with different thermal energy storage methods
MJ Li, MJ Li, R Jiang, S Du, XY Li
Energy 288, 129628, 2024
2024
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Articles 1–20