Folgen
Shen Du
Shen Du
School of Energy and Power Engineering, Xi'an Jiaotong University
Bestätigte E-Mail-Adresse bei xjtu.edu.cn
Titel
Zitiert von
Zitiert von
Jahr
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
Das System kann den Vorgang jetzt nicht ausführen. Versuchen Sie es später erneut.
Artikel 1–20