[1] |
Baocun DU, Lijuan HUANG, Yonggang LEI, Chongfang SONG, Fei WANG.
Dynamic study on the thermal and stress performances of the molten salt packed-bed thermal storage tank
[J]. Energy Storage Science and Technology, 2022, 11(7): 2141-2150.
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[2] |
Hongtao LI, Shuai ZHANG, Xudong LI, Yunguang JI, Mingxu SUN, Xin LI.
Application of single tank energy storage and heat exchange system in hot air non-woven fabric process
[J]. Energy Storage Science and Technology, 2022, 11(7): 2250-2257.
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[3] |
LIU Hangxin, CHEN Xiantao, SUN Qiang, ZHAO Chenxi.
Cycle performance characteristics of soft pack lithium-ion batteries under vacuum environment
[J]. Energy Storage Science and Technology, 2022, 11(6): 1806-1815.
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[4] |
Hui WANG, Jun LI, Peiwang ZHU, Jian WANG, Chunlin ZHANG.
Hundred-megawatt molten salt heat storage system for deep peak shaving of thermal power plant
[J]. Energy Storage Science and Technology, 2021, 10(5): 1760-1767.
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[5] |
Cong HE, Yuanwei LU, Wenbing SONG, Xiaotong CHEN, Yuting WU, Zhansheng FAN.
The phase diagram prediction and experimental study of ternary same cation systems
[J]. Energy Storage Science and Technology, 2021, 10(5): 1729-1734.
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[6] |
Xiaotong CHEN, Yuanwei LU, Cong HE, Wenbing SONG, Yuting WU, Guichun YANG.
Heat-release stability of single tank molten salt heat storage system based on continuous regulation of heat exchange area
[J]. Energy Storage Science and Technology, 2021, 10(5): 1753-1759.
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[7] |
Yuting WU, Subudao MING, Cancan ZHANG, Yuanwei LU.
Experimental research of the thermophysical properties of ternary mixed carbonate molten salts
[J]. Energy Storage Science and Technology, 2021, 10(4): 1292-1296.
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[8] |
Yaxuan XIONG, Hui ZHANG, Yuting WU, Yulong DING.
Effect of nanoparticles on surface tension and density of binary nitrate
[J]. Energy Storage Science and Technology, 2021, 10(4): 1297-1304.
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[9] |
Peng SHENG, LI XU, Guangyao ZHAO, Yan HAN, Yuting WU.
Preparation and thermophysical properties of novel mixed nitrate molten salts
[J]. Energy Storage Science and Technology, 2021, 10(1): 170-176.
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[10] |
Haihua LUO, Qiang SHEN, Junguang LIN, Yanmei ZHANG, Yunke XU.
Development of new low melting point mixed molten salt heat storage material
[J]. Energy Storage Science and Technology, 2020, 9(6): 1755-1759.
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[11] |
Zhao LI, Baorang LI, Liu CUI, Xiaoze DU.
Stability of the thermal performances of molten salt-based nanofluid
[J]. Energy Storage Science and Technology, 2020, 9(6): 1775-1783.
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[12] |
ZHANG Chunyu, GUO Hang, WU Yuting, ZHANG Cancan, YE Fang, MA Chongfang.
Forced convection heat transfer characteristics in a circular tube with low-melting-point quaternary nitrate
[J]. Energy Storage Science and Technology, 2020, 9(4): 1091-1097.
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[13] |
ZHANG Cancan, WU Yuting, LU Yuanwei.
Preparation and comparative analysis of thermophysical properties on low melting point mixed nitrate molten salts
[J]. Energy Storage Science and Technology, 2020, 9(2): 435-439.
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[14] |
SANG Lixia, XU Yongwang, LI Feng, ZHANG Yating, MA Wentong, CHEN Xu, WANG Hao.
Preparation of form-stable carbonates/magnesium oxide-flake graphite composite thermal storage material and its thermal conductivity
[J]. Energy Storage Science and Technology, 2019, 8(5): 886-890.
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[15] |
YANG Cenyu, MENG Qiang, WANG Le, CHEN Mengdong, HU Xiao, XU Guizhi.
Numerical simulation of mixed convective heat transfer of a molten salt in a square tube with a thermally conductive wall
[J]. Energy Storage Science and Technology, 2019, 8(4): 764-771.
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