1 |
Molten Salt Storage for Power Generation Bauer T, Odenthal C, Bonk A Chemie Ingenieur Technik, 93(4), 534, 2021 |
2 |
Thermal energy storage characteristics of binary molten salt nanofluids: Specific heat and latent heat Lee D, Jo B International Journal of Energy Research, 45(2), 3231, 2021 |
3 |
Experimental and numerical investigations of latent thermal energy storage using combined flat micro-heat pipe array-metal foam configuration: Simultaneous charging and discharging Liang L, Diao YH, Zhao YH, Wang ZY, Chen CQ Renewable Energy, 171, 416, 2021 |
4 |
A semi-analytical solution for time-varying latent heat thermal energy storage problems Safdari M, Sadeghzadeh S, Ahmadi R International Journal of Energy Research, 44(4), 2726, 2020 |
5 |
Photo-to-thermal conversion and energy storage of lauric acid/expanded graphite composite phase change materials Yang L, Yuan YP, Zhang N, Dong YF, Sun YF, Ji WH International Journal of Energy Research, 44(11), 8555, 2020 |
6 |
Melting and solidification performance in two horizontalshell-and-tubeheat exchangers with different structures Leng ZY, Yuan YP, Cao XL, Wang J, Haghighat F International Journal of Energy Research, 44(14), 11288, 2020 |
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Thermal performance of triplex-tube latent heat storage exchanger: simultaneous heat storage and hot water supply via condensation heat recovery Cao XL, Zhang N, Yuan YP, Luo XL Renewable Energy, 157, 616, 2020 |
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Numerical and experimental investigations of latent thermal energy storage device based on a flat micro-heat pipe array-metal foam composite structure Liang L, Diao YH, Zhao YH, Wang ZY, Bai FW Renewable Energy, 161, 1195, 2020 |
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Graphite foam infiltration with mixed chloride salts as PCM for high-temperature latent heat storage applications Lan H, Dutta S, Vahedi N, Neti S, Romero CE, Oztekin A, Nappa M, Ruales R Solar Energy, 209, 505, 2020 |
10 |
Numerical investigation of the thermal performance enhancement of latent heat thermal energy storage using longitudinal rectangular fins and flat micro-heat pipe arrays Diao YH, Liang L, Zhao YH, Wang ZY, Bai FW Applied Energy, 233, 894, 2019 |