Most concrete employs organic phase change materials (PCMs), although there are different types available for more specialised use. Organic PCMs are the material of choice for …
C Li, B Zhang, B Xie, X Zhao, J Chen - Energy Conversion and …, 2020 - Elsevier
Sodium sulfate decahydrate (SSD, Na 2 SO 4· 10H 2 O) is a suitable candidate for thermal storage applications as its high thermal latent heat and desirable phase change …
Y Shen, S Liu, C Zeng, Y Zhang, Y Li, X Han… - … and Building Materials, 2021 - Elsevier
Phase change material concrete as a new building envelope has been widely used in passive building energy conservation, but less research has been done for it as a heat …
M Xu, X Wang, Z Wang, P Zhao, Y Dai - Applied Thermal Engineering, 2021 - Elsevier
Energy storage system plays a key role in the network grid with the increasing penetration of intermittent renewable energy. Compared with the compressed air energy storage system …
The energy storage systems are one of the essential components of the renewable energy systems to manage the energy supply and demand. The integration of a noval concrete …
C Liu, H Yang - Applied Thermal Engineering, 2022 - Elsevier
This paper focusses on the numerical investigation of a concrete thermal energy storage (CTES) system using air as heat transfer fluid (HTF). To reduce the number of simulations …
In this study, the paraffin wax's melting dynamics in a multi-tube latent heat thermal energy storage system are investigated. The performance of ten arrangements of five heat transfer …
High-temperature thermal energy storage (TES) systems improve the reliability and performance of solar-thermal utilization systems due to their ability to levelize the gap …
The primary objective of this study is to develop and evaluate the performance of a latent heat storage (LHS) system. A tube-in-tube heat exchanger configuration was used to design …