Phase change materials;
Latent heat thermal energy storage;
Heat transfer rate;
Thermal performance enhancement;
High temperature thermal energy storage;
LATENT-HEAT STORAGE;
DIFFERENT MELTING TEMPERATURES;
SOLAR-ENERGY STORAGE;
NUMERICAL-ANALYSIS;
EXPANDED GRAPHITE;
POWER-PLANTS;
WASTE HEAT;
PCM;
MODULE;
UNIT;
D O I:
10.1016/j.rser.2012.01.020
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
Designing a cost-effective phase change thermal storage system involves two challenging aspects: one is to select a suitable storage material and the other is to increase the heat transfer between the storage material and the heat transfer fluid as the performance of the system is limited by the poor thermal conductivity of the latent heat storage material. When used for storing energy in concentrated solar thermal power plants, the solar field operation temperature will determine the PCM melting temperature selection. This paper reviews concentrated solar thermal power plants that are currently operating and under construction. It also reviews phase change materials with melting temperatures above 300 degrees C, which potentially can be used as energy storage media in these plants. In addition, various techniques employed to enhance the thermal performance of high temperature phase change thermal storage systems have been reviewed and discussed. This review aims to provide the necessary information for further research in the development of cost-effective high temperature phase change thermal storage systems. (C) 2012 Elsevier Ltd. All rights reserved.
机构:
Abengoa Res SL, Abengoa, Energia Solar 1, Campus Palmas Altas, Seville 41014, SpainAbengoa Res SL, Abengoa, Energia Solar 1, Campus Palmas Altas, Seville 41014, Spain
Gimenez-Gavarrell, Pau
Fereres, Sonia
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机构:
Abengoa Res SL, Abengoa, Energia Solar 1, Campus Palmas Altas, Seville 41014, SpainAbengoa Res SL, Abengoa, Energia Solar 1, Campus Palmas Altas, Seville 41014, Spain