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MODELING DUAL-TANK MOLTEN SALT THERMAL ENERGY STORAGE SYSTEMS

机译:双罐混合盐热能存储系统建模

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Thermal energy storage systems are designed to store extra heat in order to release it at a more appropriate time. There are many industrial applications that can utilize the thermal energy storage concept, such as oil drilling and solar power generation. A model depicting the operation of a dual-tank molten salt thermal energy storage system was developed to be used to optimize its charging and discharging operations. Thermal energy storage systems are very well insulated; nonetheless, molten salt is constantly losing small amounts of its heat to the ambient because of the large temperature gradient across the surface of the holding tanks. Consequently, auxiliary heaters are always attached to thermal energy storage systems to prevent salt freezing during extended periods of little or no thermal energy input, such as lengthy cloud cover periods in solar thermal power plants.
机译:热能存储系统旨在存储多余的热量,以便在更合适的时间释放热量。有许多工业应用可以利用热能存储概念,例如石油钻探和太阳能发电。开发了描述双罐熔融盐热能存储系统运行的模型,以用于优化其充放电操作。热能存储系统绝缘良好;然而,由于整个储罐表面的温度梯度大,熔融盐一直在向周围环境中散发少量热量。因此,辅助加热器始终连接到热能存储系统,以防止盐分在很少或没有热能输入的延长时间内冻结,例如在太阳能热电厂中出现漫长的云层期。

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