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Stability testing of thermal oil in direct contact with rocks used as filler material for thermal energy storage in CSP power plants

机译:与CSP发电厂中的热能储存热能储存材料直接接触热油的稳定性试验

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A Thermocline Thermal Energy Storage (TES) system potentially offers a cheap and simple way of achieving dispatchability of energy after sunset or during intermittent cloudy weather conditions. The system performance depends on the properties of the suitable media selected. As very promising solid TES material, natural rocks can be chosen as filler material for energy storage system owing their availability and many advantages such as high volumetric heat capacity and stable physical and chemical performance. In previous tests, quartzite rock was identified as a potential filler material for TES. In the present paper, the compatibility of the heat transfer fluid (HTF) with rocks and silica sand was tested in laboratory under defined conditions. Physicochemical and thermal characterizations of the studied materials were performed in order to evaluate their sustain ability after extended time over a range of temperature. It has been concluded that no significant deterioration of tested oil aged in contact with quartzite and silica sand can affect the performance of the thermocline thermal energy storage system.
机译:热水管热能储存(TES)系统可能提供一种廉价而简单的方式,可实现日落后的能量调度或间歇性多云的天气条件。系统性能取决于所选合适介质的属性。作为非常有前途的固体TES材料,可以选择自然岩石作为填充材料,用于储能系统,因为它们的可用性和许多优点如高容量的热容量和稳定的物理和化学性能。在先前的测试中,将石英岩岩体鉴定为TES的潜在填充材料。在本文中,在实验室在规定的条件下在实验室中测试了传热液(HTF)与岩石和硅砂的相容性。进行了研究的物理化学和热表征,以便在延长一段温度后延长其维持能力。已经得出结论,与石英岩和二氧化硅砂接触的测试油的显着恶化可能会影响热控热能储存系统的性能。

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