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首页> 外文期刊>Journal of Energy Storage >Assessment of four main representative flint facies as alternative storage materials for concentrated solar power plants
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Assessment of four main representative flint facies as alternative storage materials for concentrated solar power plants

机译:评估四个主要代表性火石相作为集中式太阳能发电厂的替代存储材料

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摘要

At present there is an intense research for developing alternative sensible heat storage materials, such as natural rocks and recycled ceramics, able to work in concentrated solar power plants at high temperatures. This work demonstrates the potential of flint rocks as an economic and efficient filler material to be used with air as heat transfer fluid in packed bed storage system. Four facies of flint rocks were collected from south of France. To predict the performance of the storage system, crystalline structure, thermo-physical and thermo-mechanical properties of the studied rocks have been identified. For this purpose, the candidate rocks were subjected to extensive experimental characterizations under a series of thermal cycles. XRD, SEM, DSC/TGA, pycnometer, LFA, dilatometer, high temperature ultrasonic testing and nano-indenter method have been used to analyze these samples. Consequently, the 400 degrees C was identified as ideal temperature for the heat treatment process of flint. The obtained results from the four analyzed samples have been compared together and with currently used storage materials. The results gathered from this paper prove the potential of flint in terms of high density, good specific heat capacity and good thermal stability up to 400 degrees C to be used as filler material in energy storage applications relevant for low and medium temperature solar power plants.
机译:目前,人们正在研究开发替代的显热储能材料,例如天然岩石和可循环使用的陶瓷,这些材料可在高温的集中式太阳能发电厂中工作。这项工作证明了int石岩石作为一种经济有效的填充材料的潜力,可与空气作为填充床存储系统中的传热流体一起使用。从法国南部收集了四个火石岩相。为了预测存储系统的性能,已确定了所研究岩石的晶体结构,热物理和热机械特性。为此,在一系列热循环下对候选岩石进行了广泛的实验表征。 XRD,SEM,DSC / TGA,比重瓶,LFA,膨胀计,高温超声测试和纳米压痕法已用于分析这些样品。因此,将400摄氏度确定为火石热处理过程的理想温度。从四个分析样品中获得的结果已与当前使用的存储材料一起进行了比较。从本文收集的结果证明,在高密度,良好的比热容和高达400摄氏度的热稳定性方面,火石具有潜力,可在与中低温太阳能电站有关的储能应用中用作填充材料。

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