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Experimental Study of a Novel Thermal Storage System using Sands with High-Conductive Fluids Occupying the Pores

机译:用砂砂砂砂的新型热储存系统的实验研究

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Because of the capability of large capacity thermal storage, concentrated solar power (CSP) technology is getting more attentions in the recent years. The energy storage allows power generation using solar energy during the late afternoon and evening time. For a large capacity of thermal energy storage, a dual-media system is typically adopted for reducing the use of the heat transfer fluid (HTF), which is usually expensive. In a dual-media system, the solid material must have large heat capacity and be inexpensive. One type of configuration for a dual-media system is that HTF flowing in pipes which are imbedded into the solid material. The present study considers sands, a major component of concrete, as low-cost solid thermal storage materials. The novel approach is that the sand is saturated with high thermal conductive fluid. Compared to using concrete for thermal storage, this method avoids issues of heat transfer degradation associated with the mismatch of thermal expansion of pipes and concrete. Since only sands are porous materials and the heat transfer performance is low, a high conductive fluid (XCELTHERM 600 hot oil) was used to saturate sands, which then forms a new thermal storage material that can have better heat transfer. Results of thermal storage process with sands only and with the oil-saturated sands are presented and discussed.
机译:由于大容量热存储的能力,近年来浓缩的太阳能(CSP)技术越来越关注。储能允许在下午晚些时候和晚上使用太阳能发电。为了大容量的热能存储,通常采用双介质系统来减少使用通常昂贵的传热流体(HTF)的使用。在双介质系统中,固体材料必须具有大的热容量并便宜。双介质系统的一种类型的配置是在管道中流动的HTF流入固体材料。目前的研究考虑了砂,混凝土的主要成分,作为低成本的固体热储存材料。新方法是砂用高导热液饱和。与使用混凝土进行热储存相比,该方法避免了与管道和混凝土的热膨胀不匹配相关的传热劣化问题。由于仅砂质是多孔材料并且传热性能低,因此使用高导电流体(Xceltherm 600热油)来饱和砂质,然后饱和砂质,然后形成新的热储存材料,可以具有更好的传热。呈现并讨论了砂岩的热存储过程的结果,并讨论了油饱和砂。

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