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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Stabilization of the outflow temperature of a packed-bed thermal energy storage by combining rocks with phase change materials
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Stabilization of the outflow temperature of a packed-bed thermal energy storage by combining rocks with phase change materials

机译:通过结合岩石和相变材料来稳定填充床热能储存器的流出温度

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摘要

A new thermal energy storage (TES) configuration for concentrated solar thermal power is proposed for stabilizing the outflow temperature of a packed bed of rocks during discharging. This concept is based on the combination of sensible and latent heat storage by adding a relatively small amount of phase change material (PCM) to the top of the bed. Transient simulations solving the energy conservation equations for fluid, solid, and molten phases show that the outflow temperature during discharging can be kept constant around the PCM melting temperature, thereby eliminating the inherent temperature drop of TES based on sensible heat storage only. A PCM volume of only 1.33% of the total storage volume is sufficient to accomplish stabilization, corresponding to 4.4% of the total thermal energy stored as latent heat.
机译:提出了一种用于集中式太阳能热能的新型热能存储(TES)配置,以稳定放电期间岩石堆积床的流出温度。该概念是通过将相对少量的相变材料(PCM)添加到床顶部而将显热和潜热结合起来的。求解流体,固相和熔融相能量守恒方程的瞬态仿真表明,放电过程中的流出温度可以在PCM熔化温度附近保持恒定,从而仅基于显热来消除TES的固有温度下降。仅占总存储量的1.33%的PCM量足以实现稳定,相当于作为潜热存储的总热能的4.4%。

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