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Ragone Relations for Thermal Energy Storage Technologies

机译:肆无忌惮的热能存储技术关系

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The Ragone relation is a facile approach to assess and compare electro-chemical battery performance in terms of two critical performance parameters: power density and energy density. This power and energy nexus is equally relevant for thermal energy storage materials for thermal management applications that require a balance between energy storage capacity and on-demand cooling or heating rates. Here, thermal energy storage is evaluated for sensible heating and for phase-change materials (PCMs). We propose an analytic expression using a lumped mass model for thermal storage through an analogy with heat diffusion that allows for intuitive mapping of materials and components in power-energy space. In addition, a previously proposed figure-of-merit, $eta_q$, describing the intrinsic capability of PCMs to rapidly absorb or discharge heat is placed in the context of the thermal Ragone (power-energy) relation. This figure of merit serves as a proxy for the cooling power of PCMs and single-phase materials to store thermal energy. Thus, $eta_q$ plotted against energy density can serve graphically to illustrate performance tradeoffs between different thermal storage materials, as well as composites composed of different materials.
机译:RAGONE关系是一种易于评估和比较电气化学电池性能的容易性能,其两个关键性能参数:功率密度和能量密度。这种功率和能量Nexus与热管理应用的热能储存材料同样相关,需要在能量存储容量和按需冷却或加热速率之间平衡。这里,评估热能存储器以获得合理的加热和相变材料(PCM)。我们通过与热扩散的类比进行多块质量模型提出了一种分析表达,用于通过与热扩散进行类比,允许电力能量空间中的材料和部件直观地映射。此外,先前提出的值得注意的优点,其中描述了PCMS的内在能力以快速吸收或放电热量的情况下放置在热刷新(电力能量)关系的背景下。该优点的图形是用于储存热能的PCMS和单相材料的冷却功率的代理。因此,$ eta_q $绘制的能量密度可以以图形方式提供用于说明不同热储存材料之间的性能权衡,以及由不同材料组成的复合材料。

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