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Thermodynamic Analysis of High-Temperature Energy Storage Concepts Based on Liquid Metal Technology

机译:基于液态金属技术的高温储能概念热力学分析

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摘要

Within the thermal energy storage (TES) initiative NAtional Demonstrator for IseNtropic Energy storage (NADINE), three projects have been conducted, each focusing on TES at different temperature levels. Herein, technical concepts for using liquid metal technology in innovative high-temperature TES systems are dealt with. This approach implies some challenges; first, the unit costs are relatively large which makes a reduction of the mass inventory necessary. Second, the high thermal diffusivity, which is beneficial in any heat exchanger unit, reduces the efficiency in a single-tank TES due to the fast degradation of the thermocline. These limitations can be overcome using a nonexpensive solid filler material, and, if properly designed, similar performance as in state-of-the-art molten salt systems can be obtained, while maintaining the advantage of operating at temperatures well beyond their upper limit. Optimization strategies are presented for a reference case including transient behavior of the whole system. The sensitivity of multiple parameters, e.g., porosity, particle size, and influence of storage capacity regarding the discharge efficiency, is investigated.
机译:在热能储存(TES)倡议国国家示范中,用于等熵能量储存(NADINE),已经进行了三个项目,每个项目都专注于不同温度水平的TES。这里,使用创新的高温TES系统中使用液态金属技术的技术概念。这种方法意味着一些挑战;首先,单位成本相对较大,从而减少了所需的质量库存。其次,在任何热交换器单元中有益的高热扩散率,由于热量下划线的快速降解,在单罐特性中降低了单罐特性的效率。这些限制可以使用非全面的固体填充材料克服,如果适当设计的,可以获得与最先进的熔盐系统类似的性能,同时保持在超出其上限的温度下操作的优点。提供优化策略以用于参考案例,包括整个系统的瞬态行为。研究了多种参数,例如孔隙率,粒度和对放电效率的储存能力的影响的敏感性。

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