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Selection Methodology of Potential Sensible Thermal Energy Storage Materials for Medium Temperature Applications

机译:中温应用中潜在的感热储能材料的选择方法

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Thermal energy storage (TES) component improves the revenue of a concentrating solar power (CSP) plant by allowing more heat to be stored and making the electric energy available during the absence of sunlight. The heat can be stored in three ways (sensible, latent, or thermochemical). The present work aims to identify and select cost-effective sensible TES systems suitable for the medium temperature range (100-300 °C) applications (e.g. Fresnel CSP plants, industrial waste heat recovery, etc.). Based on a literature review, a selection methodology is developed to select potential candidate solid TES media (e.g. natural rock, concrete, sand, etc. ) as filler material in direct or indirect contact with thermal oil, which is used generally as heat transfer fluid (HTF) for this temperature range. The main criteria and steps of this selection methodology are identified and they take into account the different decisive storage properties as thermo-physical and mechanical properties of the solid media. Finally, the potential candidate TES materials are identified for the targeted application and further indoor experimental investigations are briefly presented.
机译:热能存储(TES)组件通过允许存储更多的热量并在没有日光的情况下使电能可用,从而提高了聚光太阳能(CSP)厂的收入。热量可以三种方式存储(显热,潜热或热化学)。本工作旨在确定并选择适用于中等温度范围(100-300°C)应用(例如菲涅耳CSP设备,工业余热回收等)的经济有效的TES系统。基于文献综述,开发了一种选择方法来选择潜在的潜在固体TES介质(例如天然岩石,混凝土,沙子等)作为与导热油直接或间接接触的填充材料,而导热油通常用作传热流体(HTF)在此温度范围内。确定了该选择方法的主要标准和步骤,并考虑了不同的决定性存储特性,例如固体介质的热物理和机械特性。最后,确定了潜在的候选TES材料以用于目标应用,并简要介绍了进一步的室内实验研究。

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