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Phase change material selection for thermal processes working under partial load operating conditions in the temperature range between 120 and 200 ºC

机译:相变材料选择适用于在120和200ºC温度范围内的部分负载工作条件下工作的热过程

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摘要

In some processes, latent heat thermal energy storage (TES) systems might work under partial load operating conditions (the available thermal energy source is discontinuous or insufficient to completely charge the phase change material (PCM)). Therefore, there is a need to study how these conditions affect the discharge process to design a control strategy that can benefit the user of these systems. The aim of this paper is to show and perform at laboratory scale the selection of a PCM, with a phase change temperature between 120 and 200 ºC, which will be further used in an experimental facility. Beyond the typical PCM properties, sixteen PCMs are studied here from the cycling and thermal stability point of view, as well as from the health hazard point of view. After 100 melting and freezing cycles, seven candidates out of the sixteen present a suitable cycling stability behaviour and five of them show a maximum thermal-stable temperature higher than 200 ºC. Two final candidates for the partial loads approach are found in this temperature range, named high density polyethylene (HDPE) and adipic acid.
机译:在某些过程中,潜热热能存储(TES)系统可能在部分负载运行条件下工作(可用的热能源不连续或不足以完全给相变材料(PCM)充电)。因此,有必要研究这些条件如何影响放电过程,以设计一种可使这些系统的用户受益的控制策略。本文的目的是展示并在实验室规模下选择相变温度在120至200ºC之间的PCM,并将其进一步用于实验设施。除了典型的PCM特性,这里还从循环和热稳定性以及健康危害的角度研究了16种PCM。经过100次融化和冷冻循环后,十六种中有七种具有良好的循环稳定性,其中五种具有最高热稳定温度,高于200ºC。在此温度范围内,找到了两种部分载荷方法的最终候选物,分别是高密度聚乙烯(HDPE)和己二酸。

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