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Analysis of the Thermal Storage Performance of a Radiant Floor Heating System with a PCM

机译:PCM辐射地板采暖系统的蓄热性能分析

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摘要

This study first reviewed previous studies on floor heating systems based on the installation of a phase change material (PCM) and the current status of technical developments and found that PCM-based research is still in its infancy. In particular, the improvement of floor heat storage performance in indoor environments by combining a PCM with existing floor structures has not been subject to previous research. Thus, a PCM-based radiant floor heating system that utilizes hot water as a heat source and can be used in conjunction with the widespread wet construction method can be considered novel. This study found the most suitable PCM melting temperature for the proposed PCM-based radiant floor heating system ranged from approximately 35 °C to 45 °C for a floor thickness of 70 mm and a PCM thickness of 10 mm. Mock-up test results, which aimed to assess the performance of the radiant floor heating system with and without the PCM, revealed that the PCM-based room was able to maintain a temperature that was 0.2 °C higher than that of the room without the PCM. This was due to the rise in temperature caused by the PCM’s heat storage capacity and the emission of waste heat that was otherwise lost to the underside of the hot water pipe when the PCM was not present.
机译:这项研究首先回顾了基于相变材料(PCM)的安装以及技术发展的现状对地板采暖系统的先前研究,发现基于PCM的研究仍处于起步阶段。特别地,通过将​​PCM与现有地板结构结合来改善室内环境中的地板储热性能尚未受到先前的研究。因此,利用热水作为热源并且可以与广泛的湿式施工方法结合使用的基于PCM的辐射地板加热系统被认为是新颖的。这项研究发现,对于70毫米的地板厚度和10毫米的PCM厚度,建议的基于PCM的辐射地板采暖系统最合适的PCM熔化温度范围为大约35°C至45°C。模拟测试结果旨在评估带PCM和不带PCM的地板辐射采暖系统的性能,结果表明,基于PCM的房间能够比不带PCM的房间维持的温度高0.2°C。 PCM。这是由于PCM的储热能力导致温度升高以及散发的废热所致,否则这些废热会在不存在PCM的情况下流失到热水管的底部。

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