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Phase change materials applications to optimize cooling performance of buildings in the Mediterranean area: a parametric analysis

机译:相变材料应用,以优化地中海地区建筑物的冷却性能:参数分析

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Building integrated thermal energy storage systems cover a wide range of techniques and solutions depending on technology applications and aims. They however all have in common the concept behind: being able to store energy for later use in order to reduce the time mismatch between energy availability and demand. In this context, Phase Change Materials (PCMs) fit the above description, since they would allow for mostly isothermal phase change within normal thermal comfort range. In order to face the typical challenges of the Mediterranean climate, the following concept was elaborated: the idea is to use the phase change mechanics as a substitute to the thermal inertia of massive walls to obtain a similar effect in lightweight structures. A simulated test room was arranged and through parametric analysis the potential of PCM for energy efficiency in connection to natural ventilation strategies was assessed. Simulation results vary according to the configuration analysed but in all cases, cooling consumption reduction reached at least 40% with the use of PCMs. Air Temperature during peak hours in summer can be reduced by more than 7-8°C.
机译:建筑集成热能存储系统根据技术应用和目标涵盖了各种技术和解决方案。然而,它们都是共同的概念背后的概念:能够存储能量以供以后使用,以减少能量可用性和需求之间的时间不匹配。在这种情况下,相变材料(PCM)适合上述描述,因为它们可以在正常热舒适度范围内允许大多数等温相变。为了面对地中海气候的典型挑战,详细阐述了以下概念:该思想是使用相变力学作为替代大壁的热惯性,以获得轻质结构中的类似效果。分析了模拟试验室,并通过参数分析进行了分析,对自然通风策略有关能效的PCM的潜力。仿真结果根据分析的配置而变化,但在所有情况下,使用PCMS的冷却消耗达到至少40%。夏季高峰时段的空气温度可降低7-8°C。

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