应用层次分析法优选相变材料在建筑舒适性中的应用

Lavinia Socaciu, Paula Ungureşan
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引用次数: 6

摘要

摘要:相变材料的选择和优先级对改善建筑的潜热储存系统有重要的贡献。在接近开关点的温度范围内,pcm具有相对较大的热能储存能力。相变介质在相变发生的加热过程中吸收能量,在反向冷却过程中向相变范围内的环境释放能量。与显热储能相比,使用PCMs作为存储介质的热储能系统具有以下优点:高储热能力和在几乎恒定的温度下存储/释放热能,相对较轻的重量,较小的单元尺寸和在充放电过程中的等温行为。相变材料只有在接近相变点的温度范围内才有价值,因为它们的主要热能储存能力取决于它们的质量和聚变潜热。选择合适的pcm是一项具有挑战性的任务,因为有许多不同的材料具有不同的特性。本文对层次分析法(AHP)的原理和技术进行了介绍、讨论和应用,以便优先选择适合建筑舒适性的pcm。层次分析法用于解决复杂的决策问题,使决策者能够针对所研究的问题做出最合适的决策。结果表明,AHP方法可以成功地应用于建筑舒适性的PCM选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using the Analytic Hierarchy Process to Prioritize and Select Phase Change Materials for Comfort Application in Buildings
Abstract Phase change materials (PCMs) selection and prioritization for comfort application in buildings have a significant contribution to the improvement of latent heat storage systems. PCMs have a relatively large thermal energy storage capacity in a temperature range close to their switch point. PCMs absorb energy during the heating process as phase change takes place and release energy to the environment in the phase change range during a reverse cooling process. Thermal energy storage systems using PCMs as storage medium offer advantages such as: high heat storage capacity and store/release thermal energy at a nearly constant temperature, relative low weight, small unit size and isothermal behaviour during charging and discharging when compared to the sensible thermal energy storage. PCMs are valuable only in the range of temperature close to their phase change point, since their main thermal energy storage capacity depend on their mass and on their latent heat of fusion. Selection of the proper PCMs is a challenging task because there are lots of different materials with different characteristics. In this research paper the principles and techniques of the Analytic Hierarchy Process (AHP) are presented, discussed and applied in order to prioritize and select the proper PCMs for comfort application in buildings. The AHP method is used for solving complex decisional problems and allows the decision maker to take the most suitable decisions for the problem studied. The results obtained reveal that the AHP method can be successfully applied when we want to choose a PCM for comfort application in buildings.
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