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Numerical simulation analysis on the thermal performance of a building walls incorporating Phase Change Material(PCM)for thermal management

机译:包含相变材料(PCM)热管理的建筑墙体热性能的数值模拟分析

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Phase Change Material(PCM)plays an essential role in a thermal energy storage device,mainly,by utilizing its relatively high storage density,and latent heat property.PCM is potentially applicable as buildings material as it is possible to incorporate in the building envelope for energy conservation.Energy Plus is the chosen software to simulate phase change material in the building envelope.This paper will discuss in detail the numerical analysis of building thermal characteristics using PCM materials on the walls for climatic conditions of Banda Aceh City.The PCM used is beeswax.The weather data used in the simulation was customized for the year 2015 from the National Renewable Energy Laboratory(NREL)website.Some separate parametric studies,i.e.,a variation of PCM thermal conductivity,and temperature range,and results are presented.It was discovered that a PCM with a melting point from 21 to 23 °C led to maximum energy savings and greater peak load time shift,and is more suitable than other PCM temperature ranges for lightweight building construction.
机译:相变材料(PCM)在热能存储装置中起重要作用,主要是利用其相对高的储存密度,并且潜热性能.PCM可能适用于建筑物材料,因为可以在建筑物中包含在建筑物中能量储存。单体加上是建筑信封中的相变材料的选择软件。本文将详细讨论使用PCM材料在Banda Aceh City的气候条件下使用PCM材料的热特性的数值分析。使用的PCM是蜂蜡。模拟中使用的天气数据来自全国可再生能源实验室(NREL)网站的2015年度定制了。一些单独的参数研究,即PCM导热率的变化和温度范围,以及结果。被发现,PCM具有21至23°C的熔点导致最大节能和更高的峰值负载时间偏移,并且更适合于其他PCM温度范围为轻质建筑施工。

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