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Energy efficient of the residential buildings based climatic condition using experimental design: a case study in malaysia

机译:基于实验设计的基于居民建筑的节能 - 马来西亚案例研究

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In recent years, energy consumption has become a critical issue in the developed and developing countries. Residential buildings are one of the most users of energy in the construction sector that use the highest share of energy. This paper aims at evaluating the effect of four factors that are temperature, humidity, airflow and pressure on the cooling load in the residential buildings. To achieve this goal, statistical experimental design is used to determine the optimum setting of factors that result in optimum energy usage. Simulation software and energy analysis is used to simulate a two-storey building in Malaysia as the case of study. Final results showed that the temperature, humidity and interaction between them have the most significant effect on the energy cooling load. Moreover, to obtain the minimum value of cooling load the temperature and humidity should be equal to A=20 Celsius degree and B=60% respectively. In addition, the other two insignificant factors, airflow and pressure should be placed at the high level which are equal to C=3 cubic meters per hour, and D=6 Pascal (P) respectively.
机译:近年来,能源消耗已成为发达国家和发展中国家的一个关键问题。住宅建筑是使用最高能量份额的建筑业中最多的能源用户之一。本文旨在评估居民建筑物中冷却负荷的温度,湿度,气流和压力的四种因素的效果。为实现这一目标,统计实验设计用于确定导致最佳能源使用的因素的最佳设置。仿真软件和能源分析用于模拟马来西亚的两层建筑物作为研究的情况。最终结果表明,它们之间的温度,湿度和相互作用对能量冷却负荷具有最显着的影响。此外,为了获得冷却负荷的最小值,温度和湿度应等于A = 20摄氏度和B = 60%。此外,其他两个微不足道的因素,气流和压力应放置在高水平的高水平,该高水平等于C = 3立方米/小时,分别为D = 6帕斯卡(P)。

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