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Thermal Analysis of Malaysian Double Storey Housing - Low/Medium Cost Unit

机译:马来西亚双层住房的热分析 - 低/中等成本单位

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Almost half of the total energy used today is consumed in buildings. In the tropical climate, air-conditioning a housing unit takes much of the energy bill. Malaysia is no exception. Malaysian double storey terrace housing is popular among developers and buyers. Surveys have shown that housing occupants are much dissatisfied with the thermal comfort and artificial cooling is often sought. The objective of this study is to assess the thermal comfort of the low and medium-cost double storey housing in the area surrounding Universiti Teknologi Malaysia. A simulation program using the Weighting Factor Method calculates the heat transfer interaction, temperature distribution, and PMV level in three types of housing units in relation to the size. Fanger's PMV model based on ISO Standard 7730 is used here because it accounts for all parameters that affect the thermal sensation of a human within its equation. Results showed that both the low and medium-cost housing units studied are out of the comfortable range described by ASHRAE Standard 55 with the units all complied with the local bylaws. In view of the uncertainties in energy supply, future housing units should consider natural ventilation as part of the passive energy management.
机译:今天使用的几乎一半的总能量在建筑物中消耗。在热带气候中,空调住房单元占据了大量的能源法案。马来西亚也不例外。马来西亚双层露台住房在开发人员和买家中受欢迎。调查显示,随着热舒适性和人工冷却,房屋乘客经常寻求非常不满意。本研究的目的是评估该地区围绕马来西亚大学的地区的低级和中型双层房屋的热舒适性。使用加权因子方法的仿真程序计算三种类型的壳体单元中的传热相互作用,温度分布和PMV水平。 Fanger基于ISO标准7730的PMV模型在这里使用,因为它占据了影响其等式内人的热敏的所有参数。结果表明,研究的低和中型成本外壳单元都是由ASHRAE标准55描述的舒适范围,单位均符合当地章程。鉴于能源供应的不确定性,未来住房单位应考虑作为被动能源管理的一部分的自然通风。

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