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Passive Cooling Using Phase Change Material and Insulation for High-rise Office Building in Tropical Climate

机译:热带气候中的相变材料和高层办公楼绝缘的被动冷却

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Buildings consumed 40% of the world's primary energy consumption. In hot climate countries, more than 50% of building's energy was spent on the cooling system. Aimed to reduce building's cooling load in a tropical country, this study compares building's construction configuration for two types of air-conditioned rooms in a high-rise office building. The two types of air-conditioned rooms are: (a) air conditioned rooms operating during office hours and (b) IT rooms and data centre with 24hours cooling. Six scenarios were compared using four building's configurations (baseline, adding insulation, adding phase change material (PCM), and adding both insulation and phase change material! to evaluate the most efficient construction and cooling settings for both room types. It was found that for air conditioned rooms operating during office hours, adding PCM with melting point 29°C and force night time ventilation is the most effective in reducing cooling load. Meanwhile, for a room with 24hours cooling load, adding insulation material is the most efficient. PCM was only fully effective when night time ventilation was introduced which allows the PCM to discharge. High thermal conductivity walls have the potential to create a mould problem in the building (due to differences in moisture pressure at night time between the internal and external of the building) which can be eradicated by using night time ventilation or adding insulation to the wall. PCM installation reduced the sensible cooling load but not the latent cooling load. Hence, mechanical cooling or dehumidifier is still required.
机译:建筑物消耗了世界初级能源消耗的40%。在炎热的气候国家,在冷却系统上花了超过50%的建筑能量。该研究旨在减少建筑物在热带国家的冷却负荷,这项研究比较了建筑的施工配置,为高层办公楼的两种空调客房。这两种空调房是:(a)空调房间在办公时间和(b)房间和数据中心,带24小时冷却。使用四个建筑的配置进行比较六种情景(基线,添加绝缘,添​​加相变材料(PCM),并添加绝缘和相变材料!评估两个房间类型的最有效的施工和冷却设置。有人发现空调房间在办公时间运行,用熔点29°C添加PCM并强制夜间时间通风是减少冷却负荷最有效的。同时,对于带24小时冷却负荷的房间,添加绝缘材料是最有效的。PCM是介绍夜间时间通风时只能充分有效,允许PCM放电。高导热壁有可能在建筑物中产生模具问题(由于建筑物内部和外部之间的夜间夜间含水压力差异)可以通过使用夜间时间通风或向墙添加绝缘来消除.PCM安装减少了灵敏的酷智NG负载但不是潜在的冷却载荷。因此,仍然需要机械冷却或除湿器。

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