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Mitigating temperature increases in high lot density sub-tropical residential developments

机译:缓解高人口密度亚热带住宅开发中的温度升高

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Residential developments built with houses that use passive design features can have significantly reduced energy requirements for thermal comfort. In the context of global warming, this can reduce greenhouse gas emissions. The current trend towards higher lot density in residential developments and the resulting increase in thermal mass increases the associated heat island effect. Designers of future residential developments face the dual challenges of heat island impacts and any future global warming. Resource efficient house designs combined with approaches that mitigate the outdoor heat load must be considered and addressed from the design of the initial subdivision layout. Some land sub-division and house design initiatives are proposed for sub-tropical climatic conditions as prevailing in south-east Queensland, Australia. Computer simulations that account for heat island and global warming effects are used to estimate the indoor thermal performance of display houses constructed by a large scale property developer for current climate conditions and scenarios that may occur in the future. The use of north-south orientation of narrow building lots combined with high albedo house surfaces and the increased strategic use of shade trees for reducing the heat island effect of high density residential developments are presented. The cooling requirements of houses with high-energy rating (5 star or more) are found to be significantly superior to those with low rating (3.5 star) in scenarios of global warming.
机译:使用具有被动设计功能的房屋建造的住宅开发项目可以显着降低热舒适性的能源需求。在全球变暖的背景下,这可以减少温室气体的排放。当前住宅开发中地块密度更高的趋势以及由此产生的热质量增加会增加相关的热岛效应。未来住宅开发的设计师面临着热岛影响和未来全球变暖的双重挑战。必须从初始细分布局的设计中考虑并解决资源节约型房屋设计以及减轻室外热负荷的方法。针对澳大利亚昆士兰州东南部的亚热带气候条件,提出了一些土地细分和房屋设计计划。考虑到热岛效应和全球变暖效应的计算机模拟用于估计由大型房地产开发商针对当前气候条件和将来可能发生的情况建造的展示房屋的室内热性能。提出了将狭窄建筑的南北方向与高反照率房屋表面结合使用,以及增加遮荫树的战略用途,以减少高密度住宅开发的热岛效应。在全球变暖的情况下,发现高能级(5星或更高)房屋的制冷要求明显优于低能级(3.5星)。

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