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A climate analysis tool for passive heating and cooling strategies in hot humid climate based on Typical Meteorological Year data sets

机译:基于“典型气象年”数据集的湿热气候中被动采暖和制冷策略的气候分析工具

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摘要

Through a newly developed climate analysis tool, this paper examines the potential of improving thermal comfort under the climates of Vietnam thanks to passive strategies. A Building climatic chart for Vietnamese was proposed based on Fanger’s theory [1] and the comfort zone of this chart was then extended by calculating the effects of passive heating and cooling strategies. Typical Meteorological Year weather data are used for extracting and graphically printing of hourly environmental parameters on the psychrometric chart and for climate analysis, subsequently. The limitation and the scope of this method are also specified.The climates of three climatic regions in Vietnam have been used as case studies using all year, seasonal and monthly analysis. The results show that natural ventilation is an effective cooling solution as thermal comfort improvement varies with the climatic zones, increasing from 24.8% in Hanoi, 22.1% in Danang to 32.0% in Hochiminh city. Meanwhile, passive solar heating is only effective under the climate of Hanoi. Direct evaporative cooling also shows great cooling potential for comfort improvement but probable elevated humidity is not expected. Total possible comfort in a year of each location indicates that further climate modification methods are inevitable to achieve comfort during extreme weather conditions, especially in Hanoi.
机译:通过一种新开发的气候分析工具,本文研究了借助被动策略改善越南气候下的热舒适性的潜力。根据Fanger的理论[1]提出了越南建筑气候图,然后通过计算被动供暖和制冷策略的影响来扩展此图的舒适区。典型的“气象年”天气数据用于提取湿度图表上的每小时环境参数并以图形方式打印出来,随后用于气候分析。并指出了这种方法的局限性和范围。越南的三个气候区域的气候被用作案例研究,并进行了全年,季节性和每月分析。结果表明,自然通风是一种有效的降温解决方案,因为随着气候带的变化,热舒适性有所提高,从河内的24.8%,岘港的22.1%到胡志明市的32.0%。同时,被动式太阳能加热仅在河内气候下有效。直接蒸发冷却还显示出极大的冷却潜力,可改善舒适度,但预计湿度可能不会升高。每个位置一年的总舒适度表明,在极端天气条件下(尤其是在河内),要想获得舒适感,不可避免地要采用进一步的气候变化方法。

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