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Improving Stack Effect in Hot Humid Building Interiors with Hybrid Turbine Ventilator(s)

机译:使用混合涡轮通风机改善湿热建筑内部的烟囱效应

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Natural ventilation strategies have been applied through the ages to offer thermal comfort. At present, these techniques could be employed as one of the methods to overcome the electric consumption that comes from the burning of disproportionate fossil fuel to operate air conditioners. This air conditioning process is the main contributor of CO2 emissions. This paper focuses on the efficiency of stack ventilation which is one of the natural ventilation strategies, and at the same time attempts to overcome the problem of erratic wind flow and the low indoor/outdoor temperature difference in the hot, humid Malaysian climate. Wind flow and sufficient pressure difference are essential for stack ventilation, and as such the irregularity can be overcome with the use of the Hybrid Turbine Ventilator (HTV) which extracts hot air from the interior of the building via the roof level. The extraction of hot air is constant and consistent throughout the day time as long as there is sunlight falling on the solar panel for solar electricity. The aim of this paper is to explore the different HTV strategies and find out which building dimensions is most expected to reduce maximum indoor air temperature of a given room in a real weather condition.
机译:多年来,人们一直采用自然通风策略来提供热舒适性。目前,这些技术可以用作克服因燃烧不成比例的化石燃料来运行空调而产生的电消耗的方法之一。这种空调过程是造成CO2排放的主要因素。本文着眼于烟囱通风的效率,这是自然通风策略之一,同时试图克服在炎热潮湿的马来西亚气候中风量不稳定和室内/室外温差低的问题。风量和足够的压差对于烟囱通风至关重要,因此可以使用混合涡轮通风机(HTV)克服不规则现象,该混合机通过屋顶从建筑物内部抽出热空气。只要白天阳光照射在太阳能电池板上以提供太阳能,热空气的提取就始终保持恒定。本文的目的是探索不同的HTV策略,并找出在实际天气条件下最希望降低给定房间的最大室内空气温度的建筑物尺寸。

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