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A Case Study assessing the impact of Shading Systems combined with Night-Time Ventilation strategies on Overheating within a Residential Property

机译:一个案例研究评估了遮阳系统与夜间通风策略对住宅房屋过热的影响

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摘要

Overheating in domestic homes specifically in built up urban areas has become a pressing problem within the UK that may become a costly energy problem in years to come if passive design strategies are not fully understood and integrated. This research looks to investigate how internal and external solar shading systems impact on operative temperatures when an optimum blind and ventilation strategy is adopted within a renovated block of flats in London. Although shading and ventilation were overlooked at the initial stage of building design, the implementation of solar shading has been found to be beneficial in maintaining thermal comfort within the building when external temperatures were recorded both above and below 20 - 25°C. During the study shading was combined with a night-time natural ventilation strategy which enabled most rooms to cool when external temperatures were at their lowest. However, night-time ventilation may not be desirable to the occupants due to external traffic noise and security issues combined with the intended design use of the rooms as in this case study. The authors believe lower indoor temperatures could be achieved if window opening areas were increased in the façade design. In two areas of the building natural ventilation was not possible leading to significant overheating and the retrofitting of mechanical ventilation. This highlights the need for an effective façade management strategy considering the glazing, shading and ventilation collectively at the design stage.
机译:如果不完全理解和整合被动式设计策略,则在英国,尤其是在已建成的市区中,家庭住房中的过热问题已成为一个紧迫的问题。这项研究旨在调查在伦敦翻新的公寓大楼中采用最佳百叶窗和通风策略时,内部和外部遮阳系统如何影响工作温度。尽管在建筑设计的最初阶段就忽略了遮阳和通风,但是当记录到的外部温度高于和低于20-25°C时,采用遮阳遮阳有助于保持建筑物内的热舒适性。在研究过程中,遮阳与夜间自然通风策略相结合,该策略可使大多数房间在外部温度最低时进行冷却。但是,由于外部交通噪音和安全性问题以及如本案例研究所述的房间的预期设计用途,因此夜间通风对乘员而言可能不是理想的。作者认为,如果在立面设计中增加开窗面积,则可以实现较低的室内温度。在建筑物的两个区域中,自然通风是不可能的,从而导致严重的过热和机械通风的改造。这凸显了在设计阶段综合考虑玻璃,遮光和通风的有效立面管理策略的必要性。

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