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Overheating in Auckland homes: testing and interventions in full-scale and simulated houses

机译:奥克兰房屋的过热:在大型和模拟房屋中进行测试和干预

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摘要

New Zealand dwellings have thermal conditions managed with relatively light regulation. No minimum airtightness standards exist and historical increases in required insulation levels aimed to reduce winter heating energy consumption. A consequence of this policy is an increased potential for overheating in summer. There has been a steady increase in the use of heat pumps, risking heating energy savings being outweighed by cooling energy increases. Internal temperatures and humidity were monitored in the living spaces of three unoccupied, transportable houses over all four seasons of the Auckland climate. The houses are located on the same site and are of identical construction, apart from selected interventions which were tested to explore their potential to mitigate overheating. Results indicate that overheating can be extreme and long lasting. High internal temperatures are very closely connected with solar gains. Internal temperatures reached 32 degrees C in autumn. Roof space temperatures reached 51 degrees C in summertime. Interventions resulted in modest improvements and an airtight construction provided a small thermal benefit. A thermal model for the houses was developed using EnergyPlus and compared with actual measurements and the interventions. Early results point to the further need to reduce solar gain, increase roof-space ventilation and increase mass, where feasible.
机译:新西兰住宅的热条件通过相对较轻的调节进行管理。不存在最低气密性标准,并且历史上增加了所需的隔热等级以减少冬季取暖的能耗。这项政策的结果是夏季过热的可能性增加。热泵的使用一直在稳步增加,存在冷却能增加无法抵消节省热能的风险。在奥克兰气候的所有四个季节中,对三间无人可移动房屋的居住空间进行内部温度和湿度监测。这些房屋位于同一地点,结构相同,除了选定的干预措施外,这些干预措施经过测试以探索缓解过热的潜力。结果表明,过热可能会持续很长时间。较高的内部温度与太阳能的获取密切相关。秋季内部温度达到32摄氏度。夏季,屋顶空间温度达到51摄氏度。干预导致了适度的改进,并且气密的结构提供了很小的热效益。使用EnergyPlus开发了房屋的热模型,并将其与实际测量值和干预措施进行了比较。早期的结果表明,在可行的情况下,还需要降低日照量,增加屋顶空间的通风量和增加质量。

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