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EuroSun 2012 - WINTER PERFORMANCE OF 2-STOREY SOLAR BUFFER SPACES IN GLASGOW DEMONSTRATION HOUSES

机译:EuroSun 2012-格拉斯哥示范屋的2层太阳能缓冲空间的冬季性能

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In 2011 the Mackintosh Environmental Architecture Research Unit (MEARU) monitored two demonstration houses each with geometrically identical 2-storey solar buffers. The houses were constructed to the same reasonably high energy-efficiency standards with low air permeability and mechanical ventilation with heat recovery (MVHR) but employing different construction systems -one more heavyweight than the other in terms of indoor thermal response; this situation reversed in the case of respective buffer spaces. To assess the 'true' performance of these dwellings sets of students occupied them for separate 2 week periods during February and December 2011, with identical 'living scripts' in order to reduce habitation variability. The 'living scripts' required heat settings to be consistent, with occupants in February allowed to open windows provided this was recorded. Such interventions between living room and main bedroom and buffer, the latter not linked to the MVHR, were of interest in terms of impact on space heating loads and informed key research questions for buffers in this context. Namely: a) Would their presence tend to reduce or increase space-heating loads in winter? b) Would their connection to MVHR be beneficial? c) How would their performance compare with direct-gain windows to Passivhaus standard?
机译:2011年,麦金托什环境建筑研究小组(MEARU)监控了两座示范住宅,每座示范住宅的几何结构均相同,共有两层楼高的太阳能缓冲器。这些房屋按照合理的高能效标准建造,具有低透气性和带有热回收的机械通风(MVHR),但采用不同的建筑系统-在室内热响应方面,一个比另一个重。在各个缓冲区空间的情况下,这种情况相反。为了评估这些住宅的“真实”表现,在2011年2月和2011年12月期间,学生们将他们分别居住了两个星期,并使用了相同的“生活脚本”,以减少居住环境的变化。 “居住脚本”要求暖气设置保持一致,如果记录下来,二月份的乘员可以打开窗户。客厅与主卧室和缓冲区之间的这种干预(后者与MVHR不相关)对于影响空间供暖负荷以及在此情况下有关缓冲区的重要研究问题引起了人们的关注。即:a)它们的存在会在冬天减少或增加空间供暖负荷吗? b)他们与MVHR的联系会有益吗? c)与采用Passivhaus标准的直接增益窗相比,它们的性能如何?

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