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Energy efficient retrofit of an end of the row house: Confronting predictions with long-term measurements

机译:联排房屋末端的节能改造:长期测量的前沿预测

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Looking to the EU's 20/20/20 program, energy efficient retrofitting will be a key element in the 20% less primary energy in 2020 compared to business as usual. Within that context, field studies that put realizable efficiency in perspective are urgently needed.rnThe dwelling evaluated was built in 1957. In those days energy efficiency was no concern. Houses got no insulation, ventilation was adventitious and heating systems scored badly. The retrofit started in the early eighties, stepwise as to follow the impact of separate measures on heating energy consumed. A solar boiler was installed in 2004. PV followed in 2009. The first 19 years a family of five inhabited the dwelling, then the parents only. Monitoring started in 1978.rnIn the paper, predicted annual energy for space heating is compared with monitored result. The measured data, though showing a net decrease, consistently underscore predictions. Main reason is direct rebound. The benefits of the solar boiler and PV-panels are minimal compared to the energy avoided by better insulation, energy efficient windows, better air-tightness and upgraded ventilation and central heating. However, targeting passive house and zero energy quality is beyond optimal in terms of net present value and not doable in the dwelling.
机译:展望欧盟的20/20/20计划,与往常相比,节能改造将是2020年一次能源减少20%的关键因素。在这种情况下,迫切需要对可实现的效率进行透视的野外研究。rn评价的住宅建于1957年。在那时,能源效率已不再是问题。房屋没有隔热层,通风不方便,供暖系统得分很差。改造于八十年代初开始,逐步遵循各种措施对所消耗热量的影响。 2004年安装了太阳能锅炉。2009年安装了PV。最初的19年,一个五口之家居住在该住宅中,然后是父母。监测始于1978年.rn本文将预测的空间供暖年度能量与监测结果进行比较。测得的数据尽管显示出净下降,但始终突出了预测。主要原因是直接反弹。与通过更好的隔热,高能效的窗户,更好的气密性以及更好的通风和集中供热所避免的能源相比,太阳能锅炉和光伏面板的好处微乎其微。但是,针对被动房屋和零能源质量而言,就其净现值而言,这超出了最佳范围,并且在住宅中不可行。

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