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Evaluating the potential energy savings of retrofitting low-rise suburban dwellings towards the Passivhaus EnerPHit standard in a hot summer/cold winter region of China

机译:评估在炎热的夏季/冷冬区改装低层郊区住宅的潜在节能节省普遍夏季/寒冷冬季地区的Passivhaus Enerphit标准

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This paper considers the potential heating and cooling energy savings from retrofitting to the Passivhaus EnerPHit standard a low-rise suburban dwelling in the southern Chinese town of Huilong, which has a hot summer/cold winter climate. An existing residential building in Huilong was chosen as a case study and a baseline digital model was created with the dynamic thermal simulation software DesignBuilder. The model was validated using 12 months of air temperature and relative humidity measurements from the building. The virtual retrofitting process of the baseline model involved insulating the envelope, improving the airtightness and adopting a high efficiency mechanical ventilation heat recovery system. It was more difficult to reach the EnerPHit cooling energy demand criterion than the heating target, and so additional passive cooling from shading and natural ventilation were adopted to finally achieve the EnerPHit standard. The final simulation results suggest that the EnerPHit standard for energy was successfully achieved, with a 90% heating energy demand reduction (down to 14.9 kWh/m(2)a), and a 70% cooling energy demand (down to 12.6 kWh/m(2)a), compared to the dwelling's baseline values. (C) 2020 Elsevier B.V. All rights reserved.
机译:本文考虑了潜在的加热和冷却能源,从改装到Passivhaus Enerphit标准,南方南部乌隆南部的低层郊区住宅,拥有炎热的夏季/寒冷的冬季气候。选择了汇龙的现有住宅建筑作为案例研究,并使用动态热仿真软件设计制造商创建基线数字模型。使用12个月的空气温度和建筑物相对湿度测量验证该模型。基线模型的虚拟改造过程涉及绝缘包络,改善气密性并采用高效机械通风热回收系统。更难以实现优化冷却能量需求标准比加热目标,因此采用遮阳和自然通气的额外被动冷却来最终实现Enerphit标准。最终的仿真结果表明,成功实现了能量的能量标准,减少了90%的加热能量需求(低至14.9千瓦时/米(2)),冷却能量需求为70%(低至12.6千瓦时/米(2)a),与住宅的基线值相比。 (c)2020 Elsevier B.v.保留所有权利。

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