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The importance of adjusting the heating system after an energy-retrofit of buildings in a sub-Arctic climate

机译:在亚北极气候中建筑物的能量改造后调节加热系统的重要性

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There is a need to improve the understanding and the knowledge of energy efficiency measures for residential buildings in sub-Arctic climate regions. This paper presents an investigation of two identical multi-family residential buildings in the sub-Arctic climate of northern Sweden, before and after renovation. During the renovation, additional insulation of the external walls and new windows were installed in one building, while the other building retained its original envelope.The energy usage data for the past four heating seasons were collected, including data from before and after the renovation. Detailed thermal indoor climate data were gathered for specific months. The data from the two separate buildings showed that the renovation did not result in a significant improvement in energy usage. Prior to the renovation, the energy usage data showed a difference of 2-3% in the heat supply between the two buildings, and this difference persisted after the renovation. On the other hand, the indoor air temperature was raised. The renovated building had an indoor air temperature which was 2 degrees C higher than the not yet renovated building.IDA ICE models were constructed and validated with the measured data to investigate how a lower indoor air temperature would affect the energy usage and indoor thermal climate. The models showed that with a reduction in the indoor air temperature by 2 degrees C after the renovation, the thermal climate would maintain an acceptable level according to PMV/PPD standards, and would result in a 13-14% reduction of the heat supply during the cold months. With an annual reduction of 15%, the heat supply could be reduced by 270 MWh per year for the whole area where the buildings are located. This clearly demonstrates the importance of adjusting the heating system after an energy efficiency measure has been performed. (C) 2020 Elsevier B.V. All rights reserved.
机译:有必要改善亚北极气候区住宅建筑能效措施的理解和知识。本文在翻新之前和之后,对瑞典北极气候的两个相同的多家庭住宅建筑进行了调查。在装修期间,在一个建筑中安装了外墙和新窗户的额外绝缘,而另一个建筑物则保留了其原始信封。收集了过去四个加热季节的能源使用数据,包括从翻新之前和之后的数据。详细的热室内气候数据收集了特定的月份。两个独立建筑的数据显示,改造并未导致能源使用的显着改善。在经过改造之前,能量使用数据在两个建筑物之间的热源中显示出2-3%的差异,并且在改造后持续存在这种差异。另一方面,升高室内空气温度。经过翻新的建筑物的室内空气温度高于尚未更新的建筑物的室内空气温度。通过测量的数据构造和验证了尚未进行了翻新的建筑物。研究室内空气温度如何影响能量使用和室内热气候。该模型表明,在装修后,在室内空气温度下减少2℃,热气致性可根据PMV / PPD标准保持可接受的水平,并导致供热期间减少13-14%寒冷的月份。年减少15%,热源可以减少建筑物所在的整个领域的每年270兆瓦。这清楚地展示了在进行能效措施之后调整加热系统的重要性。 (c)2020 Elsevier B.v.保留所有权利。

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