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Heat demand profiles of energy conservation measures in buildings and their impact on a district heating system

机译:建筑物节能措施的热需求曲线及其对区域供热系统的影响

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摘要

This study highlights the forthcoming problem with diminishing environmental benefits from heat demand reducing energy conservation measures (ECM) of buildings within district heating systems (DHS), as the supply side is becoming "greener" and more primary energy efficient. In this study heat demand profiles and annual electricity-to-heat factors of ECMs in buildings are computed and their impact on system efficiency and greenhouse gas emissions of a Swedish biomass fuelled and combined heat and power utilising DHS are assessed. A weather normalising method for the DHS heat load is developed, combining segmented multivariable linear regressions with typical meteorological year weather data to enable the DHS model and the buildings model to work under the same weather conditions. Improving the buildings' envelope insulation level and thereby levelling out the DHS heat load curve reduces greenhouse gas emissions and improves primary energy efficiency. Reducing household electricity use proves to be highly beneficial, partly because it increases heat demand, allowing for more cogeneration of electricity. However the other ECMs considered may cause increased greenhouse gas emissions, mainly because of their adverse impact on the cogeneration of electricity. If biomass fuels are considered as residuals, and thus assigned low primary energy factors, primary energy efficiency decreases when implementing ECMs that lower heat demand.
机译:这项研究突显了即将出现的问题,即随着供热方变得“更绿色”且更主要地提高了能源效率,减少了区域供热系统(DHS)中建筑物的热量需求,从而降低了建筑物的节能措施(ECM),从而减少了环境效益。在这项研究中,计算了建筑物中ECM的热量需求曲线和年电热系数,并评估了它们对瑞典生物质燃料和DHS的热电联产对系统效率和温室气体排放的影响。开发了一种用于DHS热负荷的天气归一化方法,将分段多变量线性回归与典型的气象年度天气数据相结合,以使DHS模型和建筑物模型能够在相同的天气条件下工作。改善建筑物的围护隔热等级,从而使DHS热负荷曲线趋于平稳,可以减少温室气体排放并提高一次能源利用效率。事实证明,减少家庭用电非常有好处,部分原因是它增加了热量需求,使更多的热电联产成为可能。但是,所考虑的其他ECM可能导致温室气体排放增加,这主要是因为它们对热电联产产生了不利影响。如果将生物质燃料视为残渣,并因此分配了较低的一次能源因子,则在实施降低热量需求的ECM时,一次能源效率会降低。

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