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An investigation on life-cycle energy consumption and carbon emissions of building space heating and cooling systems

机译:建筑空间供暖和制冷系统的生命周期能耗和碳排放量调查

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Building space heating and cooling system built-in the town's infrastructure is an important factors for building energy consumption and carbon emission source. In order to understand the roles of building energy system in the global warming, this paper established a mathematical model of energy consumption and carbon emission for the building energy system. Two district heating systems for residential buildings and nine space heating and cooling systems for public buildings were selected to analyze their energy consumption, carbon emission and economy based on a calculating model. The results showed that the two residential building cases B-01 and B-02 of life-cycle carbon emissions are 743.60 kg/m(2) and 620.98 kg/m(2), the public building cases B-03 similar to b(l1) of life-cycle carbon emissions are 800.15-1377.85 kg/m(2). Equipment materials production, installation and maintenance phase embodied energy and carbon emissions proportion reached up to 6%similar to 14%, energy conservation and emissions reduction potential should not be neglected. The application of some renewable energy reaches a certain effect of energy conservation and emissions reduction in building, but the life cycle cost of emission reduction is much higher than carbon tax in China. (C) 2015 Elsevier Ltd. All rights reserved.
机译:城镇基础设施中内置的建筑空间供热和制冷系统是影响建筑能耗和碳排放源的重要因素。为了理解建筑能源系统在全球变暖中的作用,本文建立了建筑能源系统能耗和碳排放的数学模型。选择了两个住宅建筑区域供热系统和九个公共建筑空间供热和制冷系统,以基于计算模型分析其能耗,碳排放和经济性。结果表明,两个住宅建筑案例B-01和B-02的生命周期碳排放量分别为743.60 kg / m(2)和620.98 kg / m(2),公共建筑案例B-03与b( l1)的生命周期碳排放量为800.15-1377.85 kg / m(2)。设备材料生产,安装和维护阶段所体现的能源和碳排放比例达到了6%,接近14%,节能减排潜力不容忽视。在建筑中使用一些可再生能源可以达到一定的节能减排效果,但是减排的生命周期成本远远高于碳税。 (C)2015 Elsevier Ltd.保留所有权利。

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