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Low carbon heating and cooling of residential buildings in cities in the hot summer and cold winter zone - A bottom-up engineering stock modeling approach

机译:炎热夏季和冷冬区城市住宅建筑物的低碳加热和冷却 - 自下而上的工程股模拟方法

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摘要

Building stock modeling can predict stock energy consumption and carbon emissions for both current and future conditions to inform building design and retrofitting policies. A 'bottom-up' engineering approach for building stock energy modeling is attractive to built environment energy researchers because of its capacity for detailed energy analysis. However, such studies in China have been very limited to date. The aim of this research is to develop a modeling approach to residential building stock energy consumption for space heating and cooling. A holistic four-step approach of archetype configurations: building performance simulation: stock floor area estimation and local weather adjustment is presented. The Chongqing municipality was chosen to demonstrate the approach. The results show that adopting the northern China standard pattern of central space heating for Chongqing's urban residential stock is not feasible because it dramatically increases primary energy consumption and therefore carbon dioxide emissions from space heating usage. By applying energy conservation retrofit measures to the Chongqing urban residential stock, the total energy consumption for space heating and cooling and resulting carbon dioxide emissions can be significantly reduced, with estimated reductions of 57.6% -60.7% in 2020 and 553%-57.2% in 2050. The method described can provide useful information and guidance for policymakers contemplating energy retrofit schemes. (C) 2019 Elsevier Ltd. All rights reserved.
机译:建筑股票建模可以预测目前和未来条件的库存能量消耗和碳排放,以告知建筑设计和改造政策。建筑物股票能建模的“自下而上”工程方法对环境能源研究人员具有吸引力,因为它具有详细能源分析的能力。然而,中国的研究已经非常有限。本研究的目的是开发用于空间加热和冷却的住宅楼库存能量消耗的建模方法。原型配置的整体四步方法:建立性能模拟:储蓄地区估算和局部天气调整。重庆市被选中以证明这种方法。结果表明,采用中国北方的中央空间加热模式,重庆市的城市住宅库存是不可行的,因为它显着提高了初级能耗,从而提高了空间加热的二氧化碳排放。通过将节能改造措施应用于重庆城市住宅库存,可以显着降低空间加热和冷却总能耗,降低二氧化碳排放,估计降低57.6%-60.7%,在2020年和553%-57.2% 2050.所描述的方法可以为决定能量改造方案提供有用的信息和指导。 (c)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of Cleaner Production》 |2019年第may20期|271-288|共18页
  • 作者单位

    Chongqing Univ Minist Educ Joint Int Res Lab Green Bldg & Built Environm Chongqing Peoples R China;

    Chongqing Univ Minist Educ Joint Int Res Lab Green Bldg & Built Environm Chongqing Peoples R China|Univ Reading Sch Built Environm Reading RG6 6DF Berks England;

    Chongqing Univ Minist Educ Joint Int Res Lab Green Bldg & Built Environm Chongqing Peoples R China;

    Chongqing Univ Minist Educ Joint Int Res Lab Green Bldg & Built Environm Chongqing Peoples R China;

    Chongqing Univ Minist Educ Joint Int Res Lab Green Bldg & Built Environm Chongqing Peoples R China;

    Univ Cambridge Dept Architecture Cambridge CB2 1PX England;

    Chongqing Univ Minist Educ Joint Int Res Lab Green Bldg & Built Environm Chongqing Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Residential buildings; Space heating and cooling; Bottom-up engineering model; Building stock; Energy consumption; Future climate;

    机译:住宅建筑;空间加热和冷却;自下而上的工程模式;建筑物库存;能源消耗;未来的气候;

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