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首页> 外文期刊>Environmental engineering and management journal >BUILT ENVIRONMENTS AND 'DIRECT' ENERGY CONSUMPTION - A CONCEPTUAL METHODOLOGY FRAMEWORK TO FACILITATE DELIVERY OF THE CLIMATE CHANGE ACT 2008
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BUILT ENVIRONMENTS AND 'DIRECT' ENERGY CONSUMPTION - A CONCEPTUAL METHODOLOGY FRAMEWORK TO FACILITATE DELIVERY OF THE CLIMATE CHANGE ACT 2008

机译:内置环境和“直接”能源消耗-促进2008年《气候变化法案》交付的概念方法框架

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摘要

The generation of energy via fossil fuel burning results in carbon emissions. These emissions contribute to the climate change of our world, particularly in terms of global warming. On the contrary, energy has become blood of life for the existence and functioning of our built environments. In order to control carbon emissions, the UK has taken lead among many countries around the globe and especially in Europe by passing a bill for the Climate Change Act 2008 which legally binds the UK to at least 80% reduction of carbon emissions by 2050 and 34% by 2020 which is fast approaching. However, the review of literature and models to date has revealed that to help meet these legal carbon cut targets set by the Act, there is a lack of unified knowledge-base approaches that could integrate all energy-related aspects of buildings in terms of these issues: establishing 1990 base-level and current carbon footprint of a given building and then drawing comparisons between the two to set milestones; breakdown of the energy consumption amongst various energy-consuming items of the building; identification of appropriate high energy-consuming items in the building; maintenance and refurbishment; fabric and non-fabric; implications of relevant terminologies; cost-benefit analysis of energy-saving technologies and pay-back time in connection to meeting aforesaid legal carbon cut targets. On the basis of identified knowledge gaps and attempting to bridge them, this paper develops and presents such an unified framework of a conceptual methodology that outlines fundamentals of a whole-system procedure while catering for all the aforesaid issues.
机译:通过化石燃料燃烧产生的能量导致碳排放。这些排放物对我们世界的气候变化做出了贡献,特别是在全球变暖方面。相反,能源已成为我们建筑环境的存在和功能的生命之血。为了控制碳排放,英国通过了《 2008年气候变化法》法案,在全球许多国家(尤其是欧洲)中处于领先地位,该法案在法律上规定英国到2050年应至少减排80%,34到2020年的百分比正在快速接近。然而,迄今为止对文献和模型的审查表明,为了帮助实现该法案规定的这些合法的碳减排目标,目前缺乏统一的知识库方法可以将建筑物在能源方面的所有方面整合在一起。问题:确定给定建筑物的1990年基础水平和当前碳足迹,然后对两者进行比较以设定里程碑;建筑物各种耗能项目中的能耗细分;确定建筑物中适当的高耗能物品;维护和翻新;面料和非面料;相关术语的含义;节能技术的成本效益分析和与实现上述法定碳减排目标有关的投资回收期。基于已识别的知识差距并尝试弥补这些差距,本文开发并提出了一种概念方法的统一框架,该框架概述了整个系统过程的基础,同时满足了所有上述问题。

著录项

  • 来源
    《Environmental engineering and management journal》 |2016年第5期|1155-1171|共17页
  • 作者单位

    Univ Exeter, CEMPS, CWS, Harrison Bldg,North Pk Rd, Exeter, Devon, England|Univ Greenwich, SBERG, Avery Hill Campus,Mansion Site,Bexley Rd, London, England|Leeds Metropolitan Univ, Sch Built Environm & Engn, Ctr Built Environm, 17 Queen Sq, Leeds, W Yorkshire, England|Univ Greenwich, FM, Avery Hill Campus,Southwood Site,Avery Hill Rd, London, England;

    Univ Greenwich, SBERG, Avery Hill Campus,Mansion Site,Bexley Rd, London, England;

    Univ Exeter, CEMPS, CWS, Harrison Bldg,North Pk Rd, Exeter, Devon, England;

    Leeds Metropolitan Univ, Sch Built Environm & Engn, Ctr Built Environm, 17 Queen Sq, Leeds, W Yorkshire, England;

    Univ Greenwich, FM, Avery Hill Campus,Southwood Site,Avery Hill Rd, London, England;

    Brunel Univ, Sch Engn & Design, London, England;

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

    built environment; carbon footprint; climate change;

    机译:建筑环境;碳足迹;气候变化;

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