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Coordinated energy-environmental-economic optimisation of building retrofits for optimal energy performance on a macro-scale: A life-cycle cost-based evaluation

机译:协调能源 - 环境经济优化对宏观规模的最佳能源性能的建设改造:基于生命周期的成本评估

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摘要

Given that energy-efficiency policies focus on meso- or macro-scale interventions, it is imperative to establish a macro-scale evaluation approach for building retrofits to support policymaking in building energy conservation, management and sustainability. This study applies the generic idea of optimising the energy, economic and environmental outputs to propose a facile framework for evaluating the prospects of building retrofits on a macro-scale. Here, an extensive optimisation approach integrating life cycle cost evaluation and an environmental assessment is formulated, involving coordinated on-site survey, modelling and data analytics. The model framework is corroborated by a case study analysis focused on identifying the optimal retrofit solution for lowrise office buildings in Shanghai. Simulation results show that modifications in occupancy regime, improvements in natural ventilation, heating and cooling systems, cool roofs insulation and installation of renewable energy systems (such as geothermal and solar/photovoltaics) are the basic retrofit measures for a macro-scale intervention to attain maximum life-cycle benefits. Individually, an estimated investment cost for each retrofit project varied within RMB 1 - 5 million with a payback period 13 years, depending on the building characteristics. Overall, an investment estimated at RMB 1.7 billion (with a payback period of 6 years) is required to achieve 80% energy reduction with a carbon dioxide savings of - 243 Gg-CO2/yr. In summary, this study provides a guidance framework for stakeholders to evaluate investments on retrofit projects, including existing and prospective ones.
机译:鉴于能效政策专注于中型或宏观规模干预措施,必须建立一种宏观规模评估方法,以便建设改造,以支持建设节能,管理和可持续性的决策。本研究适用于优化能源,经济和环境产出的通用理念,以提出一个适用于评估宏观规模建设改造前景的便利框架。在此,配制了整合生命周期成本评估和环境评估的广泛优化方法,涉及协调现场调查,建模和数据分析。模型框架通过案例研究分析,专注于识别上海低层办公楼最佳改装解决方案。仿真结果表明,占用制度的修改,自然通风,加热和冷却系统的改进,凉爽的屋顶绝缘和可再生能源系统的安装(如地热和太阳能/光伏)是宏观规模干预才能获得的基本改造措施最大的生命周期益处。单独地,每个改造项目的估计投资成本在1 - 500万元内各种各样的回收期各种各样地变化,回收期& 13年,取决于建筑特征。总体而言,需要投资17亿元人民币(回收期6年),以实现80%的能量降低,含二氧化碳节省 - 243 GG-CO2 / YR。总之,本研究为利益攸关方提供了指导框架,以评估对改造项目的投资,包括现有和潜在的项目。

著录项

  • 来源
    《Energy Conversion & Management》 |2021年第9期|114327.1-114327.16|共16页
  • 作者单位

    Univ Nottingham Ningbo China Dept Architecture & Built Environm Univ Pk Ningbo Peoples R China|MIT Lab Mfg & Prod 77 Massachusetts Ave Cambridge MA 02139 USA|Shanghai Daren Construct Technol Grp Co Ltd Floor 1 Bldg 60 1818 Lianhang Rd Shanghai Peoples R China;

    Shanghai Daren Construct Technol Grp Co Ltd Floor 1 Bldg 60 1818 Lianhang Rd Shanghai Peoples R China;

    Univ Nottingham Ningbo China Dept Architecture & Built Environm Univ Pk Ningbo Peoples R China;

    Univ Nottingham Ningbo China Dept Architecture & Built Environm Univ Pk Ningbo Peoples R China;

    Univ Nottingham Ningbo China Dept Architecture & Built Environm Univ Pk Ningbo Peoples R China;

    Univ Nottingham UK Dept Architecture & Built Environm Univ Pk Nottingham England;

    Tongji Univ Coll Design & Innovat 281 Fuxin Rd Shanghai 200092 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Low-rise; Office buildings; Retrofit measures; Life-cycle cost analysis; Shanghai;

    机译:低层;办公楼;改造措施;生命周期成本分析;上海;

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