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Optimizing the insulation thickness of walls of existing buildings with CHP-based district heating systems

机译:利用基于CHP的地区加热系统优化现有建筑物墙壁的绝缘厚度

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摘要

The heat demand of existing buildings can be reduced by improving the thermal properties of building envelope. Moreover, the heat medium temperature of district heating (DH) systems may also be influenced by adding insulation materials. An optimization model used to determine the optimum economic insulation thickness of walls (OEITW) of existing buildings with combined heat and power (CHP)-based DH systems was established based on energy grade and amount of energy. An existing residential building in Beijing, China, was used as the basis of the case study. The impact of insulation thickness (IT) on energy grade and amount of energy was studied. Sensitivity analysis method was used to investigate the impact of electricity price, interest rate, insulation material price and absorption heat pump price on the OEITW and minimum annual total cost (MATC). Results show that the OEITW and MATC can be obtained by using the optimization model. The heat demand and heat medium temperature can be lowered through adding insulation materials, resulting in the reduction of energy grade and amount of energy. Sensitivity analysis results show that the impact of sensitivity factors on the OEITW and MATC are different.
机译:通过改善建筑包络的热性能,可以减少现有建筑物的热需求。此外,区域加热(DH)系统的热介质温度也可通过添加绝缘材料来影响。基于能量级和能量的能量建立,用于确定现有建筑物的墙壁(OEINW)的最佳经济绝缘厚度的优化模型,基于能量等级和能量。中国北京现有的住宅楼被用作案例研究的基础。研究了绝缘厚度(IT)对能量等级和能量量的影响。敏感性分析方法用于研究电价,利率,绝缘材料价格和吸收热泵价格对oeitw和最低年度总成本(MATC)的影响。结果表明,通过使用优化模型可以获得oeitw和matc。通过添加绝缘材料可以降低热需求和热介质温度,从而降低能量级和能量量。敏感性分析结果表明,仪表和MATC对敏感性因素的影响是不同的。

著录项

  • 来源
    《Energy》 |2019年第2期|116262.1-116262.16|共16页
  • 作者单位

    School of Mechanical Engineering Beijing Institute of Petrochemical Technology Beijing 102617 China;

    School of Mechanical Engineering Beijing Institute of Petrochemical Technology Beijing 102617 China;

    China Environmental Resources Technology Co. Ltd Beijing 100012 China;

    School of Mechanical Engineering Beijing Institute of Petrochemical Technology Beijing 102617 China;

    Engineering and Technology R&D Center of Clean Air Conditioning in Colleges of Shandong Shandong Huayu University of Technology Dezhou 253000 China;

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

    CHP-Based DH systems; Optimum economic insulation thickness; Optimization model; Amount of energy; Energy grade;

    机译:基于CHP的DH系统;最佳的经济绝缘厚度;优化模型;能量数量;能量等级;

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