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New configurations of district heating and cooling system based on absorption and compression chillers driven by waste heat of flue gas from coke ovens

机译:基于吸收式和压缩式冷水机的新区域供热和制冷系统配置,该冷却水由焦炉的烟气余热驱动

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摘要

To recover waste heat for space heating and cooling, three new district heating and cooling systems based on absorption and compression chillers driven by waste heat of flue gas from coke ovens are proposed, and their significant differences are located in the energy station. The energy station of the first proposed scheme mainly consists of a double-effect absorption chiller, a single-effect absorption chiller, a water-to-water plate heat exchanger, a compression chiller for ice thermal energy storage, and a liquid desiccant regenerator. Compared with the first proposed scheme, the second proposed scheme has no liquid desiccant regenerator in the energy station. Compared with the second proposed scheme, the third proposed scheme has no single-effect absorption chiller in the energy station. The three proposed schemes are analyzed from the perspective of thermodynamic performance and financial benefit. The results show that among the three proposed schemes, the first proposed scheme has the highest thermodynamic performance, and the best financial benefit, and thus its configuration is optimal. The annual system coefficient of performance and annual product exergy efficiency of the first proposed scheme are about 19.8 and 44.1%, and its cost-effective transportation distance of waste heat can be up to 41.5 km.
机译:为了回收用于空间加热和冷却的废热,提出了三个基于吸收式和压缩式冷却器的新区域加热和冷却系统,这些吸收式和压缩式冷却器由焦炉烟气的废热驱动,它们的显着区别位于能源站。提出的第一个方案的能量站主要由双效吸收式制冷机,单效吸收式制冷机,水对水板式换热器,用于冰热能存储的压缩式制冷机和液体干燥剂蓄热器组成。与第一个提议的方案相比,第二个提议的方案在能量站中没有液体干燥剂再生器。与第二种方案相比,第三种方案在能源站没有单效吸收式制冷机。从热力学性能和经济效益的角度分析了这三种方案。结果表明,在这三种方案中,第一种方案具有最高的热力学性能和最佳的经济效益,因此其配置是最优的。第一个提出的方案的年系统性能系数和年产品火用效率分别为19.8%和44.1%,其废热的成本有效的运输距离可以达到41.5 km。

著录项

  • 来源
    《Energy》 |2020年第15期|116707.1-116707.14|共14页
  • 作者

  • 作者单位

    Beijing Research Center of Sustainable Energy and Buildings Beijing University of Civil Engineering and Architecture 100044 Beijing China;

    Department of Building Science and Technology Tsinghua University 100084 Beijing China;

    Department of Energy Planning & Design Tsinghua Planning & Design Institute 100085 Beijing China;

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

    Waste heat recovery; District heating and cooling; Thermodynamic performance; Configuration optimization; Energy-saving; Energy cascade utilization;

    机译:余热回收;区域供热和制冷;热力学性能;配置优化;节能;能量级联利用;
  • 入库时间 2022-08-18 05:21:45

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