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Minimum-cost district heat production systems of different sizes under different environmental and social cost scenarios

机译:在不同的环境和社会成本情况下,不同规模的最小成本区域供热生产系统

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摘要

District heat systems can contribute to the achievement of social and environmental targets and energy security. District heat production systems (DHSs) vary in size depending on heat demand, which is influenced by several factors such as local climatic conditions and the sizes of the communities they serve. In this study, we analyzed options for minimum-cost DHSs of different sizes under different environmental and social cost scenarios. We calculated the production cost and primary energy use of district heat for minimum-cost options by considering a value of cogenerated electricity equivalent to the value of electricity produced in minimum-cost standalone condensing power plants. We varied the size of DHSs from 100 to 1800 GWh_(heat) Per year to investigate how size influences the minimum-cost compositions of production units and district heat production costs. We determined that the optimal composition and cost of district heat production is dependent on the size of the system, the overall load factor of heat demand and the technologies considered for both DHSs and reference power plants. In general, cogenerated district heat is more energy-efficient than district heat from heat-only production and also more cost-efficient, except for small DHSs, for which cogenerated district heat is more costly than heat-only production. The cost and primary energy use of district heat production is dependent on environmental and social cost scenarios; however, this dependence is reduced if a DHS is cost-minimized and based on cogenerated units.
机译:区域供热系统可有助于实现社会和环境目标以及能源安全。区域供热系统(DHS)的大小取决于热需求,这受多个因素的影响,例如当地的气候条件及其所服务的社区的规模。在这项研究中,我们分析了在不同的环境和社会成本情况下,不同规模的最低成本DHS的选项。我们通过考虑与最小成本的独立冷凝式发电厂产生的电价相当的热电发电量,计算了成本最低的区域供热的生产成本和一次能源使用。我们将DHS的大小从每年100到1800 GWh_(热)变化,以研究大小如何影响生产单位的最低成本构成和区域供热成本。我们确定,区域供热的最佳组成和成本取决于系统的大小,供热的总负荷系数以及DHS和参考发电厂考虑的技术。通常,除小规模的DHS以外,热电联产的区域供热要比纯热生产的区域供热更节能,同时成本效益也更高,因为小型DHS的热电联产的区域供热要比纯热生产昂贵。区域供热生产的成本和一次能源使用取决于环境和社会成本情景;但是,如果将DHS成本最小化并且基于热电联产单位,则可以减少这种依赖性。

著录项

  • 来源
    《Applied Energy》 |2014年第31期|881-893|共13页
  • 作者单位

    Sustainable Built Environment Group, Department of Built Environment and Energy Technology, Linnaeus University, 35195 Vaexjoe, Sweden;

    Sustainable Built Environment Group, Department of Built Environment and Energy Technology, Linnaeus University, 35195 Vaexjoe, Sweden;

  • 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

    Coproduction; District heat; Minimum cost; Environmental and social costs; Production scale;

    机译:联合制作;区域供热;最低费用;环境和社会成本;生产规模;
  • 入库时间 2022-08-18 00:09:13

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