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Evaluation of low-exergy heating and cooling systems and topology optimization for deep energy savings at the urban district level

机译:低渗加热和冷却系统和拓扑优化对城市区级的深度节能评价

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摘要

District energy systems have the potential to achieve deep energy savings by leveraging the density and diversity of loads in urban districts. However, planning and adoption of district thermal energy systems is hindered by the analytical burden and high infrastructure costs. It is hypothesized that network topology optimization would enable wider adoption of advanced (ambient temperature) district thermal energy systems, resulting in energy savings. In this study, energy modeling is used to compare the energy performance of "conventional" and "advanced" district thermal energy systems at the urban district level, and a partial exhaustive search is used to evaluate a heuristic for the topology optimization problem. For the prototypical district considered, advanced district thermal energy systems mated with low-exergy building heating and cooling systems achieved a source energy use intensity that was 49% lower than that of conventional systems. The minimal spanning tree heuristic was demonstrated to be effective for the network topology optimization problem in the context of a prototypical district, and contributes to mitigating the problem's computational complexity. The work presented in this paper demonstrates the potential of advanced district thermal energy systems to achieve deep energy savings, and advances to addressing barriers to their adoption through topology optimization.
机译:区域能源系统通过利用城区负荷的密度和多样性,有可能节省深度节能。然而,规划和采用区热能系统受到分析负担和高基础设施成本的阻碍。假设网络拓扑优化将能够更广泛地采用先进(环境温度)区热能系统,从而节省能源。在这项研究中,能量建模用于比较城市地区级别“常规”和“高级”区热能系统的能量性能,并且使用部分详尽的搜索来评估拓扑优化问题的启发式。对于审议的原型区域,具有低通射建筑加热和冷却系统的先进地区热能系统实现了比传统系统低49%的源能量使用强度。最小的生成树启发式启发式在原型地区的背景下对网络拓扑优化问题有效,并有助于减轻问题的计算复杂性。本文提出的工作展示了先进地区热能系统的潜力,以实现深度节能,并通过拓扑优化来解决其采用的障碍。

著录项

  • 来源
    《Energy Conversion & Management》 |2020年第10期|113106.1-113106.16|共16页
  • 作者单位

    Univ Colorado UCB 428 Boulder CO 80309 USA|Natl Renewable Energy Lab 15013 Denver West Pkwy Golden CO 80401 USA;

    Univ Colorado UCB 428 Boulder CO 80309 USA|Natl Renewable Energy Lab 15013 Denver West Pkwy Golden CO 80401 USA|Renewable & Sustainable Energy Inst 027 UCB Suite N321 Boulder CO 80309 USA;

    Univ Colorado UCB 428 Boulder CO 80309 USA|Natl Renewable Energy Lab 15013 Denver West Pkwy Golden CO 80401 USA|Renewable & Sustainable Energy Inst 027 UCB Suite N321 Boulder CO 80309 USA;

    Penn State Univ 104 Engn Unit A University Pk PA 16802 USA;

  • 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

    Fifth-generation district heating and cooling systems; Topology analysis; Hydraulic network modeling;

    机译:第五代区供暖和冷却系统;拓扑分析;液压网络建模;

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