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District heating (DH) network design and operation toward a system-wide methodology for optimizing renewable energy solutions (SMORES) in Canada: A case study

机译:区域供热(DH)网络的设计和运行,以优化加拿大可再生能源解决方案(SMORES)的系统范围的方法:一个案例研究

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摘要

This paper discusses the opportunities and challenges of implementing District Heating (DH) in Canada, with focus on the network design and operation. We selected for case study an urban area in Ottawa. First, we proved that the medium-temperature district heating (MTDH) (70℃≤T_(supply)≤90℃) had better energy delivery performance than high-temperature district heating (HTDH) (T_(supply) > 100 ℃), decreasing the heat loss by approximately 40%. The low-temperature networks (T_(supply)< 60 ℃) achieved even lower heat losses, but they required additional capital investment. The implementation of low-temperature district heating (LTDH) should be considered, thanks to the capability of including more renewable energy and excess industrial waste heat Next, the simulations show that DH can be implemented to supply present heating loads with medium temperature DH, and operate in the future at low temperature, after energy saving measures have been implemented in the buildings. Areas having linear heat densities greater than 3 MWh/(myr) could economically be supplied by DH. Areas with linear heat density below 1.5MWh/(myr) are considered not practically feasible with the current energy market situation in Canada. The paper discusses critical issues and quantifies the performance of design concepts for DH supply to low heat density areas. DH is a fundamental energy infrastructure and is part of the solution for sustainable energy planning in Canadian communities.
机译:本文讨论了在加拿大实施区域供热(DH)的机遇和挑战,重点是网络设计和运营。我们选择了渥太华市区作为案例研究。首先,我们证明中温区域供热(MTDH)(70℃≤T_(供应)≤90℃)具有比高温区域供热(HTDH)(T_(供应)> 100℃)更好的能量传递性能,减少约40%的热损失。低温网络(T_(供应)<60℃)实现了更低的热损失,但它们需要额外的资本投资。由于能够包含更多的可再生能源和多余的工业废热,因此应考虑实施低温区域供热(LTDH)。接下来,模拟表明DH可用于为当前供热负荷提供中等温度DH,并且在建筑物中采取了节能措施之后,将来可以在低温下运行。 DH可以经济地提供线性热密度大于3 MWh /(myr)的区域。在加拿大目前的能源市场形势下,线性热密度低于1.5MWh /(myr)的地区被认为不可行。本文讨论了关键问题并量化了向低热密度区域供热的设计概念的性能。 DH是基本的能源基础设施,是加拿大社区可持续能源规划解决方案的一部分。

著录项

  • 来源
    《Energy》 |2012年第1期|p.960-974|共15页
  • 作者单位

    Technical University of Denmark, Department of Civil Engineering, Section of Building Physics and Services, Brovej, Building 118, DK-2800 Kgs. Lyngby, Denmark;

    Natural Resources Canada, CanmetENERGY, 580 Booth Street, Ottawa, ON K1A 0E4 Canada;

    Natural Resources Canada, CanmetENERGY, 580 Booth Street, Ottawa, ON K1A 0E4 Canada;

    Technical University of Denmark, Department of Civil Engineering, Section of Building Physics and Services, Brovej, Building 118, DK-2800 Kgs. Lyngby, Denmark;

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

    district heating; renewable energy; network design; low-temperature; energy efficiency;

    机译:区域供热;再生能源;网络设计;低温;能源效率;

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