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City-scale solutions for the energy use of shallow urban subsurface resources - Bridging the gap between theoretical and technical potentials

机译:浅层城市地下资源能源利用的城市规模解决方案-弥合理论和技术潜力之间的差距

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摘要

One solution for reducing the current consumption of fossil fuels is a more frequent use of shallow geothermal energy. However, particularly regarding urban subsurface resources, increased use conflicts are predictable. Consequently, reasonable exploitation of subsurface resources requires an assessment of technologically achievable energy potentials with scientific based tools. We present application-oriented management tools which target on deriving shallow subsurface energy potentials. 3D groundwater flow and heat-transport models are used to capture groundwater flow and heat-transport dynamics on the city- and quarter-scale, 2D box models are used to quantify technically feasible extraction rates of well doublets for groundwater heat pump systems.For Basel (Switzerland), prospective large theoretical energy potentials can be derived for areas with high advective heat flux and high temperature gradients. Likewise, single city quarters are suitable for 'active' thermal use with well doublets, whereas thermal power potentials reach 1.2 MW. Regarding 'passive' installations of energy absorbers in subsurface structures located within the groundwater, energy potentials amount to 4 and up to 40 W m(-2).The assessment results can be integrated into urban energy plans and support architects, city planners and potential users to acquire initial site-specific information on the technical feasibility of shallow geothermal energy systems. (C) 2019 Elsevier Ltd. All rights reserved.
机译:减少当前化石燃料消耗的一种解决方案是更频繁地使用浅层地热能。但是,尤其是在城市地下资源方面,使用冲突会增加。因此,合理开采地下资源需要使用科学工具评估技术上可实现的能源潜力。我们介绍了面向应用程序的管理工具,其目标是推导浅层地下能量势。使用3D地下水流量和热传递模型来捕获城市和四分之一尺度上的地下水流量和热传递动力学,使用2D盒子模型来量化技术上可行的地下水热泵系统双井的提取率。 (瑞士),对于具有高对流热通量和高温梯度的区域,可以推导出预期的大理论能量势。同样,单个城市的住宅区也适合于“主动式”热力双井,而热电势则达到1.2兆瓦。对于位于地下水中的地下结构中的“无源”能量吸收器装置,能量势能为4到40 W m(-2)。评估结果可以整合到城市能源计划中,并为建筑师,城市规划者和潜力提供支持用户可以获取有关浅层地热能源系统技术可行性的特定地点的初始信息。 (C)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2020年第1期|751-763|共13页
  • 作者

  • 作者单位

    Univ Basel Dept Environm Sci Appl & Environm Geol Basel Switzerland;

    Tech Univ Munich Arcisstr 21 D-80333 Munich Germany;

    Univ Basel Dept Environm Sci Appl & Environm Geol Basel Switzerland|Kiefer & Studer AG Bruggstr 12a CH-4153 Reinach Switzerland;

    Geol Survey Spain IGME C Rios Rosas 23 Madrid 28003 Spain;

  • 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

    Energy planning; SUHI; Waste heat; Advective energy transport; City-scale; City quarters;

    机译:能源规划;SUHI;余热;正能量传输;城市规模;市区;
  • 入库时间 2022-08-18 05:21:43

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