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The thermal impact of subsurface building structures on urban groundwater resources 一 A paradigmatic example

机译:地下建筑结构对城市地下水资源的热影响一范例

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摘要

Shallow subsurface thermal regimes in urban areas are increasingly impacted by anthropogenic activities, which include infrastructure development like underground traffic lines as well as industrial and residential subsurface buildings. In combination with the progressive use of shallow geothermal energy systems, this results in the so-called subsurface urban heat island effect. This article emphasizes the importance of considering the thermal impact of subsurface structures, which commonly is underestimated due to missing information and of reliable subsurface temperature data. Based on synthetic heat-transport models different settings of the urban environment were investigated, including: (1) hydraulic gradients and conductivities, which result in different groundwater flow velocities; (2) aquifer properties like groundwater thickness to aquitard and depth to water table; and (3) constructional features, such as building depths and thermal properties of building structures. Our results demonstrate that with rising groundwater flow velocities, the heat-load from building structures increase, whereas down-gradient groundwater temperatures decrease. Thermal impacts on subsurface resources therefore have to be related to the permeability of aquifers and hydraulic boundary conditions. In regard to the urban settings of Basel, Switzerland, flow velocities of around 1 m d_1 delineate a marker where either down-gradient temperature deviations or heat-loads into the subsurface are more relevant. Furthermore, no direct thermal influence on groundwater resources should be expected for aquifers with groundwater thicknesses larger 10 m and when the distance of the building structure to the groundwater table is higher than around 10 m. We demonstrate that measuring temperature changes down-gradient of subsurface structures is insufficient overall to assess thermal impacts, particularly in urban areas. Moreover, in areas which are densely urbanized,and where groundwater flow velocities are low, appropriate measures for assessing thermal impacts should specifically include a quantification of heat-loads into the subsurface which result in a more diffuse thermal contamination of urban groundwater resources.
机译:城市地区的浅层地下热力状况越来越受到人为活动的影响,其中包括地下交通线以及工业和住宅地下建筑物等基础设施建设。与浅层地热能系统的逐步使用相结合,这会导致所谓的地下城市热岛效应。本文强调考虑地下结构的热影响的重要性,由于缺少信息和可靠的地下温度数据,这种影响通常被低估了。基于综合传热模型,研究了城市环境的不同设置,包括:(1)水力梯度和电导率,导致地下水流速不同; (2)含水层的性质,例如地下水厚度至水准和深度至地下水位; (3)建筑特征,例如建筑深度和建筑结构的热特性。我们的结果表明,随着地下水流速的升高,建筑结构产生的热负荷增加,而地下水梯度下降则温度下降。因此,对地下资源的热影响必须与含水层的渗透性和水力边界条件有关。关于瑞士巴塞尔的城市环境,大约1 m d_1的流速描绘了一个标记,在该标记处,向下的温度偏差或进入地下的热负荷更为相关。此外,对于地下水厚度大于10 m的含水层以及建筑结构与地下水位的距离大于10 m左右的含水层,不应期望对地下水资源有直接的热影响。我们证明,测量地下结构的温度变化下降梯度不足以总体上评估热影响,特别是在城市地区。此外,在城市化密集地区和地下水流速较低的地区,评估热影响的适当措施应特别包括对地下热负荷的量化,这将导致城市地下水资源的热污染扩散程度更大。

著录项

  • 来源
    《The Science of the Total Environment》 |2017年第15期|87-96|共10页
  • 作者单位

    Department of Environmental Sciences, Applied and Environmental Geology, University of Basel, Bernoullistr. 32,4056 Basel, Switzerland;

    Department of Environmental Sciences, Applied and Environmental Geology, University of Basel, Bernoullistr. 32,4056 Basel, Switzerland;

    Department of Environmental Sciences, Applied and Environmental Geology, University of Basel, Bernoullistr. 32,4056 Basel, Switzerland;

    Agency for Environment and Energy Basel-Stadt (AUE BS), Hochbergstrasse 158,4019 Basel, Switzeriand;

    Department of Environmental Sciences, Applied and Environmental Geology, University of Basel, Bernoullistr. 32,4056 Basel, Switzerland;

    Department of Environmental Sciences, Applied and Environmental Geology, University of Basel, Bernoullistr. 32,4056 Basel, Switzerland;

    Geologial Survey of Spam (IGME), Cf Manuel Lasala n° 44,9°B, 50006 Zaragoza, Spain;

    Department of Environmental Sciences, Applied and Environmental Geology, University of Basel, Bernoullistr. 32,4056 Basel, Switzerland;

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

    Paradigmatic example; Subsurface structures; Heat-loads of buildings; Urban groundwater management; Subsurface urban heat island;

    机译:范例地下结构;建筑物的热负荷;城市地下水管理;地下城市热岛;
  • 入库时间 2022-08-17 13:49:10

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