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Real-Time Management of an Urban Groundwater Well Field Threatened by Pollution

机译:受到污染威胁的城市地下水井场的实时管理

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摘要

We present an optimal real-time control approach for the management of drinking water well fields. The methodology is applied to the Hardhof field in the city of Zuerich, Switzerland, which is threatened by diffuse pollution. The risk of attracting pollutants is higher if the pumping rate is increased and can be reduced by increasing artificial recharge (AR) or by adaptive allocation of the AR. The method was first tested in offline simulations with a three-dimensional finite element variably saturated subsurface flow model for the period January 2004-August 2005. The simulations revealed that (1) optimal control results were more effective than the historical control results and (2) the spatial distribution of AR should be different from the historical one. Next, the methodology was extended to a real-time control method based on the Ensemble Kalman Filter method, using 87 online groundwater head measurements, and tested at the site. The real-time control of the well field resulted in a decrease of the electrical conductivity of the water at critical measurement points which indicates a reduced inflow of water originating from contaminated sites. It can be concluded that the simulation and the application confirm the feasibility of the real-time control concept.
机译:我们提出了一种用于饮用水井场管理的最佳实时控制方法。该方法已应用于受到扩散污染威胁的瑞士苏黎世市的Hardhof油田。如果增加抽气速率,则吸引污染物的风险更高,并且可以通过增加人工补给(AR)或通过自适应分配AR来降低。该方法首先在2004年1月至2005年8月期间使用三维有限元可变饱和地下流动模型在离线模拟中进行了测试。模拟显示:(1)最佳控制结果比历史控制结果更有效;(2) )AR的空间分布应与历史空间有所不同。接下来,该方法被扩展为基于Ensemble Kalman滤波方法的实时控制方法,使用了87个在线地下水压头测量值,并在现场进行了测试。井场的实时控制导致关键测量点处水的电导率降低,这表明来自受污染地点的水流入减少。可以得出结论,仿真和应用证实了实时控制概念的可行性。

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  • 来源
    《Environmental Science & Technology》 |2010年第17期|p.6802-6807|共6页
  • 作者单位

    Institute of Environmental Engineering, ETH Zuerich,Wolfgang-Pauli-Strasse 15, 8093 Zuerich, Switzerland;

    rnInstitute of Environmental Engineering, ETH Zuerich,Wolfgang-Pauli-Strasse 15, 8093 Zuerich, Switzerland Agrosphere ICG-IV, Forschungszentrum Juelich GmbH, 52425 Jiilich, Germany;

    rnWaterworks Zuerich, Hardhof 32, 8064 Zuerich, Switzerland;

    rnTK Consult, Seefeldstrasse 285, 8008 Zuerich, Switzerland;

    rnInstitute of Environmental Engineering, ETH Zuerich,Wolfgang-Pauli-Strasse 15, 8093 Zuerich, Switzerland;

    rnInstitute of Environmental Engineering, ETH Zuerich,Wolfgang-Pauli-Strasse 15, 8093 Zuerich, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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