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Combined geophysical methods for mapping infiltration pathways at the Aurora Water Aquifer recharge and recovery site.

机译:结合地球物理方法来绘制极光水蓄水量补给和恢复站点的入渗途径的图。

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摘要

Although aquifer recharge and recovery systems are a sustainable, decentralized, low cost, and low energy approach for the reclamation, treatment, and storage of post- treatment wastewater, they can suffer from poor infiltration rates and the development of a near-surface clogging layer within infiltration ponds. One such aquifer recharge and recovery system, the Aurora Water site in Colorado, U.S.A, functions at about 25% of its predicted capacity to recharge floodplain deposits by flooding infiltration ponds with post-treatment wastewater extracted from river bank aquifers along the South Platte River. The underwater self-potential method was developed to survey self-potential signals at the ground surface in a flooded infiltration pond for mapping infiltration pathways. A method for using heat as a groundwater tracer within the infiltration pond used an array of in situ high-resolution temperature sensing probes. Both relatively positive and negative underwater self-potential anomalies are consistent with observed recovery well pumping rates and specific discharge estimates from temperature data. Results from electrical resistivity tomography and electromagnetics surveys provide consistent electrical conductivity distributions associated with sediment textures. A lab method was developed for resistivity tests of near-surface sediment samples. Forward numerical modeling synthesizes the geophysical information to best match observed self- potential anomalies and provide permeability distributions, which is important for effective aquifer recharge and recovery system design, and optimization strategy development.
机译:尽管含水层补给和回收系统是一种用于处理后废水的回收,处理和存储的可持续,分散,低成本和低能耗的方法,但它们仍会遭受渗透率低和近地表堵塞层发展的困扰。在渗透池内。一种这样的含水层补给和回收系统,即美国科罗拉多州的Aurora水站点,其功能是通过使用从南普拉特河沿岸含水层提取的后处理废水淹没入渗池来补给洪泛区沉积物,从而为洪泛区沉积物补给。水下自电势方法被开发用于在淹没的浸润池中调查地面的自电势信号,以绘制渗透路径。在渗透池中利用热量作为地下水示踪剂的一种方法是使用一系列原位高分辨率温度感测探针。相对正的和负的水下自电势异常都与观测到的采油井抽水速率和温度数据的特定排放估算值一致。电阻层析成像和电磁调查的结果提供了与沉积物质地相关的一致的电导率分布。开发了一种实验室方法用于近地表沉积物样品的电阻率测试。前向数值模型综合了地球物理信息,以最佳地匹配观测到的自电位异常并提供渗透率分布,这对于有效的含水层补给和回收系统设计以及优化策略的开发很重要。

著录项

  • 作者

    Jasper, Cameron A.;

  • 作者单位

    Colorado School of Mines.;

  • 授予单位 Colorado School of Mines.;
  • 学科 Hydrology.;Geophysics.
  • 学位 M.S.
  • 年度 2014
  • 页码 57 p.
  • 总页数 57
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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