首页> 外文期刊>Water resources research >Characterization of water content dynamics and tracer breakthrough by 3-D electrical resistivity tomography (ERT) under transient unsaturated conditions
【24h】

Characterization of water content dynamics and tracer breakthrough by 3-D electrical resistivity tomography (ERT) under transient unsaturated conditions

机译:瞬态不饱和条件下3-D电阻层析成像(ERT)表征水分动力学和示踪剂突破

获取原文
获取原文并翻译 | 示例
           

摘要

Characterization of preferential flow and transport is still a major challenge but may be improved employing noninvasive, tomographic methods. In this study, 3-D time lapse electrical resistivity tomography (ERT) was employed during infiltration on an undisturbed, unsaturated soil core in a laboratory lysimeter. A tracer breakthrough was conducted during transient conditions by applying a series of short-term infiltrations, simulating natural precipitation events. The electrical response was quantitatively validated using data from a multicompartment suction sampler. Water content probes were also installed for ground-truthing of ERT responses. Water content variations associated with an infiltration front dominated the electrical response observed during individual short-term infiltration events, permitting analysis of water content dynamics from ERT data. We found that, instead of the application of an uncertain petrophysical function, shape measures of the electrical conductivity response might be used for constraining hydrological models. Considering tracer breakthroughs, the ERT observed voxel responses from time lapse tomograms at constant water contents in between infiltration events were used to quantitatively characterize the breakthrough curve. Shape parameters of the breakthrough derived from ERT, such as average velocity, were highly correlated with the shape parameters derived from local tracer breakthrough curves observed in the compartments of the suction plate. The study demonstrates that ERT can provide reliable quantitative information on both, tracer breakthroughs and water content variations under the challenging conditions of variable background electrical conductivity of the pore solution and non steady-state infiltration.
机译:优先流动和运输的表征仍然是一个主要挑战,但可以采用无创层析成像方法加以改进。在这项研究中,在实验室渗漏仪的未扰动,不饱和土壤芯上进行渗透的过程中,采用了3-D时移电阻层析成像(ERT)。通过应用一系列短期入渗模拟自然降水事件,在瞬态条件下进行了示踪剂突破。使用来自多隔室抽吸采样器的数据对电响应进行了定量验证。还安装了含水量探针,用于对ERT响应进行地面验证。与渗透锋有关的水含量变化支配了在各个短期渗透事件中观察到的电响应,从而允许根据ERT数据分析水含量动态。我们发现,代替应用不确定的岩石物理函数,可以将电导率响应的形状度量用于约束水文模型。考虑到示踪剂的突破,ERT使用渗透事件之间恒定水含量的时间断层层析成像观察到的体素响应,以定量表征突破曲线。从ERT获得的突破的形状参数(例如平均速度)与从在吸盘隔室中观察到的局部示踪剂突破曲线得出的形状参数高度相关。该研究表明,在孔隙溶液背景电导率可变和非稳态渗透的挑战性条件下,ERT可以提供有关示踪剂突破和水含量变化的可靠定量信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号