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Numerical simulation of tracer tests in heterogeneous aquifer

机译:非均质含水层示踪试验的数值模拟

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摘要

A large-scale, natural-gradient tracer test in a heterogeneous aquifer at a site near Columbus, Miss, is simulated using three-dimensional (3D) hydraulic conductivity distributions derived from the borehole flow-meter test data. The simulated plume is more sensitive to the way the hydraulic conductivity field is interpolated from the measured data than it is to the dispersivity value. The transport model with longitudinal dispersivities in the range of 1-5 m can reasonably reproduce the observed plume to a certain concentration limit, but fails to reproduce the significant spreading of the tracer at diluted concentrations as observed in tyhe field. This modeling study illustrates the formidable challenges in modeling and monitoring contaminant transport in very heterogeneous aquifers and points to the needs for new, innovative monitoring techniques that can be applied to characterize the spatial and temporal variabilities in the aquifer properties at scales suitable for detailed transport modeling.
机译:使用从钻孔流量计测试数据得出的三维(3D)导水率分布,模拟了密西西比州哥伦布附近某地点非均质含水层中的大规模自然梯度示踪剂测试。模拟的羽状流对从测量数据中插入水力传导率场的方式比对分散度值更敏感。纵向分散度在1-5 m范围内的运输模型可以合理地将观测到的羽流重现到一定的浓度极限,但不能像在田野中所观察到的那样,重现示踪剂在稀释浓度下的显着扩散。这项建模研究说明了在非常异质的含水层中建模和监测污染物迁移的巨大挑战,并指出了对新的创新监测技术的需求,该技术可用于表征适合详细传输建模的尺度上含水层特性的时空变化。

著录项

  • 作者

    Jiao, JJ; Zheng, C;

  • 作者单位
  • 年度 1998
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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