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Mapping agricultural fields with GPR and EMI to predict offsite movementof agrochemicals,

机译:利用GPR和EMI绘制农田图,以预测农用化学品的异地移动,

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Abstract: Offsite movement of waterborne agrochemicals is increasingly targeted as a nonpoint source of water quality degradation. Our research has indicated that subsurface water movement is variable and site-specific, and that a small soil volume frequently conducts a large volume of flow. This concentrated flow is usually caused by soil morphology, and it often results in water moving rapidly offsite from certain areas of fields; little or no lateral subsurface flow may occur in other areas. Identifying these subsurface regions is difficult using conventional soil survey and vadose zone sampling techniques. In this study, traditional surveying is combined with electromagnetic induction (EMI) and ground penetrating radar (GPR) mapping to identify areas with high potential for subsurface offsite movement of agrochemicals, optimizing these identification techniques, and expanding the mapping procedures to make them useful at the field-scale for agricultural production practices. Conclusions from this research are: (1) EMI mapping provides rapid identification of areas of soil with a high potential for offsite movement of subsurface water, (2) GPR mapping of areas identified by EMI mapping provides a means to identify features that are known to conduct concentrated lateral flow of water, and (3) combining the capabilities of EMI and GPR instrumentation make possible the surveys of large areas that would otherwise be impossible or unfeasible to characterize. !31
机译:摘要:水性农用化学品的异地迁移越来越成为水质退化的非点源。我们的研究表明,地下水的流动是可变的,并且是针对特定地点的,并且少量的土壤经常进行大量的流动。这种集中的水流通常是由土壤形态引起的,通常导致水从某些田地迅速移出场外。在其他区域几乎没有或根本没有侧向地下流动。使用常规土壤调查和渗流带采样技术很难识别这些地下区域。在这项研究中,将传统的测量与电磁感应(EMI)和探地雷达(GPR)测绘相结合,以识别具有潜在的农用化学品地下非现场移动潜力的区域,优化这些识别技术,并扩展测绘程序以使其在农业生产实践的实地规模。这项研究得出的结论是:(1)EMI测绘可快速识别具有潜在的地下水非现场移动潜力的土壤区域,(2)GPR测绘通过EMI测绘识别的区域提供了一种识别已知特征的方法进行集中的侧向水流;(3)结合EMI和GPR仪器的功能,可以进行大面积的调查,而这些调查原本不可能或无法进行表征。 !31

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