首页> 外文期刊>Vadose zone journal VZJ >Early-Time GPR: A Method to Monitor Spatial Variations in Soil Water Content during Irrigation in Clay Soils
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Early-Time GPR: A Method to Monitor Spatial Variations in Soil Water Content during Irrigation in Clay Soils

机译:早期GPR:一种监测黏土土壤灌溉过程中土壤水分空间变化的方法

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摘要

We used a recent ground-penetrating radar (GPR) methodology, early-time amplitude analysis, with the goal of monitoring changes in soil water content (SWC) in response to irrigation in clayey soils. We hypothesized that early-time analysis could be used to monitor changes in SWC in clay-rich soil where ground wave and reflection-based GPR methods traditionally fail. An overnight irrigation experiment was performed in a 20-by 14-m section of natural grassland at the Samford Ecological Research Facility in southeastern Queensland, Australia. Both GPR reflection surveys and ground wave velocity analysis were ineffective at the site due to the signal attenuation associated with the clay-rich soil. We collected daily GPR and time-domain reflectometry (TDR) data sets during a 5-d period in August 2014, with soil samples collected for gravimetric analysis at the conclusion of data collection. The GPR data display a clear response of the early-time signal amplitude to changes in SWC. The GPR data sets exhibit a strong correlation with SWC, as measured by TDR and gravimetric analysis of soil cores, which is consistent with the dependence of GPR early-time amplitude on relative permittivity. The results suggest that the early-time method can be used to obtain spatially distributed information on subsurface moisture content in clay-rich soils.
机译:我们使用了一种最新的探地雷达(GPR)方法,即早期幅度分析,目的是监测黏性土壤中灌溉条件下土壤含水量(SWC)的变化。我们假设早期分析可用于监测传统上基于地波和基于反射的GPR方法失效的富含粘土的土壤中SWC的变化。在澳大利亚昆士兰州东南部的桑福德生态研究中心,在一块20 x 14米的天然草地上进行了隔夜灌溉实验。由于与富含粘土的土壤相关的信号衰减,GPR反射测量和地波速度分析在现场均无效。我们在2014年8月的5天期间收集了每日GPR和时域反射法(TDR)数据集,并在数据收集结束时收集了土壤样品用于重量分析。 GPR数据显示早期信号幅度对SWC变化的清晰响应。通过TDR和土壤岩心的重量分析测得,GPR数据集与SWC有很强的相关性,这与GPR早期振幅对相对介电常数的依赖性一致。结果表明,早期方法可用于获取富黏土壤中地下水分含量的空间分布信息。

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