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GPR Reflection and Dispersion Analysis Methods for Water Content: Multi-year study of GPR estimates and soil core measurements of water content

机译:含水量的GPR反射和分散分析方法:GPR估算的多年研究及水含量的土壤核心测量

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A multi-year series of ground penetrating radar (GPR) measurements, complemented by contemporaneous soil cores, were collected at a single location in south-eastern New England, USA. The shallow subsurface is characterized by a 0.9 m thick sandy soil layer which overlies a gravelly-sand layer. Over a number of months, and different soil moisture conditions, 30 common midpoint (CMP) soundings were collected, and on each of the days, co-located soil cores were taken for analysis and comparison with the soil water content from the GPR velocities. GPR velocities were estimated using two independent methods: standard normal moveout (NMO) analysis of reflected traveltimes, and the analysis of frequency-dependent velocity dispersion of shallow GPR waveguide modes. A comparison of GPR estimated water content in the field versus gravimetrically measured water content in the lab provides a site-specific Topp-Iike empirical basis for predicting soil water conditions from GPR data. Although such site-specific relations may be useful, we find that for our site comparing the results of this study with the conventional Topp relation reconfirms the continuing utility of the latter
机译:在美国东南部的美国东南部的一个地点收集了由同期土壤核心的多年循环雷达(GPR)测量。浅层地下的特征在于0.9米的厚砂土层,覆盖砾石砂层。在多个月内,以及不同的土壤湿度条件,收集了30个常见的中点(CMP)探测,并且在每天的每天,共同定位的土壤核心用于分析和比较来自GPR速度的土壤水分含量。使用两种独立方法估计GPR速度:标准正常移出(NMO)分析反射行进时间,以及浅GPR波导模式的频率相关速度分散的分析。 GPR估计净水含量与实验室中的重量测量水含量的比较为预测GPR数据预测土壤水条件提供了特定于特定的TOPP-IIKE实证基础。虽然此类特定于网站的关系可能很有用,但我们发现,对于我们的网站比较本研究的结果与传统的TOPP关系重新确认了后者的继续效用

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