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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:水分含量的GPR反射和色散分析方法:GPR估算和土壤核心水含量测量的多年研究

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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-like 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:在美国新英格兰东南部的一个地点,收集了一系列多年的探地雷达(GPR)测量结果,并辅以同期的土壤核。浅层地下的特征是0.9 m厚的沙土层,覆盖在砂砾层上。在数月的时间里,在不同的土壤湿度条件下,收集了30种常见的中点(CMP)测深,并且每天都在同一地点取土芯进行分析,并与GPR速度中的土壤含水量进行比较。使用两种独立的方法估算了GPR速度:反射传播时间的标准法向运动(NMO)分析,以及浅GPR波导模式的频率相关速度色散分析。 GPR估算的田间含水量与实验室重量分析的含水量的比较为GPR数据预测土壤水分状况提供了特定于地点的类似Topp的经验基础。尽管这种特定于站点的关系可能有用,但我们发现,对于我们的站点而言,将这项研究的结果与传统的Topp关系进行比较,再次证明了后者的持续效用

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