首页> 外文会议>Progress in electromagnetics research symposium;PIERS 2010 >Measuring the Soil Water Content of a Sandy Soil with a Frequency Cross-hole Radar: Antenna Design and Experiments
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Measuring the Soil Water Content of a Sandy Soil with a Frequency Cross-hole Radar: Antenna Design and Experiments

机译:频率交叉孔雷达测量沙土的土壤水分:天线设计与实验

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Road surface quality is very sensitive to mechanical properties of the underground structure, and particularly to its water content. Electromagnetic frequency cross-hole radar associated with a Zero Offset Profiling (ZOP) acquisition mode has been used as a non destructive technique to evaluate the vertical distribution of the water content inside a multi-layered clay sand embankment test site. In order to fit two borehole diameters (40 and 67mm), that are used for civil engineering monitoring, two specific radar transmission links (with a distance less than 1 m) have been developed to work in the frequency band [0.5; 1.5] GHz. These borehole transmission links have led to the design of two types of ultra-wideband symmetric antennas: a 3D "folded dipole" made of thin wire elements, and a planar "blade dipole". Numerical electromagnetic modeling associated with both antenna geometries, and their integration in a transmission link have been performed using two complementary FDTD softwares: a commercial software EMPIRE based on an adaptative grid, and a laboratory-made software which relies on parallel calculation and can consider a soil made of a random dielectric distribution. The comparison of measurement and simulation results with both folded and blade dipoles, has allowed to highlight contrasts of real permittivities induced by water content and soil compaction level.
机译:路面质量对地下结构的机械性能特别是其含水量非常敏感。与零偏移分析(ZOP)采集模式相关的电磁频率交叉孔雷达已被用作一种无损技术,用于评估多层粘土砂路堤试验场内水含量的垂直分布。为了适合用于土木工程监控的两个井眼直径(40和67mm),已开发了两个特定的雷达传输链路(距离小于1 m)以在[0.5; 1.5] GHz。这些钻孔传输链路导致了两种类型的超宽带对称天线的设计:由细线元件制成的3D“折叠偶极子”和平面“叶片偶极子”。已经使用两个互补的FDTD软件执行了与两种天线几何形状相关的数字电磁建模及其在传输链路中的集成:基于自适应网格的商业软件EMPIRE,以及依赖于并行计算并可以考虑由随机介电分布制成的土壤。折叠偶极子和叶片偶极子的测量和模拟结果的比较,可以突出显示由含水量和土壤压实度引起的实际介电常数的对比。

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