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首页> 外文期刊>Hydrology and Earth System Sciences >A fast TDR-inversion technique for the reconstruction of spatial soil moisture content
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A fast TDR-inversion technique for the reconstruction of spatial soil moisture content

机译:快速TDR反演技术重建空间土壤含水量

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Spatial moisture distribution in natural soil or other material is a valuably information for many applications. Standard measurement techniques give only mean or punctual results. Therefore a new inversion algorithm has been developed to derive moisture profiles along single TDR sensor-probes. The algorithm uses the full information content of TDR reflection data measured from one or both sides of an embedded probe. The system consisting of sensor probe and surrounded soil can be interpreted as a nonuniform transmission-line. The algorithm is based on the telegraph equations for nonuniform transmission-lines and an optimization approach to reconstruct the distribution of the capacitance and effective conductance along the transmission-line with high spatial resolution. The capacitance distribution can be converted into permittivity and water content by means of a capacitance model and dielectric mixing rules. Numerical investigations have been carried out to verify the accuracy of the inversion algorithm. Single- and double-sided time-domain reflection data were used to determine the capacitance and effective conductance profiles of lossless and lossy materials. The results show that single-sided reflection data are sufficient for lossless (or low-loss) cases. In case of lossy material two independent reflection measurements are required to reconstruct a reliable capacitance profile. The inclusion of an additional effective conductivity profile leads to an improved capacitance profile. The algorithm converges very fast and yields a capacitance profile within a sufficiently short time. The additional transformation to the water content requires no significant calculation time.
机译:对于许多应用而言,天然土壤或其他材料中的空间水分分布是有价值的信息。标准的测量技术只能给出平均或准时的结果。因此,已经开发了一种新的反演算法来沿单个TDR传感器探针导出湿度曲线。该算法使用从嵌入式探头的一侧或两侧测得的TDR反射数据的全部信息内容。由传感器探头和周围土壤组成的系统可以解释为一条不均匀的传输线。该算法基于用于不均匀传输线的电报方程式和一种优化方法,以高空间分辨率重建沿传输线的电容和有效电导的分布。可以通过电容模型和介电混合规则将电容分布转换为介电常数和水含量。已经进行了数值研究以验证反演算法的准确性。单面和双面时域反射数据用于确定无损和有损材料的电容和有效电导曲线。结果表明,单侧反射数据足以应对无损(或低损耗)情况。如果材料有损耗,则需要两次独立的反射测量以重建可靠的电容曲线。包括附加的有效电导率分布导致改善的电容分布。该算法收敛非常快,并在足够短的时间内产生电容分布。对水含量的额外转换不需要大量的计算时间。

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