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Reflection Waveform Inversion of Ground-Penetrating Radar Data for Characterizing Thin and Ultrathin Layers of Nonaqueous Phase Liquid Contaminants in Stratified Media

机译:用于表征层状介质中非水相液体污染物的薄层和超薄层的探地雷达数据的反射波形反演

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摘要

Accurately quantifying thin-layer parameters by applying a targeted reflection waveform inversion methodology to ground-penetrating radar (GPR) reflection data may provide a useful tool for near-surface investigation and especially for contaminated site investigation where nonaqueous phase liquid (NAPL) contaminants are present. We implemented a targeted reflection waveform inversion algorithm to quantify thin-layer permittivity, thickness, and conductivity for NAPL thin (≤ 1/2 dominant wavelength λ) and ultrathin (≤ 1/8λ) layers using GPR reflection data. The inversion used a nonlinear grid search with a Monte Carlo scheme to initialize starting values to find the global minimum. By taking a targeted approach using a time window around the peak amplitude of the reflection event of interest, our algorithm reduced the complexity in the inverse problem. We tested the inversion on three different synthetic data sets and four field data sets. In all testing, the inversion solved for NAPL-layer properties within 15% of the measured values. This algorithm provides a tool for site managers to prioritize remediation efforts based on quantitative assessments of contaminant quantity and location using GPR.
机译:通过将有针对性的反射波形反演方法应用于探地雷达(GPR)反射数据来准确量化薄层参数,可能为近地表调查,尤其是存在非水相液体(NAPL)污染物的污染场地调查提供有用的工具。我们实施了目标反射波形反演算法,以使用GPR反射数据量化NAPL薄(≤1/2主波长λ)和超薄(≤1 /8λ)层的薄层介电常数,厚度和电导率。该反演使用带有蒙特卡洛方案的非线性网格搜索来初始化起始值以找到全局最小值。通过在目标反射事件的峰值幅度附近使用时间窗作为目标方法,我们的算法降低了反问题的复杂性。我们在三个不同的合成数据集和四个字段数据集上测试了反演。在所有测试中,反演解决了NAPL层特性不超过测量值15%的问题。该算法为站点管理者提供了一种工具,可以基于对使用GPR的污染物数量和位置的定量评估,确定修复工作的优先级。

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