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首页> 外文期刊>Journal of Applied Geophysics >4-D ground penetrating radar monitoring of a hydrocarbon leakage site in Fortaleza (Brazil) during its remediation process: a case history
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4-D ground penetrating radar monitoring of a hydrocarbon leakage site in Fortaleza (Brazil) during its remediation process: a case history

机译:巴西福塔雷萨(修复)碳氢化合物泄漏现场的4-D探地雷达监测:案例历史

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A 4-D monitoring GPR survey was carried out in order to outline the light non-aqueous phase liquid (LNAPL) plume underground during a remediation process in the area of an impacted gas station in Fortaleza, NE Brazil. The complex GPR signature of the plume was well characterized. Low reflectivity zone corresponds to hydrocarbon vapor phase in the vadose zone. Enhanced reflections are associated with free and residual products directly above the water table. A theoretical model based on geochemical zonation of the LNAPL was calculated using a finite difference time domain (FDTD) forward modeling code, whose synthetic radargrants provide useful insight into the nature of the reflection events related to LNAPL contamination. Hydrogeologic and hydrochemical data from installed monitoring wells provided additional support for interpreting of the GPR response. Moreover, a network of radar sections collected during fifteen months at the polluted site show clearly temporal changes in the plume dimensions, induced by regular pumping of groundwater. This corrective action caused an important drop of the water table that was followed by a rapid shrinking of the impacted area in the vadose zone, generating pooling of vapor products. A steady restore of the reflectivity in the shadow zone suggests a decrease of LNAPL saturation along the GPR survey. (C) 2003 Elsevier B.V All rights reserved. [References: 19]
机译:进行了4-D监测GPR调查,以概述在巴西内布拉斯加州福塔雷萨受影响的加油站进行的补救过程中地下的轻质非水相液体(LNAPL)羽流。烟羽的复杂GPR签名已得到很好的表征。低反射率区域对应于渗流区域中的烃气相。反射增强与地下水位正上方的自由和残留产品有关。使用有限差分时域(FDTD)前向建模代码计算了基于LNAPL地球化学分区的理论模型,该模型的合成雷达辐射剂提供了与LNAPL污染相关的反射事件的性质的有用见解。来自已安装监测井的水文地质和水化学数据为解释GPR响应提供了额外的支持。此外,在受污染的地点十五个月内收集的雷达断面网络清楚地表明,由于定期抽取地下水而引起的羽流尺寸随时间变化。这种纠正措施导致地下水位大幅下降,随后渗流区中受影响面积迅速缩小,产生了水蒸气积聚。阴影区反射率的稳定恢复表明,沿着GPR调查,LNAPL饱和度降低了。 (C)2003 Elsevier B.V保留所有权利。 [参考:19]

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