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An approach to optimize the location of LNAPL recovery wells using the concept of a LNAPL specific yield

机译:利用LNAPL比产量概念优化LNAPL回收井位置的方法

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摘要

Leakage of hydrocarbon fuel (light nonaqueous-phase liquid, LNAPL) from petroleum processing facilities and storage tanks may result in significant subsurface contamination. Remediating the contaminated areas represent considerable challenges, especially when remediation resources are limited and site data are incomplete. A reasonable management strategy under this scenario may be to identify sites where LNAPL recovery operations should be located that would provide the largest LNAPL recovery initially while minimizing the LNAPL remaining in the subsurface (entrapped and residual LNAPL), which may serve as future sources for groundwater contamination. To accomplish this objective, we use estimates of subsurface recoverable and total LNAPL specific volumes and LNAPL transmissivities to generate GIS maps that can be combined to highlight locations where to develop LNAPL recovery operations. When the approach is applied to a LNAPL-contaminated area in Iran, we were able to narrow the locations for potential LNAPL recovery operations. Specifically, we combine maps of the LNAPL specific yield, an introduced term, and the LNAPL transmissivity where the LNAPL specific yield is the ratio of the recoverable to total LNAPL specific volumes. The LNAPL specific yield is a relative measure of the amount of LNAPL that potentially can be recovered while minimizing residual LNAPL in soils. The approach can be applied to sites where the recoverable and total LNAPL specific volumes and LNAPL transmissivities can be estimated using data from boreholes in the contaminated area.
机译:石油加工设施和储罐的烃燃料(轻的非水 - 相液,LNAPL)泄漏可能导致显着的地下污染。修复污染区域代表着大量挑战,特别是当补救资源有限并且网站数据不完整时。在这种情况下的合理管理策略可以是识别应该定位LNAPPP恢复操作的网站,其中最初会提供最大的LNAPPL恢复,同时最小化地下(捕获和残留LNAPL)中剩余的LNAPL,这可以作为地下水的未来来源污染。为了实现这一目标,我们使用地下恢复和总LNAPPL特定卷和LNAPPL透射率的估计来产生GIS映射,可以组合以突出显示LNAPL恢复操作的位置。当该方法应用于伊朗的LNAPL污染区域时,我们能够缩小潜在的LNAPL恢复操作的位置。具体地,我们将LNAPL比产量,引入的术语和LNAP1透射率的地图结合在一起,其中LNAPL比产率是可回收至总LNAPL特异性体积的比率。 LNAPL比产率是潜在可以回收的LNAPL的量的相对测量,同时最小化土壤中的残留LNAPL。该方法可以应用于可回收和总LNAPL特异性体积和LNNAPL透射率的位点使用来自污染区域中的钻孔的数据估计。

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