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Defining Practical Limits of Free LNAPL Recovery by Skimming and High-Vacuum Extraction echniques-a Case Study from the Piedmont of Georgia

机译:通过撇去和高真空萃取Echniques定义自由LNAPL回收的实际限制 - 从格鲁吉亚皮埃蒙特举办的案例研究

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This paper documents the practical limitations of free LNAPL recovery using skimming and high-vacuum extraction at a site in the Piedmont of Georgia. The principal limitation on LNAPL recoverability is attributed to reductions in LNAPL thickness which controls mobility of the free LNAPL. The LNAPL plume area and average thickness in wells declined during a 90-day rising water table period at the test site. Baildown tests were performed at the beginning of the 90-day period to estimate the oil conductivity and transmissivities and estimate multiphase parameters that control fluid saturations, relaive permeabilities, and specific volumes. Using these parameters ,we estimated that 20,000 gal of free LNAPL was smeared into a residual state in response to a 2.3-ft rise in the water-table. During the last third of the 90-day period, two wells were used for 30-day skimming tests, followed by a recovery period, and then 2-hour high-vacuum extraction tests. The production rates for the skimmers were initially commensurate with modeled yields but became ineffective, hence mpractical, after the average LNAPL thicknesses decreased to a fraction of a foot. Recovery of LNAPL by high-vacuum extraction techniques (vacuum truck) produced only about 2.5 gal from two test wells with startintg thicknesses o 0.2 and 1.5 ft. The mobility limitation on skimming is influenced by daily fluctuations in LNAPL thicknesses, which can be quite variable at the end of the smearing cycle. The mobility limitation on vacuum extraction is believed to be adversely influenced by secondary smearing near the well when the water table upcones in resonse to negative pressures above the water table. By testing dueing the rising water-table condition, we could show that the practical limitations on skimming and high-vacuum recovery methods occurred at static equilibrium thicknesses that were significantly larger than the traditional 1/8-inch cleanup criteria.
机译:本文介绍了在格鲁吉亚皮埃蒙特的网站上使用脱脂和高真空提取的自由LNAPPL恢复的实际限制。 LNAPL可回收性的主要限制归因于降低LNAPL厚度,可控制自由LNAPL的迁移率。在试验部位的90天上升水位期间,LNAPL羽流区域和井中的平均厚度下降。在90天的时间段开始进行Baildown测试,以估计控制流体饱和,急转渗透率和特定体积的油导性和透射性和估计多相参数。使用这些参数,我们估计,响应于水桌中的2.3英尺的升高,我们估计将20,000个游离LNAPL涂抹成残留状态。在90天期间的最后三次,两台孔用于30天的撇渣试验,然后是恢复期,然后是2小时的高真空提取试验。 Skimmers的生产率最初以模拟的产率相称,但在平均LNAPL厚度降低到脚的一小部分之后,Mpractical的效果无效。通过高真空提取技术(真空卡车)回收LNAPL,仅产生大约2.5个GAL,从两个测试井中产生20.2和1.5英尺的STARTINTG厚度。脱脂的流动性限制受LNAPL厚度的日常波动的影响,这可能是相当变化的在涂抹周期结束时。当水表蜂鸣在水位上方的负压中的井中时,吹动对真空萃取的迁移率限制受到井附近的次要涂抹的不利影响。通过测试造成上升的水位状况,我们可以表明,略微平衡厚度的略微平衡厚度的实际限制显着大于传统的1/8英寸清理标准。

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