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Enhanced remedial amendment delivery through fluid viscosity modifications: Experiments and numerical simulations

机译:通过修改流体粘度来增强补救修正剂的输送:实验和数值模拟

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Low-permeability zones are typically bypassed when remedial fluids are injected into subsurface heterogeneous aquifer systems. Therefore, contaminants in the bypassed areas may not be contacted by the amendments in the remedial fluid, which may significantly prolong remediation operations. Laboratory experiments and numerical studies have been conducted to investigate the use of a shear-thinning polymer (Xanthan gum) to improve access to low-permeability zones in heterogeneous systems. The chemicals sodium mono-phosphate and the surfactant MA-80 were used as the remedial amendments. The impact of polymer concentration, fluid injection rate, and permeability contrast in the heterogeneous systems has been studied in a series of eleven two-dimensional flow cell experiments. The Subsurface Transport over Multiple Phases (STOMP) simulator was modified to include polymer-induced shear-thinning effects. The experimental and simulation results clearly show that using the polymer leads to an enhanced delivery of remedial amendments to lower-permeability zones and an increased sweeping efficiency. An added benefit of using the polymer is the stabilization of the displacing front when density differences exist between displaced and displacing fluids. The modified STOMP simulator was able to predict the experimental observed fluid displacing behavior well and might be used to predict subsurface remediation performance when a shear-thinning fluid is used to remediate a heterogeneous system at larger scales.
机译:当将补漏液注入地下非均质含水层系统时,通常会绕过低渗​​透带。因此,修复液中的改性剂可能不会接触旁路区域中的污染物,这可能会大大延长修复时间。已经进行了实验室实验和数值研究,以研究使用剪切稀化聚合物(黄原胶)改善非均质系统中低渗透区的通道。化学单磷酸钠和表面活性剂MA-80用作修复剂。在一系列十一个二维流动池实验中,研究了聚合物浓度,流体注入速率和渗透率对比在非均相系统中的影响。修改了多相地下运输(STOMP)仿真器,以包括聚合物引起的剪切稀化效应。实验和模拟结果清楚地表明,使用该聚合物可提高对较低渗透性区域的补给剂的输送量,并提高清扫效率。使用聚合物的另一个好处是,当驱替液和驱替液之间存在密度差异时,驱替前沿稳定。改进的STOMP仿真器能够很好地预测实验观察到的流体驱替行为,当使用剪切稀化流体大规模修复异质系统时,可用于预测地下修复性能。

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