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Wettability modification by fluoride and its application in aqueous phase trapping damage removal in tight sandstone reservoirs

机译:氟化物对润湿性的改善作用及其在致密砂岩油藏水相捕集中的破坏去除

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External fluid invading into reservoir could induce formation damage in form of phase trapping in tight sandstone reservoirs (in-situ permeability < 0.1 mD). Aqueous phase trapping damage occurs commonly in drilling and completion operations. Once aqueous phase trapping damage happens, it could hardly be removed, as a result of which gas production will not be promising. The objective of this study is to experimentally investigate the wettability alteration by quaternary ammonium fluoride salt and its potential to mitigate aqueous phase trapping damage in original water-wet, tight sandstone gas reservoirs. Wettability alteration from water wetting to gas wetting was achieved as water contact angles on core chip surface treated by 0.1 wt% fluoride were larger than 90 degrees at 27 degrees C. There was hardly change in contact angles when temperature rose up to 80 degrees C and 100 degrees C respectively. The results of contact angle and surface tension tests indicated that the optimal fluoride concentration is 0.1 wt%. Atomic Force Microscope (AFM) analysis revealed that large amounts of fluoride adsorbed on mica surface, forming an irregular micro-nanometer structure. The modified structure enhanced hydrophobicity of surface and promoted the flowback of the invading fluid foreign to reservoir. Fluid rheology tests were carried out by viscometer and the results showed good compatibility between fluoride and drill-in fluid. The result of the core flow test indicated that both the flow back rate and gas relative permeability were significantly improved by 40% and 20% respectively. (C) 2015 Elsevier B.V. All rights reserved.
机译:外部流体侵入储层可能以致密相砂岩储层的相捕集形式引起地层破坏(原位渗透率<0.1 mD)。水相捕集损坏通常发生在钻井和完井作业中。一旦发生水相捕集损坏,就很难将其清除,因此气体生产前景不佳。这项研究的目的是通过实验研究氟化季铵盐对润湿性的变化及其在减轻原始水湿致密砂岩气藏中减轻水相捕集损害的潜力。当用0.1 wt%氟化物处理的芯芯片表面的水接触角在27摄氏度下大于90度时,实现了从水润湿到气体润湿的润湿性变化。当温度上升到80摄氏度时,接触角几乎没有变化。分别为100摄氏度。接触角和表面张力测试的结果表明,最佳氟化物浓度为0.1重量%。原子力显微镜(AFM)分析显示,大量的氟化物吸附在云母表面,形成不规则的微纳米结构。改性后的结构增强了表面的疏水性,并促进了储层外来侵入流体的回流。用粘度计进行流体流变学测试,结果表明氟化物和钻井液之间具有良好的相容性。岩心流动测试的结果表明,返流率和气体相对渗透率分别显着提高了40%和20%。 (C)2015 Elsevier B.V.保留所有权利。

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