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New Salt-Tolerant Friction Reducers Minimize Alteration of Rock Wettability after Hydraulic Fracturing: Case Study

机译:新的耐盐摩擦减速剂最大限度地减少液压压裂后岩石润湿性的变化:案例研究

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Salt-tolerant cationic friction reducers(FRs)have been successfully used in up to 100% of high totaldissolved-solids-(TDS)produced water for hydraulic fracturing applications.However,they might not be compatible with formation rocks,such as sandstone,that are typically negatively charged under normal pH.This study introduces a new cationic FR(C-FR)formulation that switches to anionic conditions under downhole conditions,thereby having minimal effects on the rock wettability of sandstone or clay formation.Flow loop and zeta potential tests were conducted to demonstrate the benefits of using a C-FR that tends to have minimal formation damage toward formation rocks.Flow loop tests qualify the FR as a robust polymer that is salt tolerant to high levels of iron,allowing 100% reuse of produced water on location.Zeta potential measures the rock's surface charge and determines if there is significant wettability alteration in the presence of this FR.Flow loop results verify that the new FR is extremely salt tolerant up to 300,000 ppm of TDS that includes up to 200 ppm of iron.An initial multiple well trial program was implemented in the Marcellus during August 2015,and,on average,pumping rates were maintained at approximately 100 bbl/min,and the treating pressure was kept well below 8,000 psi.Zeta potential indicates that the FR became negatively charged after releasing the cationic compound,thereby having minimal impact on the original rock wettability.The normalized long term production data from selected wells were compared to other offset or adjacent wells fractured with a standard anionic FR; no appreciable difference was determined.
机译:耐盐性阳离子摩擦减速剂(FRS)已成功地用于高达100%的高总干燥固体 - (TDS)生产的水用于液压压裂应用。然而,它们可能与地层岩石(如砂岩)兼容通常在正常pH下带负电。该研究引入了一种新的阳离子FR(C-FR)制剂,其在井下条件下切换到阴离子条件,从而对砂岩或粘土形成的岩石润湿性产生最小的影响。流回路和Zeta电位测试被进行以证明使用C-FR的益处,该C-FR往往对地层岩石具有最小的形成损坏。流回路测试符合耐盐的聚合物,其耐受高水平的铁,允许生产的水再利用产生的水在Location.zeta潜力测量岩石的表面充电并确定是否存在显着的润湿性改变如果存在这种FR.Flow环路结果,验证了新的FR是极其耐盐性高达300,000ppm的TD,包括高达200ppm的铁。在2015年8月期间,Marcellus在Marcellus实施了初始多个井试验计划,并且平均泵率在大约100 bbl / min中保持泵送率。将处理压力保持远低于8,000psi.zeta电位,表明释放阳离子化合物后FR在释放阳离子化合物后具有负电荷,从而对原始岩石润湿性具有最小的影响。将来自所选井的标准化长期生产数据与其他偏移相比邻近的孔用标准阴离子fr裂缝;没有确定明显的差异。

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