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Organophilic Clay-Based Drilling Fluids for Mitigation of Unconventional Shale Reservoirs Instability and Formation Damage

机译:减轻非常规页岩储层失稳和地层损害的亲有机粘土基钻井液

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High-performance drilling fluid was designed for unconventional reservoirs to minimize the formation damage and borehole instability using organophilic clay treated with trimethyloctylammonium bromide, novel in-house synthesized gemini surfactant, and a high-molecular weight polymer. This gemini surfactant has not been reported in the literature for drilling fluid applications. The performance of designed drilling fluid was evaluated and compared with the base drilling fluid (4 w/v.% bentonite dispersion water). Shale dispersion, linear swelling, filtration, and rheological experiments were performed to investigate the effect of drilling fluids on borehole stability and formation damage. The combined use of organophilic clay and surfactant in the drilling fluid formulation reduced the shale dispersion up to 89%. The linear swelling experiment of shale sample shows 10% swelling of the core in the modified drilling fluid while in base fluid 13% swelling of shale was observed. It was found that modified drilling fluid interactions with shale were greatly reduced using a surfactant and associative polymer in the drilling fluid formulation. Rheological properties of drilling fluids were stable, and filtration characteristics showed that the filtrate volume was within the acceptable limit. The designed drilling fluid made a thin and impermeable filter cake that prevents the invasion of drilling fluid into the formation. This study opens a new direction to reduce the formation damage and borehole instability using organophilic clay, surfactant and high-molecular weight additive in water-based drilling fluid.
机译:高性能钻井液是为非常规储层设计的,它使用三甲基辛基溴化铵,新型内部合成双子表面活性剂和高分子量聚合物处理过的亲有机粘土来最大程度地减少地层损害和井眼不稳定性。该双子表面活性剂尚未在文献中用于钻井液应用的报道。评估设计的钻井液的性能,并将其与基础钻井液(4 w / v。%的膨润土分散水)进行比较。进行了页岩分散,线性溶胀,过滤和流变实验,以研究钻井液对井眼稳定性和地层损害的影响。在钻井液配方中结合使用亲有机粘土和表面活性剂可使页岩分散度降低多达89%。页岩样品的线性溶胀实验表明,改性钻井液中岩心的溶胀率为10%,而在基础流体中,页岩的溶胀率为13%。发现在钻井液配方中使用表面活性剂和缔合聚合物可以大大降低改性钻井液与页岩的相互作用。钻井液的流变性能稳定,过滤特性表明滤液体积在可接受的范围内。设计的钻井液制成了一层薄且不可渗透的滤饼,可防止钻井液侵入地层。该研究为在水性钻井液中使用亲有机粘土,表面活性剂和高分子量添加剂降低地层破坏和降低井眼失稳开辟了新的方向。

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