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首页> 外文期刊>Journal of Petroleum Science & Engineering >Investigation of drill-in fluids damage and its impact on wellbore stability in Longmaxi shale reservoir
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Investigation of drill-in fluids damage and its impact on wellbore stability in Longmaxi shale reservoir

机译:调查钻孔流体损伤及其对龙际页岩水库井眼稳定性的影响

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AbstractThe stability of the horizontal long section wellbore is the key factor of restricting the efficient development of shale gas. High clay mineral content and developed microfractures of shale reservoir make the problems of formation damage and horizontal wellbore stability more complex. OBDF (Oil-based drill-in fluid) is widely used to control formation damage and prevent wellbore instability in shale gas wells. However, high cost and serious environmental problem severely restrict the economic development of shale gas. In order to meet the requirement of cost reduction and environmental protection during shale gas drilling operation, drilling horizontal well with WBDF (water-based drill-in fluid) instead of OBDF has become one of the engineering technology problems to be solved urgently. The Longmaxi shale in Sichuan Basin of China and the associated drill-in fluids at the site are the object of our research. Evaluation experiments on liquid damage and sealing capacity of drill-in fluids were conducted to recognize and optimize the properties of oil-based and water-based drill-in fluids in shale reservoir. Combining the methods of particle size distribution, friction coefficient testing, alkali erosion, linear expansion and immersion test, we investigated the effect of drill-in fluids on formation damage and wellbore stability. Results show that the damage degree of OBDF filtrate on shale is more severe than that of WBDF filtrate. Fracture sealing and bi-directional pressure containment capacity of WBDF is also stronger than that of OBDF. Due to the invasion of OBDF with high pH value, the friction strength of the fracture surface decreases and frictional sliding will take place, which can cause the wellbore instability. With the WBDF immersion, microfractures initiate and propagate along the bedding surface for the shale hydrate expansion, and lead to wellbore instability. The results of our analysis suggest that OBDF does not completely solve the problems of formation damage and wellbore instability in shale reservoir, and reinforcing the sealing fracture and inhibiting hydration capacity of WBDF will contribute to its wider application in shale reservoir. This study provides a theoretical guidance for drill-in fluid selection and optimization during the operation of shale gas well drilling.Highlights?Liquid retention and lost circulation are the potential damage factors in the shale reservoir.?Frictional sliding may cause wellbore instability for the OBDF lubricity and alkali erosion.?Hydrate expansion leads to the fracture generation and wellbore instability.?Properties of sealing and hydration inhibition are very crucial to WBDF.]]>
机译:<![CDATA [ 抽象 水平长截面井筒的稳定性是限制页岩气有效发展的关键因素。高粘土矿物质含量和出现的页岩储层微磨法使得形成损伤问题和水平井眼稳定性更复杂。 OBDF(油基钻头流体)广泛用于控制地层损坏,防止页岩气井中的井筒不稳定。然而,高成本和严重的环境问题严重限制了页岩气的经济发展。为了满足页岩气钻孔操作期间成本降低和环境保护的要求,用WBDF(水性钻头流体)而不是obdf钻井井已成为迫切需要解决的工程技术问题之一。中国四川盆地的龙马西页岩和该网站的相关钻孔流体是我们研究的目的。进行了对液体损伤和钻孔流体密封能力的评价实验,以识别和优化页岩储层油基和水性钻头流体的性能。结合粒度分布,摩擦系数试验,碱腐蚀,线性膨胀和浸渍试验的方法,研究了钻孔流体对地层损伤和井眼稳定性的影响。结果表明,页岩对页岩滤液的损害程度比WBDF滤液更严重。 WBDF的断裂密封和双向压力容纳能力比OBDF的骨折也强。由于具有高pH值的OBDF的侵袭,裂缝表面的摩擦强度降低和摩擦滑动将发生,这可能导致井筒不稳定性。随着WBDF的浸渍,微磨术沿着床上用品膨胀并繁殖,以便对页岩水合物膨胀,并导致井眼不稳定。我们的分析结果表明,OBDF不完全解决页岩储层中的形成损伤和井筒不稳定的问题,加强了WBDF的密封骨折和抑制水化容量将有助于其在页岩储层中的更广泛应用。本研究提供了在页岩气井钻井过程中进行钻孔流体选择和优化的理论指导。 突出显示 液体保留和丢失的循环是页岩储层中的潜在损坏因素。 摩擦滑动可能导致OBDF润滑性和碱性润滑性的井筒不稳定性。 水合物膨胀导致骨折产生和井筒不稳定性。 密封和水合抑制的属性对WBDF非常重要。 < / ce:简单 - 段落> ]]>

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