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Comprehensive Evaluation Method of Drill-in Fluid Damage in Fractured Tight Sandstone Gas Reservoir-A Case Study in the ZM Formation,Tarim Basin,China

机译:骨折砂岩气藏钻孔液损伤综合评价方法 - 以ZM ZM ZM ZM ZM

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Fractured tight sandstone gas reservoirs were characterized with narrow pore throats,developed natural fractures,abundant clay minerals,and local ultra-low water saturation,geologic characteristics make those tight reservoirs inclined to strong potential damages.Drill-in fluid may easily invades reservoirs along fractures due to the long soaking time and an overbalanced pressure differential,causing serious formation damage and affecting the economic and efficient development of tight gas reservoirs.An integrated multi-disciplinary method was pursued in this paper to accurately evaluate the damage extent of drill-in fluid to tight gas reservoirs.The techniques involve different drill-in fluid damage evaluation methods including core analysis,well logging interpretation,the numerical simulation,and well testing analysis.Results show that the average permeability damage rate through natural flowback after HTHP dynamic damage of drill-in fluid in matrix samples(68.45%-70.70%)were much higher than of fracture samples(44.37%-52.28%).The calculation results of resistivity logging data show that the average filtration invasion depth of drill-in fluid was 1.25 m and the median cumulative filtration invasion depth was 1.26 m.When the simulated bottom hole differential pressure was 3.5 MPa and the simulated soaking time was 150 h,the filtration invasion depth of drill-in fluid was 1.30 m and the lost circulation invasion depth of drill-in fluid was 6.34 m.Afterwards,taking the permeability damage rate and invasion depth as the bridges,the damage skin factor was calculated through Hawkins formula,and the calculated results were in good agreement with the decomposition of well testing results.Finally,an integrated multidisciplinary and multiscale comprehensive evaluation method of drill-in fluid damage in fractured tight sandstone gas reservoirs was proposed,which can serve as a guide for the drill-in fluid damage evaluation in fractured tight gas formation.
机译:骨折的砂岩气体储层具有狭窄的毛孔喉咙,发育自然骨折,丰富的粘土矿物质,以及当地的超低水饱和度,地质特征使那些倾向于强大的潜在损害的紧身储层。德尔在流体中可能沿着骨折侵入储层由于浸泡时间长,压差过分均衡,造成严重的形成损坏,影响紧的气体储层的经济和高效发展。本文追求综合多学科方法,以准确评估钻孔液的损伤程度紧密气储层。技术涉及不同的钻孔流体损伤评估方法,包括核心分析,井测井解释,数值模拟和良好的测试分析。结果表明,通过钻头的动态损坏后通过自然流量的平均渗透率损伤率。 - 在基质样品中的液体(68.45%-70.70%)很多她的骨折样品(44.37%-52.28%)。电阻测井数据的计算结果表明,钻孔流体的平均过滤侵袭深度为1.25米,中值累积过滤侵袭深度为1.26米。模拟底部时为1.26米。空穴差压为3.5MPa,模拟浸泡时间为150小时,过滤侵入深度的钻孔流体为1.30米,钻孔流体的丢失损伤深度为6.34 m.Afterward,采取渗透率损伤率作为桥梁的侵袭深度,通过霍金斯公式计算损伤皮肤因子,并且计算结果与井测试结果的分解非常一致。最后,裂缝中的钻孔流体损伤的集成多学科和多尺度综合评价方法。提出了紧密砂岩燃气储层,其可以作为钻孔损伤在骨折的紧的气体形成中的钻孔流体损伤评估的指导。

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