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Study on Wellbore Stability and Instability Mechanism in PiedmontStructures

机译:皮埃蒙特结构井筒稳定性和失稳机理研究

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Piedmont tectonic belts are rich of oil and gas resources, however the intense tectonic stress and broken formationmay cause great drilling problems in piedmont structures such as borehole collapse, lost circulation and gas cutting.Through analysis of in situ stress properties, bedding structure and mechanical characteristics, wellbore instability mechanismwas expounded from rock mechanics, chemistry of drilling fluid and drilling technology. The high tectonic stress,formation strength decreasing and fluid pressure rising after mud filtrate seepage are main reasons for borehole collapse.The methods of calculating collapse and fracture pressure and determining drilling safety density window were put forwardbased on mechanical analysis. In order to reduce drilling problems in piedmont structures, some countermeasuresshould be taken from optimizing well track and casing program, using proper mud density, improving inhibitive and sealingability of drilling fluid. Good sealing ability can reduce seepage and cut off pressure transmission, enhancing the effectivesupport force. This is the key technology of maintaining wellbore stability in hard brittle shale in piedmont structures.
机译:皮埃蒙特构造带具有丰富的油气资源,但强烈的构造应力和破碎的地层可能在山前构造中引起巨大的钻井问题,例如井壁坍塌,漏失和气割等。通过对地应力特性,层理结构和力学特性进行分析从岩石力学,钻井液化学和钻井技术等方面阐述了井筒失稳的机理。泥浆滤液渗流后构造应力高,地层强度下降,流体压力升高是造成井壁塌陷的主要原因。基于力学分析,提出了计算塌陷,断裂压力和确定钻井安全密度窗的方法。为了减少山前结构的钻井问题,应采取以下对策,从优化油井跟踪和套管程序,使用适当的泥浆密度,提高钻井液的阻隔性和密封性。良好的密封能力可以减少渗漏并切断压力传递,提高有效支撑力。这是在山前结构的硬质脆性页岩中保持井筒稳定性的关键技术。

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