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3D mechanical earth model for Zubair oilfield in southern Iraq

机译:伊拉克南部祖拜尔油田的3D机械地球模型

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During drilling operations, wellbore instability is one of the reasons that increase nonproductive time (NPT). Maintaining a stable wellbore is the primary importance during drilling by applying a proper geomechanical model to analyze and understand the distribution of stresses around the wellbore in order to minimize drilling risk and NPT. The lack of any geomechanical studies in Zubair oilfield in southern Iraq is one of the reasons that lead to wellbore stability-related problems and thus an increase in NPT. Petrel Geomechanics 2018 was used to show the distribution of the stresses and the mechanical properties. Showing the distribution of stresses in 3D MEM has big advantages in several ways, and one of them is to select the best path for any future directional wells. To mitigate wellbore stability problems and depending on the 1D mechanical earth models (MEM) results, a detailed 3D MEM was built for Zubair oilfield as the method to precisely pinpoint and diagnose those problems. The results of this study show two points; first is an abnormally pressured zone in Tanuma shale formation, and second, a narrow mud weight window in front of the Tanuma formation. As a conclusion, the mechanical earth model was an efficient tool in diagnosing and predicting geomechanics-related problems, thus suggesting an alternative mud weight program for the problematic zone, which is more important to reduce the most essential factor in the NPT.
机译:在钻井作业中,井筒失稳是增加非生产时间(NPT)的原因之一。在钻井过程中,通过应用适当的地质力学模型来分析和理解井眼周围的应力分布,从而最大程度地降低钻井风险和NPT,保持稳定的井眼是最重要的。伊拉克南部祖拜尔油田缺乏任何地质力学研究是导致井眼稳定性相关问题并因此增加《不扩散核武器条约》的原因之一。 Petrel Geomechanics 2018用于显示应力分布和机械性能。在3D MEM中显示应力分布具有多种优势,其中一种是为将来的定向井选择最佳路径。为了缓解井眼稳定性问题,并根据一维机械地球模型(MEM)的结果,为祖拜尔油田建造了详细的3D MEM作为精确查明和诊断这些问题的方法。这项研究的结果表明了两点。首先是塔努马页岩地层的异常受压带,其次是塔努马地层前的狭窄泥浆比重窗口。结论是,机械地球模型是诊断和预测与地质力学有关的问题的有效工具,因此为有问题的地区提出了另一种泥浆比重方案,这对于减少《不扩散核武器条约》中最重要的因素更为重要。

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