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Underbalanced Drilling of a Horizontal Well in Depleted Reservoir: A Wellbore Stability Perspective

机译:耗尽水库中水平井的低位钻井:井眼稳定性视角

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The need to reduce formation damage and to avoid differential sticking and lost circulation in depleted reservoirs favors the use of underbalanced drilling (UBD) technology. In highly depleted reservoirs, the pore pressure can be very low, necessitating the use of extremely low-density fluid to achieve an equivalent circulating density (ECD) below the pore pressure. In such situations, the stress redistribution around the wellbore has to be supported mainly by the rock matrix, and limited support is provided by the mud pressure. Therefore, UBD can dramatically increase the risk of wellbore instability. From literature review, it was found that the techniques and methodologies to carry out wellbore stability analysis on UBD of horizontal wells are not well documented. This paper presents a wellbore stability study that was conducted to evaluate the feasibility of using UBD technology to drill a horizontal well in a highly depleted reservoir in Libya. The study started with geomechanical laboratory tests and Mechanical Earth Model (MEM) construction to evaluate the in-situ stresses, pore pressure, and mechanical properties of the formations likely to be encountered during the planned UBD campaign. Wellbore stability analysis was subsequently conducted for the planned horizontal well to be drilled underbalance using a new practical approach. The analysis revealed a high probability of extensive and severe breakout within the weak zones if penetrated underbalanced and the potential for massive wellbore collapse. Under the guidance of this study, the well plan and drilling designs were amended to minimize drilling risk.
机译:需要减少形成损坏并避免差异粘附,耗尽储存水库中的循环源于使用欠平衡钻井(UBD)技术。在高度耗尽的储存器中,孔隙压力可以非常低,需要使用极低密度的流体来实现低于孔隙压力的等效循环密度(ECD)。在这种情况下,必须主要由岩石矩阵支撑在井筒周围的应力再分配,并且通过泥浆压力提供有限的支撑。因此,UBD可以显着提高井筒不稳定性的风险。从文献综述中,发现对水平井UBD进行井筒稳定性分析的技术和方法并不充分记录。本文提出了一种井眼稳定性研究,以评估使用UBD技术在利比亚高度耗尽的水库中钻井水平井的可行性。该研究始于地质力学实验室测试和机械地球模型(MEM)施工,以评估原位应力,孔隙压力和在计划UBD广告系列中可能遇到的地层的机械性能。随后对计划水平井进行井筒稳定性分析,使用新的实际方法钻井间距。如果穿透不平衡,弱区内,分析揭示了弱区内广泛和严重突破的高概率,并且巨大井筒塌陷的潜力。在本研究的指导下,修改了井计划和钻井设计,以最大限度地减少钻井风险。

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