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Combination of Spirolizers and Spring Centralizers Reduces the Risk of Differential Sticking: Case Study of Wells in Shell Petroleum Development Company (SPDC), Nigeria

机译:螺旋桨和弹簧隆起的组合降低了差异粘贴的风险:尼日利亚壳牌井中的井井

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Over the past 4 years, there have been several stuck incidents during installation of liners and casing in some wells in Shell Petroleum Development Company (SPDC), Nigeria. In most cases, the sticking mechanism was identified to be differential due to high pressure over balance across some depleted sand intervals. Attempt to free the casing or liner string was successful in few of the cases, while in others, it resulted in either cementing the casing in place at the stuck depth and deploying contingency option where they exist or going through the long, rigorous and expensive process of fishing, plugging back and sidetracking. Investigations into these incidents pointed mostly to the casing centralization. During casing installation, a good standoff is required to keep the casing string away from the wall of the well bore to avoid differential sticking and achieve good cement placement. On the other hand, excessive centralization could lead to increased drag force particularly in deviated wells with the attendant risk of not getting the casing to bottom. Prior to casing installation, it is a standard practice to run simulation on centraliser spacing to achieve an acceptable standoff. Bow spring centralizers are commonly used especially for 9-5/8’’ casing installation and experience has shown that placement of these centralisers to achieve the acceptable standoff in order to avoid differential sticking as well as good cement distribution has led to having a casing string packed with centralisers thereby increasing the drag force. It therefore became imperative to develop a strategy for optimum centralizer placement in order to achieve both the acceptable standoff to avoid differential sticking and minimum drag. This paper discusses the approach taken to achieve this acceptable standoff with minimum drag force using a combination of Spirolizers and Bow spring centralisers and its impact in reducing the risk of differential sticking.
机译:在过去的4年里,在贝壳石油开发公司(SPDC)的一些井安装衬垫和套管期间有几个卡住的事件在尼日利亚。在大多数情况下,由于在一些耗尽的沙子间隔的平衡上,识别粘附机构是差的。在少数情况下,尝试释放套管或衬垫串在其他情况下成功,因此在其他情况下,它会在卡住深度巩固壳体,并在它们存在或经历长度,严谨和昂贵的过程中部署应急选项。钓鱼,堵回和侧身。对这些事件的调查主要针对套管集中化。在套管安装期间,需要一个良好的支架来将套管绳子远离井孔的墙壁,以避免差动粘附并实现良好的水泥放置。另一方面,过度集中化可能导致拖曳力增加,特别是在偏离井中,伴随着没有让套管到底部的风险。在套管安装之前,它是在集管间距中运行模拟的标准做法,以实现可接受的支架。弓形弹簧挤压器通常用于9-5 / 8''套管安装和经验表明,这些集管机的放置才能实现可接受的支架,以避免差动粘附以及良好的水泥分布导致具有套管串搭配集管机构,从而增加拖动力。因此,它必须开发一个最佳扶正器放置的策略,以实现可接受的支架以避免差异粘附和最小阻力。本文讨论了使用螺旋桨和弓形弹簧中心的组合来实现这一可接受的支架的方法,以及鲍尔弹簧中心的结合及其对降低差动粘连风险的影响。

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