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首页> 外文期刊>Journal of Petroleum Science & Engineering >Mechanical model and optimal design method of tubular strings with connectors constrained in extended-reach and horizontal wells
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Mechanical model and optimal design method of tubular strings with connectors constrained in extended-reach and horizontal wells

机译:管状弦的机械模型与连接器的最优设计方法,连接器限制延伸楼层井

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摘要

Mechanical analysis and optimal design of down-hole tubular strings with connectors are the key theoretical bases of design and operation in extended-reach and horizontal drilling and completion. However, the complex mechanical interaction between spring connectors and open wellbores are not fully considered in conventional tubular models and the conventional design methods are mostly based on experience and lack of rigorous mathematical derivations. To overcome these shortcomings, a new revised mechanical model and an optimal design method of connectors on down-hole tubular strings have been built. Firstly, the local loads on a unified connector which can depict common spring and rigid connectors constrained in open wellbores are studied. The local connector loads are further introduced into the local mechanical model of tubular strings. The integral mechanical model of tubular strings is amended by the local model. Next, the integral design model of connectors while considering friction reduction, tubular centricity and cost is built. The integral design model is divided into a series of local design models according to the properties of tubular mechanical behaviors on extended-reach and horizontal wellbores. At last, the mechanical model and design method are applied to drill strings with joints and casing strings with centralizers in horizontal drilling and completion.
机译:带连接器的机械分析和最佳设计井下管状串是延长覆盖和水平钻孔和完成的关键理论基础。然而,在传统的管状模型中不完全考虑弹簧连接器和开放井筒之间的复杂机械相互作用,并且传统的设计方法主要基于经验和缺乏严格的数学衍生。为了克服这些缺点,建立了一个新的修订机械模型和井下管状弦的连接器的最佳设计方法。首先,研究了统一连接器上的局部负载,其可以描绘在打开井筒中受到限制的普通弹簧和刚性连接器。局部连接器负载进一步引入管状弦的局部机械模型中。通过本地模型修改管状串的整体机械模型。接下来,建立了考虑摩擦力减少,管状中心和成本的同时连接器的整体设计模型。根据延伸范围和水平井筒上的管状机械行为的性质,整体设计模型分为一系列本地设计模型。最后,将机械模型和设计方法应用于带有接头和套管的钻弦,其水平钻孔和完井中的挤压器。

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