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A Method for Buckling Analysis of a Riserless Drillstring

机译:一种无形钻钻的屈曲分析方法

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The increasing demand for exploration of deepwater reservoirs poses significant challenges for operators, well planners,and drilling engineers.As a recently developed deepwater drilling technology,riserless drilling offers numerous advantages over traditional riser-based drilling.However,riserless drilling is accompanied by substantial operational challenges,one of which is buckling of drillstrings.Buckling failure occurs when the drillstring misses an existing wellhead or experiences excessive torque and drag inside the near–surface section of a well.Buckling could also take place when a pilot well is being drilled and the weight-on-bit(WOB)limit is exceeded.In the absence of constraint from a riser,this buckling can give rise to catastrophic failure.Deep water allows for enough of the bottomhole assembly(BHA)to be exposed to reach the critical load for buckling.Classical buckling models cannot be applied to this situation because the force varies along the length of the assembly.To determine the operational limits and eliminate the risk of buckling-induced failures,a method for buckling analysis of a riserless drillstring has been developed.It is based on the finite element method,and the drillstring is modeled with a number of beams.The method can be utilized to predict the bending moment distribution along the drillstring, which can then be used to determine the critical buckling conditions.A case study is considered on a field failure,where a threaded connection on a riserless drilling BHA failed due to excessive bending.The predicted location of failure agrees with the field observation.The results can readily be extended to other BHAs.
机译:对深水水库勘探需求的越来越大,策划者,策划者和钻井工程师造成了重大挑战。最近开发的深水钻井技术,无异石钻探提供了传统的立式钻井的众多优势。然而,无狭钻孔伴随着大量运营挑战,其中一个是钻出的钻头。当钻石纹错过现有的井口或经历过度扭矩并且在井的近表面部分内部拖曳时,也会发生钻头。当被钻井井时也可能发生超出了位的钻头(WOB)限制。在没有提升管的情况下没有约束,这种屈曲会产生灾难性的失效。天水允许足够的底孔组件(BHA)暴露以达到临界负荷用于屈曲。由于力沿着组装的长度变化,因此不能应用屈曲屈曲模型。确保操作限制并消除屈曲引起的故障的风险,已经开发了一种屈曲分析的方法。这是基于有限元方法,钻头用多个光束建模。方法可以用于预测沿着钻钻的弯曲瞬间分布,然后可以用于确定关键屈曲条件。在现场故障上考虑了案例研究,其中在无异型钻井BHA上由于过度弯曲而失效。该预测失败的位置与现场观察同意。结果可以容易地扩展到其他BHA。

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