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Comparisons of drill string cyclic loading due to vibration and dog-legs

机译:振动和狗腿引起的钻柱循环载荷的比较

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This paper presents an investigation of the cyclic loading on oilfield drill strings due to longitudinal, torsional and lateral vibrations and compares this with the "statical" cyclic loading caused by a deviated string at a dog-leg. Such cyclicloading is a principal contributor to drill string fatigue failures. The methodology of the paper uses numerical dynamic analyses of longitudinal and torsional vibrations together with quasi-static models for lateral vibration and dog-legs to compare thecyclic loading induced separately by each of these effects. A linear damage law (that is Miner's rule) is used to calculate the resultant fatigue damage from the cyclic loading. The results of this investigation show that longitudinal and torsionalvibrations may induce significant cyclic loading comparable to that from typical dog-legs whereas the influence of lateral vibration is small. The longitudinal and torsional vibrations are strongly influenced by rotary speed and damping coefficients andcan induce significant cyclic loading and rapid accumulation of fatigue damage on drill pipes and collars.
机译:本文介绍了对油田钻柱由于纵向,扭转和横向振动引起的循环载荷的研究,并将其与狗腿处偏斜的钻柱引起的“静态”循环载荷进行了比较。这种循环载荷是导致钻柱疲劳失效的主要因素。本文的方法使用了纵向和扭转振动的数值动力学分析,以及横向振动和狗腿的准静态模型,比较了每种效应分别引起的循环载荷。线性损伤定律(这是Miner规则)用于计算循环载荷引起的疲劳损伤。这项研究的结果表明,纵向振动和扭转振动可能会引起明显的循环载荷,与典型的狗腿相比,而横向振动的影响很小。纵向和扭转振动会受到转速和阻尼系数的强烈影响,并且会在钻杆和钻collar上引起明显的循环载荷和疲劳损伤的快速积累。

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