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Static analysis of interaction between two adjacent top tensioned risers with consideration of wake effects

机译:考虑尾流效应的两个相邻顶部张紧立管之间相互作用的静态分析

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Collision between adjacent risers has become an important issue as the oil and gas industry moves to deeper waters. In order to estimate the clearance between two marine risers, a static analysis which is mainly concerned with the wake effects is performed in this paper. A new wake model, which is used to predict the wake flow around the downstream riser, is developed based on Prandtl's shearing stress hypothesis. The wake effects with respect to riser interference in uniform current flow are then investigated. In this work, the two risers are both simplified as circular cylinders top-tensioned and pinned at the bottom. A procedure for iteratively predicting the wake velocity distribution and estimating the clearance between two risers is introduced to find the final convergent result by combining the new wake model with the global riser analysis software Riflex. The effects of different factors like riser spacing, top tension force and current velocity are also studied. The results indicate that these factors significantly influence the riser interference. Since the current velocity cannot in general be controlled for a specific site, the riser spacing and the top tension force become the primary design parameters that can be chosen by the operator.
机译:随着石油和天然气行业向更深水域发展,相邻立管之间的碰撞已成为一个重要问题。为了估算两个船用立管之间的间隙,本文进行了主要涉及尾流影响的静态分析。基于Prandtl的剪切应力假设,开发了一种新的尾流模型,用于预测下游立管周围的尾流。然后研究了在均匀电流中关于立管干扰的唤醒效应。在这项工作中,两个立管都简化为顶部张紧并固定在底部的圆柱。通过将新的尾流模型与全局立管分析软件Riflex相结合,介绍了一种迭代预测尾流速度分布并估算两个立管之间的间隙的过程,以找到最终的收敛结果。还研究了立管间距,顶部拉力和电流速度等不同因素的影响。结果表明,这些因素显着影响立管干扰。由于通常无法针对特定位置控制当前速度,因此冒口间距和顶部拉力成为操作员可以选择的主要设计参数。

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