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Rationally modeling collapse due to bending and external pressure in pipelines

机译:合理地模拟管道弯曲和外部压力导致的坍塌

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摘要

The capacity of pipelines to resist collapse under external pressure and bending moment is a major aspect of deepwater pipeline design. Existing design codes present interaction equations that quantify pipeline capacities under such loadings, although reasonably accurate, are based on empirical data fitting of the bending strain, and assumed simplistic interaction with external pressure collapse. The rational model for collapse of deepwater pipelines, which are relatively thick with a diameter-to-thickness ratio less than 40, provides a unique theoretical basis since it is derived from first principles such as force equilibrium and compatibility equations. This paper presents the rational model methodology and compares predicted results and recently published full scale experimental data on the subject. Predictive capabilities of the rational model are shown to be excellent. The methodology is extended for the problem of pipeline collapse under point load, longitudinal bending and external pressure. Due to its rational derivation and excellent prediction capabilities, it is recommended that design codes adopt the rational model methodology.
机译:管道在外部压力和弯矩作用下抵抗塌陷的能力是深水管道设计的主要方面。现有的设计规范提出了一种相互作用方程式,尽管可以合理地量化这种载荷下的管道容量,但它们是基于弯曲应变的经验数据拟合,并假定了与外部压力崩溃的简单相互作用。深水管道坍塌的理性模型相对较厚,直径与厚度之比小于40,因为它是从诸如力平衡和相容性方程等第一原理推导而来的,因此提供了独特的理论基础。本文介绍了理性模型方法,比较了预测结果和最近发表的关于该主题的全面实验数据。有理模型的预测能力非常出色。该方法针对点载荷,纵向弯曲和外部压力下的管道坍塌问题进行了扩展。由于其合理的推导和出色的预测能力,建议设计代码采用合理的模型方法。

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