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Numerical and Experimental Study of Uplift Mobilization of Buried Pipelines in Sands

机译:砂中埋地管道上浮动员的数值与实验研究

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Offshore oil and gas pipelines are commonly buried in seabed to provide environmental stability, thermal insulation and mechanical protection. These pipelines are frequently subjected to high thermal and pressure loadings that induce pipeline upheaval buckling (UHB). The uplift resistance provided by the cover soil increases with pipeline upward mobilization and reaches its peak at peak mobilization. This peak mobilization is fundamental for safe UHB designs. This paper highlights that the design guidelines underestimate the peak mobilization. The paper presents full-scale uplift results and finite-element parametric studies in which loose and dense cover soils of up to 3 m (soil cover height to diameter ratio up to 15) and pipeline diameters of 114 and 200 mm were investigated. Results from full-scale and finite-element modeling show that the peak pipe mobilization can be much greater than that suggested by current guidelines, and it is a function of the soil cover height to diameter ratio and soil relative density. A new relationship is proposed to predict peak mobilization from the soil cover height to diameter ratio for a given soil state.
机译:海上石油和天然气管道通常埋在海床中,以提供环境稳定性,隔热和机械保护。这些管道经常承受高的热负荷和高压负荷,从而导致管道发生剧变屈曲(UHB)。覆土提供的抗隆起性随着管道的向上动员而增加,并在动员高峰时达到顶峰。高峰动员是安全UHB设计的基础。本文着重指出设计指南低估了高峰动员。本文介绍了全面的隆升结果和有限元参数研究,其中研究了长达3 m的疏松致密的覆盖土壤(土壤覆盖高度与直径之比高达15)以及管道直径为114和200 mm的情况。完整模型和有限元模型的结果表明,管道的动员峰值可能远大于当前准则所建议的,并且是土壤覆盖高度与直径之比和土壤相对密度的函数。提出了一种新的关系来预测给定土壤状态下从土壤覆盖高度与直径之比的峰值动员。

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