首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >A BENCHMARK STUDY ON APPLYING EXTENDED FINITE ELEMENT METHOD TO THE STRUCTURAL INTEGRITY ASSESSMENT OF SUBSEA PIPELINES AT HPHT SERVICE CONDITIONS
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A BENCHMARK STUDY ON APPLYING EXTENDED FINITE ELEMENT METHOD TO THE STRUCTURAL INTEGRITY ASSESSMENT OF SUBSEA PIPELINES AT HPHT SERVICE CONDITIONS

机译:在HPHT使用条件下将扩展有限元方法应用于浅埋管道结构完整性评估的基准研究

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Structural integrity assessment for subsea pipelines at high pressure high temperature (HPHT) service conditions is one of the most challenging research topics in offshore engineering sector. This paper is to introduce an extended finite element method (XFEM) based numerical approach for structural integrity assessment for subsea pipelines serving HPHT reservoir. A 3D model of a quarter of subsea pipe section with an external semi-elliptical surface crack located at the weld toe is built and the crack propagation under fatigue load is simulated using the XFEM. Results are presented and investigated from both geometric and mechanical aspects. Theoretical basis and limitation for this technique are discussed. Suggestions are given for future application of the XFEM technique based on fracture mechanics when assessing the structural integrity of subsea pipelines at HPHT service conditions.
机译:在高压高温(HPHT)使用条件下对海底管道进行结构完整性评估是海上工程领域最具挑战性的研究主题之一。本文将介绍一种基于扩展有限元法(XFEM)的数值方法,用于评估服务于高温高压储层的海底管道的结构完整性。建立了四分之一海底管段的3D模型,在焊趾处有一个外部半椭圆形表面裂纹,并使用XFEM模拟了疲劳载荷下的裂纹扩展。从几何和力学两个方面对结果进行了介绍和研究。讨论了该技术的理论基础和局限性。在评估HPHT使用条件下的海底管道的结构完整性时,提出了基于断裂力学的XFEM技术的未来应用建议。

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