Application of computational fluid dynamics approach for modeling response of offshore pipeline and riser

B. Hawlader, S. Dutta, Anup Fouzder
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Abstract

Finite element (FE) modeling is commonly used in many civil engineering applications, especially in structural and geotechnical engineering. However, many geotechnical problems, such as large-scale landslides and debris flow and their impact on infrastructure cannot be modeled using typical FE programs developed in the Lagrangian framework because of numerical issues related to extreme mesh distortion. In recent years, large deformation finite element (LDFE) modeling techniques have been developed that can minimize/avoid mesh distortion issues to some extent. An alternative modeling technique is the computational fluid dynamics (CFD) approach, which shows some advantages over LDFE modeling for some applications, especially when the soil transforms into a fluid-like state due to remolding and fluidization. This paper presents some CFD simulation results with particular applications to offshore pipelines and risers.
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计算流体力学方法在海洋管道及隔水管响应建模中的应用
有限元(FE)建模通常用于许多土木工程应用,特别是在结构和岩土工程中。然而,许多岩土工程问题,如大规模滑坡和泥石流及其对基础设施的影响,由于与极端网格畸变相关的数值问题,不能使用在拉格朗日框架中开发的典型有限元程序来模拟。近年来,大变形有限元(LDFE)建模技术得到了发展,可以在一定程度上减少/避免网格畸变问题。另一种建模技术是计算流体动力学(CFD)方法,在某些应用中,它比LDFE建模有一些优势,特别是当土壤由于重塑和流化而转变为类流体状态时。本文给出了一些具体应用于海上管道和立管的CFD模拟结果。
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