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An efficient structural finite element for inextensible flexible risers

机译:一种高效的结构有限元,可用于中间柔性立管

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A core part of all numerical models used for flexible riser analysis is the structural component representing the main body of the riser as a slender beam. Loads acting on this structural element are self-weight, buoyant and hydrodynamic forces, internal pressure and others. A structural finite element for an inextensible riser with a point-wise enforcement of the inextensibility constrain is presented. In particular, the inextensibility constraint is applied only at the nodes of the meshed arc length parameter. Among the virtues of the proposed approach is the flexibility in the application of boundary conditions and the easy incorporation of dissipative forces. Several attributes of the proposed finite element scheme are analysed and computation times for the solution of some simplified examples are discussed. Future developments aim at the appropriate implementation of material and geometric parameters for the beam model, i.e. flexural and torsional rigidity.
机译:用于柔性提升管分析的所有数值模型的核心部分是表示作为细长梁的提升器主体的结构组件。作用于该结构元件的负载是自我重量,浮力和流动力,内部压力等。提出了一种具有不明显强制执行不明显限制的不可伸展立管的结构有限元。特别地,仅在网状弧长参数的节点处应用不封闭的约束。在所提出的方法的美德中,在应用边界条件和容易掺入耗散力的灵活性中。分析了所提出的有限元方案的几个属性,并讨论了用于解决一些简化示例的计算时间。未来的发展旨在适当实施梁模型的材料和几何参数,即弯曲和扭转刚度。

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