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首页> 外文期刊>International Journal of Mechanical Sciences >Numerical derivation of constitutive models for unbonded flexible risers
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Numerical derivation of constitutive models for unbonded flexible risers

机译:无粘结挠性立管本构模型的数值推导

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摘要

In this paper a new constitutive model for flexible risers is proposed and a procedure for the identification of the related input parameters is developed using a multi-scale approach. The constitutive model is formulated in the framework of an Euler-Bernoulli beam model, with the addition of suitable pressure terms to the generalized stresses to account for the internal and external pressures, and therefore can be efficiently used for large-scale analyses. The developed non-linear relationship between generalized stresses and strains in the beam is based on the analogy between frictional slipping between different layers of a flexible riser and frictional slipping between micro-planes of a continuum medium in non-associative elasto-plasticity. Hence, a linear elastic relationship is used for the initial response in which no-slip occurs; an onset-slip function is introduced to define the 'no-slip' domain, i.e. the set of generalized stresses for which no slip occurs; a non-associative rule with linear kinematic hardening is used to model the full-slip phase. The results of several numerical simulations for a riser of small-length, obtained with a very detailed (small-scale) non-linear finite-element model, are used to identify the parameters of the constitutive law, bridging in this way the small scale of the detailed finite-element simulations with the large scale of the beam model. The effectiveness of the proposed method is validated by the satisfactory agreement between the results of various detailed finite-element simulations for a short riser, subject to internal and external uniform pressure and uniform cyclic bending loading, with those given by the proposed constitutive law.
机译:本文提出了一种新的柔性立管本构模型,并提出了一种采用多尺度方法识别相关输入参数的程序。本构模型是在Euler-Bernoulli梁模型的框架内制定的,并在广义应力中添加了适当的压力项以考虑内部和外部压力,因此可以有效地用于大规模分析。梁中广义应力与应变之间发展起来的非线性关系是基于在非缔合弹塑性条件下柔性立管不同层之间的摩擦滑移与连续介质的微平面之间的摩擦滑移之间的类比。因此,线性弹性关系用于发生滑动的初始响应。引入了滑移函数来定义``无滑移''域,即没有滑移的广义应力集;使用具有线性运动学硬化的非关联规则来模拟整个滑移阶段。通过非常详细的(小规模)非线性有限元模型获得的小长度立管的几个数值模拟结果,可用于识别本构定律的参数,从而以这种方式桥接小规模大型梁模型的详细有限元模拟的概述。通过对短立管进行各种详细的有限元模拟的结果(受内部和外部的均匀压力和均匀的周期性弯曲载荷的影响)与所建议的本构关系给出的令人满意的一致性,验证了所提方法的有效性。

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