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Parametric analysis of an offloading hose under internal pressure via computational modeling

机译:通过计算建模对内压下卸荷软管进行参数分析

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An offloading hose is a complex structure, mainly composed of rubber, cords and steel coil, which is used worldwide for oil production and transport systems such as offloading operations in Catenary Anchor Leg Mooring (CALM) buoy. The cords play a vital role on the hose, being responsible for resisting to the applied internal pressure. In this work, finite element models with axisymmetric and 3D elements have been developed to estimate burst pressure of a double carcass floating hose with nominal diameter 20 '' and design pressure of 21 bar. Finite element models have been developed in commercial software using reinforcement bars (rebars) to represent cords behavior. A parametric analysis has been performed, and mesh convergence was also evaluated to predict stress concentration in the failure regions. In addition, complex non-linear calculations for the contact between the hyperelastic rubber, which was modelled with Arruda-Boyce's, and the polyester, polyamide and hybrid reinforcement cords, modelled with Marlow's theory, were considered in the FEM. Maximum load in the REBAR layers was used to predict failure in the cords. Actual full-scale experiments were carried out for comparisons, prototypes with different number of layers and cord material have been manufactured. Burst pressure tests of the carcasses was the criterion used to evaluate the minimum requirements of the Oil Companies International Marine Forum (OCIMF). A maximum deviation of 7.5% was found between computational predictions and experimental results. Therefore, the proposed computational model was considered suitable to be used in the design of these hoses, especially for parametric analysis. (C) 2016 Elsevier Ltd. All rights reserved.
机译:卸荷软管是一个复杂的结构,主要由橡胶,绳索和钢卷组成,广泛用于石油生产和运输系统,例如悬链锚固支腿浮标(CALM)浮标的卸荷操作。绳索在软管上起着至关重要的作用,负责抵抗施加的内部压力。在这项工作中,已经开发出具有轴对称和3D元素的有限元模型来估计标称直径为20英寸的双胎体浮动软管的爆破压力和21 bar的设计压力。在商用软件中已经开发出了有限元模型,使用钢筋(钢筋)来表示绳索行为。已经进行了参数分析,并且还对网格收敛进行了评估,以预测破坏区域中的应力集中。此外,在有限元法中,还考虑了用Arruda-Boyce模型建模的超弹性橡胶与用Marlow理论模型建模的聚酯,聚酰胺和混合增强帘线之间的接触的复杂非线性计算。 REBAR层中的最大负载用于预测电线中的故障。为了进行比较,进行了实际的大规模实验,制造了具有不同层数和帘线材料的原型。屠体的爆破压力测试是用于评估石油公司国际海洋论坛(OCIMF)最低要求的标准。在计算预测和实验结果之间发现最大偏差为7.5%。因此,建议的计算模型被认为适合用于这些软管的设计,尤其是用于参数分析。 (C)2016 Elsevier Ltd.保留所有权利。

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