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STRENGTH ASSESSMENT ON SUPPORT SYSTEM OF LNG INDEPENDENT TYPE B TANK UNDER SLOSHING LOADS

机译:沉重载荷下LNG独立B型罐的支持系统强度评估

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A Liquefied Natural Gas (LNG) tank usually contains cryogenic cargo with free liquid surface and requires high level of safety. In this study, a two-step procedure has been developed for strength evaluation of support structures in LNG carriers with independent type B tank, which is partly loaded and under sloshing impact. First, an integral model containing a rigid tank and connectors is used to investigate the displacement and force response of supports in time domain. Then, several local models are used for the fine mesh stress analyses of support structures. The nodal displacements of connectors are extracted from integral model and applied to the local model as boundary conditions. The finite element method has been implemented in both steps. The arbitrary Lagrangian-Eulerian technique is applied for kinematical descriptions of the fluid domain in the direct sloshing analysis of type B tank in first step. The present numerical results are compared with previous experimental values, results of other numerical method and analytical solutions, which validates the reliability and accuracy of this method. It is noted that the proposed procedure can be utilized for strength analysis of other types of LNG tanks and helps to optimize their structural design straightforwardly.
机译:液化天然气(LNG)罐通常含有具有自由液体表面的低温货物,需要高度的安全性。在该研究中,已经开发了两步程序,用于利用独立型B罐的LNG载体中的支持结构的强度评估,其部分地装载并在晃动冲击下。首先,使用含有刚性罐和连接器的整体模型来研究时域中支持的位移和力响应。然后,几种本地模型用于支撑结构的细网格应力分析。连接器的节点位移从积分模型中提取,并将其应用于本地模型作为边界条件。有限元方法已经在这两个步骤中实现。 Arcatigard Lagrangian-Eulerian技术用于第一步中B型罐的直接晃动分析中的流体结构域的运动学描述。将本发明的数值结果与先前的实验值进行比较,其他数值方法和分析解决方案的结果验证了该方法的可靠性和准确性。应注意,所提出的程序可用于对其他类型的LNG罐进行强度分析,并有助于直接优化其结构设计。

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