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Strength evaluation of intersection between stiffeners and primary supporting members in double hull structure

机译:双壳结构加强筋和初级支撑构件交叉口的强度评价

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摘要

In this previous study, a consistent theoretical formula was established in single hull structure, taking account of all the structural components affecting the load share of each member, in combination with the combined load effect of direct force from the longitudinal stiffener and shear force on the primary supporting member. What's more, it has been known qualitatively that the bending moment at the root of the web stiffener in double hull structure is less than that in single hull structure. However, the difference between double hull and single hull structures has not been achieved. In this study, the authors develop a theoretical formulation to represent the stresses at the root of the web stiffener due to the load from both the longitudinal stiffener and the shear force on the primary supporting member in the double hull structure. Then, the results calculated by the derived formulae are compared with the results obtained by finite element analysis, and good accuracy of the proposed formula was verified. Finally, the calculated stresses were compared between double hull and single hull structures. On one hand, the share of loading born by the web stiffener is almost comparable between the double hull and single hull structures. On the other hand, the bending moment at the root of the web stiffener is smaller in the double hull structure than in single hull structure, and therefore, the maximum stress is smaller.
机译:在该前一项研究中,考虑到影响每个成员的负荷份额的所有结构部件,结合直接力与纵向加强件和剪切力的组合负载效应结合使用的所有结构部件,以单壳结构建立一致的理论公式。初级支撑构件。更重要的是,定性地知道,双船体结构中的网状加强件根部的弯矩小于单壳结构中的弯曲力矩。然而,尚未实现双壳和单壳结构之间的差异。在这项研究中,作者制定了理论制剂,以代表由于纵向加强筋和初级支撑构件上的纵向加强件和剪切力的负载在双壳结构中的剪切力而代表幅材加强件的根部的应力。然后,将通过衍生的公式计算的结果与通过有限元分析获得的结果进行比较,并且验证了所提出的公式的良好精度。最后,在双壳和单壳结构之间比较了计算的应力。一方面,Web加强件的载荷份额几乎相当于双壳和单壳结构之间的比较。另一方面,在双壳体结构中,腹板加强件根部的弯矩小于单壳结构,因此,最大应力较小。

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  • 来源
    《Oceanographic Literature Review》 |2020年第9期|2054-2054|共1页
  • 作者单位

    State Key Laboratory of Ocean Engineering of Shanghai Jiao Tong University Collaborative Innovation Center for Advanced Ship and Deep- Sea Exploration Shanghai 200240 China;

    State Key Laboratory of Ocean Engineering of Shanghai Jiao Tong University Collaborative Innovation Center for Advanced Ship and Deep- Sea Exploration Shanghai 200240 China;

    State Key Laboratory of Ocean Engineering of Shanghai Jiao Tong University Collaborative Innovation Center for Advanced Ship and Deep- Sea Exploration Shanghai 200240 China;

    State Key Laboratory of Ocean Engineering of Shanghai Jiao Tong University Collaborative Innovation Center for Advanced Ship and Deep- Sea Exploration Shanghai 200240 China;

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