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An elastic-plastic ice material model for ship-iceberg collision simulations

机译:用于舰船-冰山碰撞模拟的弹塑性冰材料模型

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摘要

Ship-iceberg collisions are currently a hot topic of research. The modeling of iceberg material is crucial for ice mechanics, and the main objective of the present work is to propose an isotropic elastic-perfectly plastic material model to simulate the mechanical behavior of ice in a ship-iceberg collision scenario for Accidental Limit State conditions. The 'Tsai-Wu' yield surface model and a new empirical failure criterion were used to describe the plastic flow of iceberg material, while a cutting-plane algorithm was adopted to address the plastic stress-strain relationship. The proposed iceberg material model was incorporated into the LS-DYNA finite element code using a user-defined subroutine. Calibration of the proposed material model was conducted through a comparison with an abnormal level ice event pressure-area curve. The calculated pressure-area curve was comparable to that recommended by the International Organization for Standardization (ISO) rule. A sensitivity analysis was then conducted, and the proposed ice model was found to be more sensitive to the mesh size than to other parameters. Numerical simulations of iceberg-tanker side and iceberg-ship bow collisions were also analyzed. Moreover, the impact force and energy dissipation were examined. The results from these simulations showed that the proposed isotropic elastic-perfectly plastic iceberg material model can be employed to simulate iceberg behavior in ship-iceberg collisions under Accidental Limit State conditions. (C) 2015 Elsevier Ltd. All rights reserved.
机译:船舶与冰山的碰撞目前是研究的热点。冰山材料的建模对于冰力学至关重要,本研究的主要目的是提出一种各向同性的弹性完美塑性材料模型,以模拟在意外极限状态条件下的船舶与冰山碰撞情况下冰的力学行为。用“ Tsai-Wu”屈服面模型和新的经验破坏准则来描述冰山材料的塑性流动,同时采用切平面算法来处理塑性应力-应变关系。使用用户定义的子例程将建议的冰山材料模型合并到LS-DYNA有限元代码中。通过与异常水平的冰事件压力-面积曲线进行比较,对提出的材料模型进行了校准。计算得出的压力-面积曲线可与国际标准化组织(ISO)规则建议的曲线相媲美。然后进行了敏感性分析,发现拟议的冰模型对网格大小比对其他参数更敏感。还分析了冰山-油轮侧部碰撞和冰山-舰船船首碰撞的数值模拟。此外,检查了冲击力和能量耗散。这些模拟的结果表明,所提出的各向同性弹性完美塑料冰山材料模型可用于模拟意外极限状态条件下船冰冰碰撞中的冰山行为。 (C)2015 Elsevier Ltd.保留所有权利。

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