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Numerical and experimental investigation of the resistance performance of an icebreaking cargo vessel in pack ice conditions

机译:破冰条件下破冰货船阻力性能的数值和实验研究

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摘要

The resistance performance of an icebreaking cargo vessel in pack ice conditions was investigated numerically and experimentally using a recently developed finite element (FE) model and model tests. A comparison between numerical analysis and experimental results with synthetic ice in a standard towing tank was carried out. The comparison extended to results with refrigerated ice to examine the feasibility of using synthetic ice. Two experiments using two different ice materials gave a reasonable agreement. Ship-ice interaction loads are numerically calculated based on the fluid structure interaction (FSI) method using the commercial FE package LS-DYNA. Test results from model testing with synthetic ice at the Pusan National University towing tank, and with refrigerated ice at the National Research Council's (NRC) ice tank, are used to validate and benchmark the numerical simulations. The designed icegoing cargo vessel is used as a target ship for three concentrations (90%, 80%, and 60%) of pack ice conditions. Ice was modeled as a rigid body but the ice density was the same as that in the experiments. The numerical challenge is to evaluate hydrodynamic loads on the ship's hull; this is difficult because LS-DYNA is an explicit FE solver and the FSI value is calculated using a penalty method. Comparisons between numerical and experimental results are shown, and our main conclusions are given. \ua9 SNAK, 2013.
机译:使用最新开发的有限元(FE)模型和模型测试,通过数值和实验研究了破冰货船在浮冰条件下的抗力性能。在标准拖曳罐中使用合成冰进行数值分析和实验结果之间的比较。比较结果扩展到冷藏冰的结果,以检验使用合成冰的可行性。使用两种不同的冰材料进行的两次实验给出了合理的协议。使用商业有限元软件包LS-DYNA,基于流体结构相互作用(FSI)方法,以数值计算船冰相互作用载荷。釜山国立大学拖船用合成冰进行模型测试的结果,以及美国国家研究委员会(NRC)储冰室使用冷藏冰的模型测试的结果用于验证和基准化数值模拟。设计的结冰货船在三种浓度(90%,80%和60%)的零散冰条件下用作目标船。冰被建模为刚体,但是冰密度与实验中的相同。数字上的挑战是评估船体上的流体动力载荷。这很困难,因为LS-DYNA是显式的有限元求解器,并且FSI值是使用惩罚方法计算的。给出了数值结果和实验结果的比较,并给出了主要结论。 \ ua9 SNAK,2013年。

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