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Using FEM simulation to predict structural performances of a sailing dinghy

机译:使用有限元模拟来预测帆船的结构性能

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摘要

The use of finite element method (FEM) tools is proposed to investigate the structural response of an eco-sustainable sailing yacht to different loading conditions, typical of those acting during regattas. The boat is, in particular, a 4.60?m dinghy with the hull and the deck made of an hybrid flax–cork sandwich and internal reinforcements made of marine plywood. A preliminary activity has consisted in the refitting of an existing model in order to reduce the hull weight and to improve performances during manoeuvrings. These tasks have been interactively simulated in the virtual environment of the boat CAD model, where longitudinal and transversal reinforcements were enlightened and the maximum beam reduced. At the same time, results of FEM simulations on the modified model were analysed in order to verify the structural integrity. Shape modifications have been applied to the real model in laboratory and the resulting hull has been instrumented with strain gauges and tested under rigging conditions to validate the numerical procedure. Finally, the FEM model was used to predict the response of the boat to loading systems typical of sailing conditions.
机译:建议使用有限元方法(FEM)工具来研究生态可持续帆船游艇对不同装载条件的结构响应,典型的序列中的典型作用。船只特别是4.60?M dinghy,船体和甲板由混合亚麻 - 软木塞三明治和由海洋胶合板制成的内部增强剂制成。初步活动组成于现有模型的重新填写中,以减少船体重量并在Manoeuvrings期间改善性能。这些任务已经在船CAD模型的虚拟环境中互动地模拟,其中启示了纵向和横向增强件,并且最大光束降低。同时,分析了修改模型的有限元模拟的结果,以验证结构完整性。形状修改已应用于实验室中的真实模型,并且所得到的船体已经用应变仪仪器仪表并在索具条件下测试以验证数值程序。最后,使用有限元模型来预测船舶加载帆船条件的装载系统的响应。

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