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Validation of the Global Hydroelastic Model for Springing Whipping of Ships

机译:验证船舶弹簧湿润模型的验证

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Hydroelastic response of the ship can represent an important part of the overall structural response. This is true both for the extreme ship structural response as well as for the fatigue loads of some structural details. Several full scale monitoring campaigns on the container ships clearly show an important high frequency contribution coming from the global wave induced ship vibrations. Correct numerical modeling of these phenomena is extremely difficult and only approximate models exist up to now. During last several years an efficient hydroelastic model based on the state of the art numerical techniques was developed within the cooperation in between TNO and Bureau Veritas. The model couples the 3D hydrodynamics with either non-uniform beam or 3DFEM structural dynamics. This model showed to be very efficient in terms of the CPU time and in terms of qualitative picture of the time histories of the structural responses. At the same time, several experimental campaigns were undertaken and are in progress, in order to provide the data for validation of the numerical models. The present paper will give an introduction in the numerical method and present some results of these comparisons.
机译:船舶的水力弹性响应可以代表整体结构反应的重要组成部分。这对于极端船舶结构响应以及一些结构细节的疲劳负载是正确的。集装箱船上的几项全规模监测活动清楚地表明了来自全球波诱导船舶振动的重要高频贡献。这些现象的正确数值建模是极其困难的,现在只存在近似模型。在过去几年中,基于现有技术技术的高效液体模型是在TNO和局Veritas之间的合作中制定的。该模型用非均匀光束或3DFEM结构动态耦合到3D流体动力学。该模型在CPU时间和结构反应时间历史的定性图片方面表现出非常有效。与此同时,采取了几项实验活动,正在进行中,以便提供数据验证数值模型。本文将在数值方法中引入介绍,并提出这些比较的一些结果。

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