Stiffness Adjustment of Surface-Piercing Hydrofoils Within Fluid-Structure Interaction

Darin Majnarić, A. Zamarin
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引用次数: 1

Abstract

This paper presents results from numerical analysis of the fluid and structure interaction of two different hydrofoil models, Model 1 and Model 2. Analyzes were performed with stainless steel, aluminium and composite materials for Model 1, and Model 2 was created from composite with aluminium reinforcement. Models were analyzed for three different angles of attack (10, 20, 30 degrees) and for each angle three different speeds were tested (2, 4, 6 m/s). At first, the whole set of analysis was run for entirely submerged hydrofoils and later on for immersed hydrofoils to the draft h. Described numerical analysis was performed in order to adjust stiffens of hydrofoils based on different operational loads. Two-way fluid-structure interaction analysis was used which combines FEM and CFD solvers. Presented results are based on 44 analysis with which all planned conditions of hydrofoil operation were tested. Numerical analysis showed a correlation between stiffens of material i.e. structural response and hydrodynamic loading. Besides mentioned, based on analysis of Model 2 future prediction are given in a way of hydrofoil design or particularly placement for hydrofoils reinforcement.
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流固耦合作用下表面刺穿水翼的刚度调整
本文给出了两种不同水翼模型模型1和模型2的流体与结构相互作用的数值分析结果。模型1采用不锈钢、铝和复合材料进行分析,模型2采用铝增强的复合材料创建。分析了三种不同攻角(10度、20度和30度)的模型,并对每种角度测试了三种不同的速度(2、4、6米/秒)。首先对全沉水水翼进行了完整的分析,然后对沉水水翼进行了深度分析。为了根据不同的工作载荷调整水翼的刚度,进行了相应的数值分析。采用有限元与CFD相结合的双向流固耦合分析方法。给出的结果是基于对所有计划的水翼运行条件进行测试的44项分析。数值分析表明,材料刚度即结构响应与水动力载荷之间存在相关性。此外,在对模型2进行分析的基础上,给出了未来对水翼设计或水翼加固的具体布置方式的预测。
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