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首页> 外文期刊>Journal of Fluids and Structures >Fluid-structure interaction analysis of flexible composite marine propellers
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Fluid-structure interaction analysis of flexible composite marine propellers

机译:柔性复合材料船用螺旋桨流固耦合分析

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摘要

There is an increasing interest in the marine industry to use composites to improve the hydrodynamic and structural performance of naval structures. Composite materials have high strength-to-weight and stiffness-to-weight ratios, and the fiber orientations can be exploited to tailor the structural deformation to reduce the load and stress variations by automatically adjusting the shape of the structure. For marine propellers, the bending-twisting coupling characteristics of anisotropic composites can be exploited to passively tailor the blade rake, skew, and pitch distributions to improve propeller performance. To fully explore the advantages of composite marine propellers, a coupled boundary element (BEM) and finite element (FEM) approach is presented to study the fluid-structure interaction of flexible composite propellers in subcavitating and cavitating flows. An overview of the formulation for both the fluid and structural models is presented. Experimental validation studies are shown for two composite propellers tested at the Naval Surface Warfare Center (NSWCCD). The feasibility of passive hydroelastic tailoring of composite marine propellers is discussed.
机译:在海洋工业中,越来越需要使用复合材料来改善海军结构的流体力学和结构性能。复合材料具有高的强度重量比和刚度重量比,并且可以利用纤维方向来调整结构变形以通过自动调整结构的形状来减少载荷和应力变化。对于船用螺旋桨,可以利用各向异性复合材料的弯曲扭曲耦合特性来被动调整叶片的前倾角,偏斜度和螺距分布,从而改善螺旋桨的性能。为了充分发挥复合材料船用螺旋桨的优势,提出了一种边界元(BEM)和有限元(FEM)耦合的方法来研究柔性复合材料螺旋桨在空化和空化流中的流固耦合。介绍了流体模型和结构模型的配方概述。显示了在海军水面作战中心(NSWCCD)上测试的两个复合螺旋桨的实验验证研究。讨论了复合材料船用螺旋桨被动水弹性剪裁的可行性。

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