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Verification of a boundary element model for wave forces on structures with porous elements

机译:验证多孔元件波力波力边界元模型

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Hydrodynamic parameters on structures with porous elements can be significantly altered compared to those on solid structures. The use of a porous support structure for a floating wind turbine could potentially reduce platform motions and wave forces, correspondingly reducing adverse effects on the wind turbine, such as fatigue damage and loss in energy capture. This paper presents a Boundary Element Method (BEM) to calculate linear wave forces on solid structures with a porous wall bounding an interior volume of water. In the model, the shape of the solid and porous elements of the structure can take arbitrary shapes and be either surface-piercing or fully submerged. Initial verification results are presented against existing commercial BEM software for solid bodies and analytical results for solid/porous structures with simple geometries. In all cases, the comparisons show good agreement, giving confidence that the method can be used in more complex cases where analytical results cannot be derived.
机译:与固体结构上的那些相比,可以显着改变具有多孔元件的结构的水动力学参数。用于浮动风力涡轮机的多孔支撑结构可能会降低平台运动和波力,相应地降低对风力涡轮机的不利影响,例如疲劳损坏和能量捕获的损失。本文呈现边界元法(BEM),以计算具有多孔壁的固体结构上的线性波力,边界壁限定了水的内部体积。在该模型中,结构的固体和多孔元件的形状可以采用任意形状并且是表面刺穿或完全浸没。初始验证结果以现有的商业BEM软件呈现用于实体的实体和分析结果,具有简单几何形状的固体/多孔结构。在所有情况下,比较都表现出良好的一致性,给予信心,即该方法可以在无法导出分析结果的更复杂的情况下使用。

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