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Wave-current entry of an asymmetric wedge in 3D0F free motions

机译:3D0F自由运动中不对称楔形的波电流进入

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A time domain higher-order boundary element method (HOBEM) is developed to simulate the coupling process of a two-dimensional freely falling wedge entering obliquely waves in the presence of uniform currents. The wave–current-wedge slamming model is established in the stretched coordinate system, in which the velocity potential is decomposed as the potential induced by the current speed, the scattering potential and the incident potential at the initial stage. Some auxiliary functions are used to decouple the mutual dependence of structure motions with three degrees of freedom (3DOF) and fluid flow. The presented model is verified against the published first-order boundary element method (FOBEM) solutions for wedge entering calm water in free fall motion and wedge entering waves with the prescribed velocity in the absence of currents. Simulations and comparisons are then made for a wedge entering into waves in the following current, zero current and opposing current, respectively. Various parametric studies in the opposing current are performed for a wedge hitting wave crest vertically, obliquely and with initial rotational motion. Detailed results are provided through free surface elevation, pressure distribution, accelerations and velocities, and their physical implications are discussed.
机译:提出了一种时域高阶边界元方法(HOBEM),以模拟在均匀电流存在下二维自由落体楔入斜波的耦合过程。在拉伸坐标系中建立了波浪-电流-楔形撞击模型,其中速度势分解为初始阶段由当前速度,散射势和入射势引起的势。一些辅助功能用于使结构运动与三个自由度(3DOF)和流体流动之间的相互依赖性脱钩。该模型针对已发布的一阶边界元方法(FOBEM)解决方案进行了验证,该解决方案用于自由落体运动中的楔形进入平静水流和楔形进入波在没有电流的情况下以指定的速度运动。然后针对楔形分别在跟随电流,零电流和反向电流中进入波进行仿真和比较。垂直,倾斜并以初始旋转运动对楔形撞击波峰进行反向电流的各种参数研究。通过自由表面高度,压力分布,加速度和速度提供了详细的结果,并讨论了它们的物理含义。

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