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首页> 外文期刊>Journal of Fluid Mechanics >A variational principle for three-dimensional interactions between water waves and a floating rigid body with interior fluid motion
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A variational principle for three-dimensional interactions between water waves and a floating rigid body with interior fluid motion

机译:具有内部流体运动的水波与漂浮刚体三维相互作用的变分原理

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摘要

A variational principle is given for the motion of a rigid body dynamically coupled to its interior fluid sloshing in three-dimensional rotating and translating coordinates. The fluid is assumed to be inviscid and incompressible. The Euler–Poincaré reduction framework of rigid body dynamics is adapted to derive the coupled partial differential equations for the angular momentum and linear momentum of the rigid body and for the motion of the interior fluid relative to the body coordinate system attached to the moving rigid body. The variational principle is extended to the problem of interactions between gravity-driven potential flow water waves and a freely floating rigid body dynamically coupled to its interior fluid motion in three dimensions.
机译:给出了变形原理,用于在三维旋转和平移坐标中动态地耦合到其内部流体晃动的刚体的运动。 假设流体是托盘和不可压缩的。 刚性体动力学的欧拉普内华减少框架适于导出用于刚性主体的角动量和线性动量的耦合局部微分方程,以及内部流体相对于安装在移动刚体上的主体坐标系的运动 。 变分原理延伸到重力驱动电位流水波之间的相互作用的问题,以及在三维中动态地耦合到其内部流体运动的自由浮动刚体。

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