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Reduced Order Modeling Of Liquid Sloshing In 3d Tanks Using Boundary Element Method

机译:使用边界元方法的3d坦克液体晃荡的降阶建模

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This paper presents the application of reduced order modeling technique for investigation of liquid sloshing in three-dimensional tanks. The governing equations of sloshing are written using a boundary element formulation for incompressible potential flow. Then, the governing equations are reduced to a more efficient form that is represented only in terms of the velocity potential on the liquid free surface. This particular form is employed for eigen-analysis of fluid motion and the sloshing frequencies and mode shapes are determined. Then, the sloshing frequencies and the corresponding right- and left-eigenvectors are used along the modal analysis technique to find a reduced order model (ROM) for fluid motion. Using a rectangular and a cylindrical tank, the results of the ROM are verified in comparison with the analytical results. Then some example tanks are used to examine the ROM in comparison with the full boundary element model for determination of the free surface motion under the angular and lateral motion of the tank. The obtained results demonstrate the capability and accuracy of the reduced order modeling technique for analysis of sloshing using a few modes.
机译:本文介绍了降阶建模技术在三维水箱液体晃荡研究中的应用。使用不可压缩势流的边界元公式来编写晃动的控制方程。然后,将控制方程式简化为更有效的形式,该形式仅以无液表面上的速度势表示。该特定形式用于流体运动的本征分析,并且确定了晃动频率和振型。然后,沿着模态分析技术使用晃动频率和相应的左右本征向量来找到流体运动的降阶模型(ROM)。使用矩形和圆柱形的水箱,与分析结果相比,对ROM的结果进行了验证。然后,与全边界元模型比较,使用一些示例性储罐来检查ROM,以确定在储罐的角向运动和侧向运动下的自由表面运动。获得的结果证明了降阶建模技术使用几种模式进行晃荡分析的能力和准确性。

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