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Numerical investigation on the effect of baffles on liquid sloshing in 3D rectangular tanks based on nonlinear boundary element method

机译:基于非线性边界元法的三维矩形罐玻璃岩散液效果的数值研究

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The numerical simulation of liquid sloshing in the three-dimensional tanks under horizontal excitation and roll excitation was carried out, and the inhibition effect of different baffles on the sloshing phenomenon was investigated. The numerical calculations were carried out by the nonlinear Boundary Element Method (BEM) with Green's theorem based on the potential flow, which was conducted with the governing equation corresponding to the boundaries of each region. The validity of the method was verified by comparing with experimental values and published literatures. The horizontal baffle, the vertical baffle and the T-shaped baffle in the sloshing tanks were investigated respectively, and the baffles' position, dimension and the liquid depth were provided and discussed in detail. It is drawn that the baffle shape plays a non-negligible role in the tank sloshing. The vertical baffle is a more effective way to reduce the sloshing amplitude when the tank is under a horizontal harmonic excitation while the horizontal baffle is a more effective way when the tank is under a roll excitation. The amplitude of free surface elevation at right tank wall decreases with the increasing of the horizontal baffle length and the vertical baffle height. Although the T-shaped baffle has the best suppression effect on tank sloshing under horizontal excitation, it has limited suppression effect under roll excitation and will complicate the sloshing phenomenon when changing baffle height.
机译:进行了水平激发和辊升激发下三维罐中液体晃动的数值模拟,研究了不同挡板对晃动现象的抑制作用。基于电位流动的非线性边界元法(BEM)与绿色的定理进行了数值计算,其与对应于每个区域的边界的控制方程进行。通过与实验价值和公开的文献进行比较来验证该方法的有效性。分别研究了晃动槽中的水平挡板,垂直挡板和T形挡板,并详细地提供并详细讨论了挡板的位置,尺寸和液体深度。它被绘制的是,挡板形状在坦克晃动中起着不可忽略的作用。垂直挡板是一种更有效的方法,以减少罐在水平谐波激励下的晃动幅度,而当罐在滚动激发下是一种更有效的方式。右罐壁的自由表面升高的幅度随着水平挡板长度和垂直挡板高度的增加而减小。虽然T形挡板在水平激发下对罐晃动具有最佳抑制效果,但是在辊激的激发下具有有限的抑制效果,并且在改变挡板高度时将使晃动现象复杂化。

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