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Steady-state liquid sloshing in a rectangular tank with a slat-type screen in the middle: Quasilinear modal analysis and experiments

机译:中间有条形筛的矩形罐中的稳态液体晃动:准线性模态分析和实验

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摘要

Two-dimensional resonant liquid sloshing in a rectangular tank equipped with a central slat-type screen is studied theoretically and experimentally with focus on nonsmall solidity ratios of the screen (0.5?Sn?0.95), nonlarge number of slots (N?50), and steady-state conditions. The tank is horizontally and harmonically excited with frequencies in a range covering the two lowest primary-excited natural sloshing resonance frequencies in the corresponding clean tank. The liquid depth is finite. Theoretical analysis is based on the multimodal method with linear free-surface conditions and a quadratic pressure drop condition at the screen expressing an "integral" effect of the screen-induced cross-flow separation (or jet flow). New experimental data on the maximum wave elevations at the wall are compared with the theoretical predictions. Very good agreement is shown for the smallest forcing amplitudes (the forcing amplitude-to-tank width ratio is ≈0.001). Increasing the nondimensional forcing amplitude to ≈0.01 leads to discrepancies due to secondary resonance causing the energy context from the two primary-excited antisymmetric modes to other, first of all, symmetric modes. A further increase of the nondimensional forcing amplitude to 0.03 leads to more complex secondary resonance effects. Specific surface wave phenomena, e.g., wave breaking, are experimentally observed and documented by photographs and videos.
机译:在理论上和实验上,研究了装有中央板条型筛的矩形罐中的二维共振液体晃动,重点是筛的非小固体比(0.5?Sn?0.95),狭缝的数量不大(N?50),和稳态条件。水平和谐波激励该储罐,其频率范围应覆盖相应清洁储罐中的两个最低的初级激发自然晃荡共振频率。液体深度是有限的。理论分析基于具有线性自由表面条件和筛分处二次压降条件的多峰方法,该条件表达了筛分引起的错流分离(或射流)的“整体”效应。将关于墙体最大波高的新实验数据与理论预测进行了比较。对于最小的施力幅度显示出非常好的一致性(施力幅度与容器的宽度之比约为0.001)。将无量纲强迫幅度增加到≈0.01会导致由于二次共振而引起的差异,从而导致能量上下文从两个主激发反对称模式转换为其他首先对称的模式。无量纲强迫振幅进一步增加到0.03会导致更复杂的次级共振效应。实验观察到特定的表面波现象,例如波浪破碎,并通过照片和录像记录下来。

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