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首页> 外文期刊>Journal of Sound and Vibration >An experimental investigation on the dynamics of liquid sloshing in a rectangular tank and its interaction with an internal vertical pole
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An experimental investigation on the dynamics of liquid sloshing in a rectangular tank and its interaction with an internal vertical pole

机译:矩形罐中液体晃动动力学的实验研究及其与内部垂直杆的相互作用

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In the present study we perform shake table experiments to study the fluid structure interaction effects between the sloshing liquid and the internal structure. A partially filled storage tank is systematically subjected to (i) horizontal (ii) vertical and (iii) seismic excitations. To start with, forced horizontal excitations are imposed by varying the amplitude of excitation ranging from 0.001 L to 0.0075 L, where, L is the tank length. As the amplitude of excitation is increased, sub-harmonic wave features were observed at the wave crests, which indicate the presence of higher slosh modes. The resulting resonant free surface oscillations are validated against available theoretical and computational studies. Furthermore, the tank was subjected to vertical harmonic excitations at nth slosh frequency (omega(n)), where, n = 1, 2, 3 and 4 covers first four sloshing modes. The excitation frequency (Omega(n) = omega(n)/omega(v)) of 0.5 and the corresponding forcing amplitudes (k(v)) are chosen such that, the combinations were with in the unstable range of Matheiu's instability diagram. For higher modes of vertical excitation, the free surface oscillations were found to be better damped. A detailed study of flow visuals, free surface fluctuations, dynamic pressure data, power spectral densities, structural responses etc reveal the nature of coupling with the container wall and the circular cylinder. The shake table is further programmed to simulate the well known El Centro earthquake excitation, where the storage tank is imposed with horizontal as well as combined horizontal and vertical components of excitation (at 50% of actual amplitude) to investigate the fluid structure interaction effects. When the partially filled storage tank is subjected to seismic excitation, spiky jet like features were observed over the free surface. (C) 2019 Published by Elsevier Ltd.
机译:在本研究中,我们执行摇动台实验,以研究晃动液体和内部结构之间的流体结构相互作用效应。系统地经受(i)水平(ii)垂直和(iii)地震激发的部分填充储罐。为了开始,通过改变从0.001L至0.0075L的激发幅度来施加强制水平激励,其中L是罐长。随着激发的幅度增加,在波峰处观察到副谐波特征,这表明存在更高的Slosh模式。得到的谐振自由表面振荡验证了可用的理论和计算研究。此外,罐在第n Slosh频率(Omega(n))处进行垂直谐波激发,其中n = 1,2,3和4覆盖前四种晃动模式。选择0.5和相应的强制幅度(K(v))的激发频率(ω(n)=ω(n)/ω(n)/ω(n)/ω),使得这些组合在Matheiu的不稳定图的不稳定范围内。对于较高的垂直激发模式,发现自由表面振荡更好地阻尼。对流动视觉效果,自由表面波动,动态压力数据,功率谱密度,结构响应等的详细研究揭示了与集装箱壁和圆柱耦合的性质。摇动台进一步编程为熟悉众所周知的EL中心地震激励,其中储罐施加水平,以及促进的水平和垂直部件(以50%的实际幅度),以研究流体结构相互作用效应。当部分填充的储罐经受地震激发时,在自由表面上观察到类似特征的尖刺射流。 (c)2019年由elestvier有限公司发布

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