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Experimental investigation into the effects of fluid-structure interaction on the sloshing waves in 3D elastic tanks

机译:对3D弹性箱晃动晃动晃动流体结构相互作用的实验研究

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The flexible walls of the liquid container will deform under the sloshing loads. The deformation has a significant influence on the hydrodynamic behavior of the sloshing in the tank. A model test is conducted to study the hydro-elastic effect on the sloshing waves in the elastic square tank. The experimental liquid depth h/L is 0.16, The model tanks are exited in 1-D harmonic longitudinal motion and the excitation frequency is in the vicinity of the lowest natural frequency of the liquid. Due to the influence of the fluid-structure interaction, the lowest natural frequency of the liquid in the elastic tank slightly deviates from that in the rigid tank of the same size. The wave shapes and amplitudes in the rigid and elastic square tanks are classified and analyzed under the 1D harmonic longitudinal excitation with different excitation frequencies. Corresponding to the different wave regimes of the two-dimensional traveling waves, transition state, three-dimensional resonance and the secondary resonance, the free surface elevations are compared between the rigid tank and the elastic tank to investigate the effect of fluid-structure interaction.
机译:液体容器的柔性壁将在晃动负载下变形。变形对罐中晃动的流体动力学行为具有显着影响。进行模型测试,以研究弹性方罐中的晃动波的水力弹性效果。实验液体深度H / L为0.16,模型罐在1-D谐波纵向运动中退出,并且激发频率位于液体的最低固有频率附近。由于流体结构相互作用的影响,弹性罐中的液体的最低固有频率略微偏离相同尺寸的刚性罐中的液体。在具有不同励磁频率的1D谐波纵向激发下,刚性和弹性方形罐中的波形和幅度分析并分析。对应于二维行驶波的不同波条,过渡状态,三维谐振和二次谐振,在刚性罐和弹性罐之间比较自由表面升高,以研究流体结构相互作用的影响。

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