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Earthquake-induced sloshing effects on the hydrodynamic pressure response of rigid cylindrical liquid storage tanks using CFD simulation

机译:基于CFD模拟的地震晃动对刚性圆柱状液体储罐水动力压力响应的影响

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This study aims at evaluating nonlinear hydrodynamic pressures on the inner wall of rigid cylindrical tanks, resulting from liquid sloshing due to the simultaneous action of two horizontal and one vertical ground motion components. For this purpose, the computational model that can predict realistic dynamic fluid responses is validated through comparison of simulated and experimental results reported in the literature. Using the validated computational fluid dynamics modeling technique, the computational model of a prototype cylindrical steel water tank constructed in California is developed to examine the effect of vertical ground motion component on the hydrodynamic pressure response of the tank. Comparison with and without vertical excitation indicates that the vertical motion significantly increases the hydrodynamic pressure on the inner wall of the tanks. Additionally, the effect of water elevation and tank dimensions (height and diameter) on the hydrodynamic pressure is investigated when the tanks are simultaneously subjected to two horizontal and one vertical ground motion components. As the water level and tank dimensions increase, the peak hydrodynamic pressure increases due to the increase of liquid mass.
机译:这项研究旨在评估刚性圆柱罐内壁上的非线性流体动力压力,这是由于两个水平和一个垂直地面运动分量同时作用而引起的液体晃动所致。为此,可以通过比较文献中报道的模拟和实验结果来验证可以预测现实动态流体响应的计算模型。使用经过验证的计算流体动力学建模技术,开发了在加利福尼亚建造的原型圆柱形钢水箱的计算模型,以检验垂直地面运动分量对水箱水动力响应的影响。有和没有垂直激励的比较表明,垂直运动显着增加了水箱内壁上的流体动力压力。此外,研究了当水箱同时受到两个水平和一个垂直地面运动分量时,水位和水箱尺寸(高度和直径)对水动力压力的影响。随着水位和水箱尺寸的增加,由于液体质量的增加,峰值水动力压力也随之增加。

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