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首页> 外文期刊>Journal of Applied Mechanics: Transactions of the ASME >A mechanical model for low-gravity sloshing in an axisymmetric tank
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A mechanical model for low-gravity sloshing in an axisymmetric tank

机译:轴对称储罐中低重力晃荡的力学模型

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A mechanical model for low-gravity sloshing in an axisymmetric tank is developed using a newly developed slosh analysis method. In this method, spherical coordinates, whose origin is at the top of the cone that is tangent to the tank at the contact line of the meniscus with the tank wall, are used to analytically determine the characteristic functions for an arbitrary axisymmetric tank for which it is customary to resort to numerical methods. By this means, fast and cost-efficient computation can be conducted. Parameters of the mechanical model are determined such that the frequency responses of the resultant force and moment to lateral excitation coincide with those of the actual sloshing system. Influences of the Bond number and the liquid-filling level on the parameters of the mechanical model are examined.
机译:使用新开发的晃荡分析方法,开发了用于轴对称储罐中低重力晃荡的力学模型。在这种方法中,使用球面坐标,其原点是在弯月面与罐壁的接触线处与罐相切的圆锥顶部,用于解析确定任意轴对称罐的特征函数。通常采用数字方法。通过这种方式,可以进行快速且具有成本效益的计算。确定机械模型的参数,以使合力和力矩对横向激励的频率响应与实际晃动系统的频率响应一致。研究了键数和液体填充量对力学模型参数的影响。

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