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An equivalent mechanical model for fluid sloshing in a rigid cylindrical tank equipped with a rigid annular baffle

机译:配备刚性环形挡板的刚性圆柱罐中流体晃荡的等效力学模型

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A mass-spring mechanical model for linear sloshing of fluid in a rigid cylindrical tank with a rigid annual baffle is developed. By means of the subdomain method, the complicated fluid domain is divided into several subdomains with pure boundary conditions and interface conditions. Combined with the continuity conditions of velocity and pressure on interfaces, the velocity potential of fluid in each subdomain is analytically solved. The mass spring model for fluid sloshing is established by generating the same hydrodynamic shear force and overturning moment as those from the exact solutions when the tank is subjected to horizontal excitations. The present model gives all the mechanical parameters including the convective mass-spring oscillators and the impulsive mass as well as their positions. Comparative studies between the present solutions and the available results verify the correctness of the mechanical model. Based on the normalized equivalent masses and spring stiffnesses, the dynamic responses of fluid in tanks are discussed with respect to the fluid height, the baffle position and the inner radius of the baffle, respectively. The present model is especially suitable for dealing with complicated liquid-structure systems. The motivation and novelty of this study are confirmed by an application of the present model to a multi-tank system. (C) 2019 Elsevier Inc. All rights reserved.
机译:建立了具有刚性环形挡板的刚性圆柱罐中流体线性晃动的质量弹簧力学模型。通过子域方法,将复杂的流体域分为具有纯边界条件和界面条件的几个子域。结合界面上速度和压力的连续性条件,解析求解了每个子域中流体的速度势。通过在水箱受到水平激励时产生与精确解相同的流体动力剪切力和倾覆力矩,建立了流体晃荡的质量弹簧模型。本模型给出了所有机械参数,包括对流质量弹簧振荡器和脉冲质量以及它们的位置。本解决方案与可用结果之间的比较研究证明了机械模型的正确性。基于归一化的等效质量和弹簧刚度,分别针对流体高度,隔板位置和隔板的内半径讨论了储罐中流体的动力响应。本模型特别适合处理复杂的液体结构系统。这项研究的动机和新颖性通过将本模型应用于多罐系统得到了证实。 (C)2019 Elsevier Inc.保留所有权利。

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