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Mitigation of liquid sloshing in storage tanks by using a hybrid control method

机译:通过混合控制方法减轻储罐中的液体晃动

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In this study, a hybrid method, which simultaneously adjusts structural mass, stiffness, and damping, is proposed to reduce the sloshing of cylindrical tanks under ground motions induced by earthquakes. For this purpose, a viscous mass damper (VMD) is used with a rubber bearing to develop the hybrid control system. Modal and time history analyses are conducted for tanks by using the proposed method. In addition, parametric studies are conducted to investigate the effects of aspect ratio, mass, and damping of the VMD. It is observed that the sloshing heights of the liquid, base shears, and overturning moments of the tanks are reduced through the application of the proposed method. For both slender and broad tanks, the sloshing heights are controlled and the sloshing height can be reduced more in a broad tank. Additionally, a larger equivalent mass of the VMD can help in reducing the sloshing height. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,提出了一种可同时调节结构质量,刚度和阻尼的混合方法,以减少地震引起的地震动下圆柱罐的晃动。为此,将粘性质量阻尼器(VMD)与橡胶轴承一起使用来开发混合控制系统。使用所提出的方法对坦克进行了模态和时程分析。此外,进行了参数研究,以研究纵横比,质量和VMD阻尼的影响。观察到,通过所提出的方法的应用,减小了液体的晃动高度,基础剪切和罐的倾覆力矩。对于细长罐和宽罐,都可以控制晃荡高度,并且可以在宽罐中降低晃荡高度。另外,VMD的较大等效质量可以帮助减小晃动高度。 (C)2016 Elsevier Ltd.保留所有权利。

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