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Review of analytical studies on seismic fluid-structure interaction of base-supported cylindrical tanks

机译:基支撑圆柱形罐的地震流体结构相互作用分析研究综述

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Analytical solutions for seismic fluid-structure interaction (FSI) of tanks are used by analysts and engineers for a number of purposes, including preliminary sizing, risk assessment, and verification of numerical models. Analytical solutions for seismic FSI of tanks were first developed in the 1930s and have been extended and/or modified in the following nine decades to accommodate different seismic inputs and boundary conditions. This paper reviews published analytical solutions for rigid and flexible, base-supported, cylindrical tanks subjected to unidirectional horizontal motion of a small amplitude. The studies parsed the fluid-structure (FSI) response into an impulsive and a convective component, and addressed frequencies of lateral motions of the tank (i.e., impulsive frequencies), hydrodynamic pressures, frequencies of waves (i.e., convective frequencies), wave heights, and reactions at the base. The solutions were categorized into exact and approximate solutions based on the methodologies used. Herein, FSI responses are calculated and compared for a range of tank dimensions using the analytical solutions from the different studies. The responses presented here are normalized to be unitless, and can be used for tanks with different dimensions and mechanical properties, and subjected to different input motions. A sample steel water tank is analyzed using the normalized solutions for two earthquake ground mo-tions with different frequency contents. Ignoring tank flexibility may significantly underestimate seismic re-sponses of the tank and its contained fluid. The approximate solutions, which have been widely used for decades, may not be sufficiently accurate in the modern era. Calculation errors in the reviewed studies are identified and corrected, and differences are quantified for the sample tank.
机译:分析师和工程师使用罐的地震流体结构相互作用(FSI)的分析解,包括许多目的,包括初步规模,风险评估和数值模型的验证。坦克地震FSI的分析解决方案首先在20世纪30年代开发,并在下面的九十年中延伸和/或修改,以适应不同的地震投入和边界条件。本文评论发布的刚性和柔性底座支撑的圆柱形罐的分析解决方案经受小幅度的单向水平运动。这些研究将流体结构(FSI)响应分析为脉冲和对流部件,以及解决罐的横向运动频率(即,脉冲频率),流体动力学压力,波浪的频率(即,对流频率),波浪高度和基地的反应。基于所用方法,解决方案分为精确和近似解。这里,使用来自不同研究的分析解决方案,计算和比较FSI响应并比较一系列罐尺寸。这里提出的响应是无单独的,可用于具有不同尺寸和机械性能的罐,并进行不同的输入运动。使用具有不同频率含量的两个地震研磨型MO型抗阵路分析样品钢水罐。忽略罐体灵活性可能显着低估罐的地震重新浇注及其含有的液体。已经广泛使用的近似解决方案在现代时代可能没有充分准确。鉴定和校正了审查的研究中的计算误差,对于样品罐量化了差异。

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