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Benchmark Analysis of Seismically Induced Fluid-Structure Interaction in Liquid-Containing Tanks with Insufficient Freeboard

机译:干舷不足的含液罐中地震诱导的流固耦合的基准分析

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Parameters of interest in the seismic analysis of liquid-containing tanks include reaction forces, slosh heights, and peak wall pressures. Numerous references including Section 7.4 of ASCE 4 have simplified expressions for wall pressures, overturning moments, and slosh heights for tanks with excess freeboard. For tanks with insufficient freeboard, less guidance is available. As an example, ASCE 4 requires that if tanks have insufficient freeboard, the liquid level must be lowered or the tank roof and wall must be designed to withstand the impact of the sloshing fluid. However, ASCE 4 does not provide specific guidance on evaluating the impact of liquid with the tank roof. The present study evaluates seismically induced fluid-structure interaction in flat-top and domed tanks with insufficient freeboard using the explicit finite element program MSC.Dytran?2 and the results of the study are compared to approximate solutions. For the systems considered, the study shows that the peak wall pressures in the domed tank are nearly the same as for a vertical-walled tank with excess freeboard. However, for the flat-top tank, the peak roof pressures are significantly higher than predicted using the approximate methods. In all cases, peak wall pressures lower in the tanks are unaffected by local roof or dome interactions.
机译:含液罐的地震分析中感兴趣的参数包括反作用力,晃荡高度和峰值壁压。对于干舷过大的储罐,包括ASCE 4第7.4节在内的许多参考文献都简化了壁面压力,倾覆力矩和晃动高度的表达式。对于干舷不足的油箱,可用的指导较少。例如,ASCE 4要求,如果油箱的干舷不足,则必须降低液位,或者必须将油箱的顶壁和壁设计成能承受晃动流体的冲击。但是,ASCE 4没有提供评估液体对罐顶影响的具体指南。本研究使用显式有限元程序MSC.Dytran?2评估了干舷不足的平顶和半球形储罐中地震诱发的流体-结构相互作用,并将研究结果与近似解进行了比较。对于所考虑的系统,研究表明,半球形水箱中的峰值壁压与干舷过多的垂直壁式水箱几乎相同。但是,对于平顶储罐,顶峰压力明显高于使用近似方法的预测压力。在所有情况下,储罐中较低的峰值壁压均不受局部屋顶或穹顶相互作用的影响。

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