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Dynamic Buckling of Cylindrical Storage Tanks under Fluctuating Wind Forces

机译:波动性风力作用下圆柱储罐的动态屈曲

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The present paper investigates the buckling and vibration behavior of cylindrical storage tanks based on wind tunnel experiments and FEM analysis. Focus is on the effect of the vibration of tank shells on the buckling behavior. The dynamic buckling loads obtained from the experiments are compared with those obtained from the FEM analysis for static wind loading. In the case of ring-stiffened tank models, the vibration of tank shell caused by wind fluctuations affects the buckling behavior significantly. On the other hand, in the case of free-edge tank models, the tank shell exhibits quasi-static buckling behavior. In addition, the dynamic buckling behavior of practical steel tanks is simulated by time history response analysis. The dynamic buckling load is found to be larger than the static buckling load. Therefore, the effect of the inertial force generated by the vibration of tank shell on the dynamic buckling behavior seems quite small. Quasi-static response is dominant in the buckling behavior. Finally, the dynamic buckling loads are evaluated based on the results obtained from the FEM analysis for static wind loading.
机译:本文基于风洞实验和有限元分析,研究了圆柱形储罐的屈曲和振动行为。重点是罐壳振动对屈曲行为的影响。从实验获得的动态屈曲载荷与从FEM分析获得的静态屈曲载荷进行比较。对于环形加劲的油箱模型,由风的波动引起的油箱壳的振动会显着影响屈曲性能。另一方面,在自由边缘水箱模型的情况下,水箱壳表现出准静态屈曲行为。此外,通过时程响应分析来模拟实际钢罐的动态屈曲行为。发现动态屈曲载荷大于静态屈曲载荷。因此,由罐壳振动产生的惯性力对动态屈曲行为的影响似乎很小。准静态响应在屈曲行为中占主导地位。最后,基于从FEM分析获得的静态风荷载的结果评估动态屈曲荷载。

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