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Applicability of Mass-Spring Models for Seismically Isolated Liquid Storage Tanks

机译:地震隔离液体储罐的大规模弹簧模型的适用性

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Employing base isolation technique for reduction of seismic response of liquid storage tanks has been proved to be quite effective. The main purpose of this paper is to quantitatively clarify, the contribution of convective and impulsive parts of the contained liquid in seismic behavior of an isolated liquid tank. Moreover, the accuracy of the simplified model which is generally used for the prediction of seismic behavior of conventional tanks is examined for isolated liquid tanks. For these purposes, the seismic response of the isolated cylindrical liquid storage tanks is considered using both the exact finite element model and simplified mass-spring model. The fluid-structure interaction is considered in finite element model. The comparison of the results obtained from two models shows that unlike conventionally constructed tanks, the contribution of convective mass cannot be neglected for seismically isolated tanks. Moreover, the accuracy of the simplified model for evaluating the main design parameters including base shear, global overturning moment, and sloshing height is examined for various tank dimensions and earthquake ground motions. The difference between the base shear and overturning moment results in the FE model and the simplified model of an isolated tank limited to 10%. It approves that the simplified mechanical models can be used with confidence for evaluating the seismic design parameters of various isolated tanks. However, the free surface displacement cannot be accurately predicted by simplified models, especially for medium and broad tanks.
机译:已经证明,采用用于减少液体储罐的地震反应的基础隔离技术是非常有效的。本文的主要目的是定量澄清,含有液体的对流和冲动部位在分离的液体罐的地震行为中的贡献。此外,检查了用于预测传统罐的地震行为的简化模型的准确性,用于隔离液体罐。为这些目的,使用精确的有限元模型和简化的质量弹簧模型考虑隔离圆柱形储罐的地震响应。有限元模型中考虑流体结构相互作用。从两种模型获得的结果的比较表明,与常规构造的坦克不同,对于地震隔离罐不能忽略对流质量的贡献。此外,针对各种罐尺寸和地震接地运动来检查用于评估包括基极剪切,全球推翻时刻和晃动高度的主要设计参数的简化模型的精度。基础剪切和推翻时刻的差异导致Fe模型和分离罐的简化模型限制为10%。它批准了简化的机械模型可以放心地用于评估各种隔离罐的地震设计参数。然而,通过简化的模型不能精确地预测自由表面位移,尤其是用于中型和宽坦克。

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