Fuzzy Methods for Modelling Earthquake Induced Sloshing in Rigid Reservoirs

Kyryl Degtyariov, Vasyl Gnitko, Ye. Kononenko, D. Kriutchenko, O. Sierikova, E. Strelnikova
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引用次数: 2

Abstract

This paper is devoted to analysis of liquid vibrations in rigid containers at seismic loads. An effective numerical method is developed involving boundary elements and fuzzy logics. The novelty of the proposed method consists in using fuzzy concepts to analyzing uncertainties in earthquake parameters. First, deterministic methods are used for estimation of dynamic characteristics of structures with compartments partially filled with liquids. Sloshing problems are solved both in linear and nonlinear formulations. Then randomness of some earthquake parameters is adding to mathematical model. The fuzzy stochastic differential equations are received and solved numerically. Numerical results are obtained that demonstrate influence of uncertainties. These results provide a more adequate estimate of the free surface level during earthquakes and allow us to draw a conclusion about the possibility of hazardous contents spilling.
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刚性水库地震晃动建模的模糊方法
本文研究了地震作用下刚性容器内液体的振动问题。结合边界元和模糊逻辑,提出了一种有效的数值计算方法。该方法的新颖之处在于利用模糊概念分析地震参数的不确定性。首先,采用确定性方法对部分充液结构的动力特性进行估计。晃动问题可以用线性和非线性两种形式来解决。然后在数学模型中加入一些地震参数的随机性。对模糊随机微分方程进行了接收和数值求解。数值结果显示了不确定性的影响。这些结果对地震期间的自由地表水平提供了更充分的估计,并使我们能够得出关于有害物质泄漏可能性的结论。
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