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Self-Vibration Characteristics of Plane Gate in Inverted Siphon Project

机译:倒虹吸项目中平面闸门的自振特性

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Based on the vibration problem of the plane gate in the inverted siphon exit of a large-scale hydraulic project in northern Xinjiang, the software ANSYS is used to build the entity model and finite element model. Considering the influence of fluid-solid coupling, the self-vibration characteristics of the gate in the water and without water are analyzed. The first six self-vibration frequencies and vibration modes of the gate are calculated. The results show that the height of water has a significant impact on the self-vibration frequencies of the plane gate. The first order natural frequency on the condition of small opening is decreased by 28.5%. It shows that the structure of the plane gate must be improved.
机译:基于新疆北部大型液压项目倒立虹吸件的平面门的振动问题,软件ANSYS用于构建实体模型和有限元模型。考虑到流体固体耦合的影响,分析了水中浇口和不含水的自振特性。计算栅极的前六个自动振动频率和振动模式。结果表明,水的高度对平面门的自振频频率产生了重大影响。小开口条件下的第一阶天然频率降低了28.5%。它表明必须改善平面门的结构。

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