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Simulations of Natural Vibration Characteristics of Large-size Radial Gate with Three Arms Considering Fluid-solid Coupling

机译:三臂考虑液固耦合三臂的大型径向门的自然振动特性模拟

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When orifice opening of flow under gate through spillways becomes large, large-size radial gates with three radial struts (arms) are normally recommended and have been used in various hydraulic engineering structures/projects. However, radial gates with three arms are easier to have operational failure caused by severe vibrations during opening and closing gate process than those with two arms. In this paper, a finite element numerical model was developed using ADINA software to simulate and analyze natural vibration characteristics of a radial gate with three arms at the Shuhe Hydropower Station using fluid-solid coupling theory. Simulation results of natural vibration characteristics for the gate were also developed without considering fluid-solid coupling. The model results indicate that fluid-solid coupling has remarkable effect on simulated natural vibration characteristics and can not be ignored. Simulated natural frequencies of the same mode are increased with the increase of openings, but the change amplitudes are not significant. This study provides useful information for structural dynamic design of large-size radial gates in order to avoid the natural frequency of radial gate close to the main pulsation frequency of water flow that may cause resonance.
机译:当孔通过溢洪道下的栅极开口流动时,通常建议使用具有三个径向支柱(臂)的大型径向栅极,并且已在各种液压工程结构/项目中使用。然而,具有三个臂的径向栅极更容易具有由打开和关闭栅极过程中的严重振动引起的操作失败,而不是具有两个臂的栅极。本文采用Adina软件开发了有限元数值模型,模拟和分析了使用流体固体耦合理论的舒河水电站三臂的径向闸门的自然振动特性。还开发了浇口自然振动特性的仿真结果,而不考虑流体固相偶联。模型结果表明,流体固体耦合对模拟自然振动特性具有显着影响,并且不能忽略。随着开口的增加,模拟相同模式的自然频率增加,但变化幅度不显着。本研究提供了大尺寸径向栅极的结构动态设计的有用信息,以避免靠近可能导致共振的水流的主要脉动频率的径向栅极的自然频率。

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