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Study on Flow-induced Vibration Characteristics of Hydraulic Hoist of Large-span Upwelling Radial Steel Gate

机译:大跨度升压径向钢门液压升降机流动振动特性研究

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摘要

In this paper we conduct study on flow-induced vibration of large-span upwelling radial steel Gate and its hydraulic hoist. Place an emphasis on vibration response characteristics under two working conditions of diversion and drainage, which proves the safety of hydraulic hoist gate vibration caused by gate vibration. Firstly, we study on dynamic characteristics of fluid-structure interaction of association system of gate and start and stop lever, reveals the discipline of the effect fluid having on structural dynamic characteristics. On this basis, flow-induced vibration characteristics under two conditions of with and without start and stop lever action considered. The results indicate that the gate vibration response with hydraulic hoist used decreases, which explains start and stop lever has certain effect of restraining vibration on gate vibration. In addition, under the working condition of drainage the vibration magnitude of start and stop lever is smaller than that of gate body, which explains there is damping action during transference of gate vibration through start and stop lever. The results find out that on the assumption of optimized gate structure and hydraulic arrangement, it is practicable, safe and reliable to adopt hydraulic hoist. The achievement has directive significance on similar projects construction in the future.
机译:本文在流动诱导的大跨度升高径向钢闸门及其液压提升方面进行研究。在两种工艺条件下强调振动响应特性,从而证明了栅极振动引起的液压提升栅振动的安全性。首先,我们研究了闸门和启动和止动杆结合系统的流体结构相互作用的动态特性,揭示了具有结构动态特性的效果流体的学科。在此基础上,在两个条件下的流动诱导的振动特性考虑了两个条件和止动杆动作。结果表明,使用液压起重机的栅极振动响应减少,这解释了起动和停止杆具有限制栅极振动的振动效果。另外,在排水的工作条件下,启动和止动杆的振动幅度小于栅体体的振动幅度,这解释了通过启动和止动杆的栅极振动的转移过程中的阻尼作用。结果了解,在优化的栅极结构和液压装置的假设上,采用液压提升性是可行的,安全可靠的。成就对未来类似项目建设有指导意义。

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