Flow-induced vibration of a radial gate at various opening heights

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초록

This study proposes a method for mitigating the flow-induced vibration of a radial sluice gate to ensure operational safety and long-term stability. To this end, a supplementary plate was attached to the lower rear surface of the gate and its effect on vibration reduction is investigated using a fluid-structure interaction (FSI) analysis. Specifically, a three-dimensional finite-element method (FEM) model of the gate partially submerged in water was constructed and then validated by comparing the numerical responses of the gate with experimental results under the conditions of steady-state discharge. The FSI analysis showed that the vertical vibration acceleration of the gate diminished by 70% after the supplementary plate was attached, thereby reducing the swirling strength calculated from the vortex shedding behind the gate. The Strouhal number describing the intensity of the gate vibration in the flowing fluid was also reduced by 57% after the supplementary plate was attached. The results of this study can be used to inform the design and development of radial gates, as well as maintenance plans for their economical operation.

키워드

radial gateflow-induced vibrationfluid-structure interaction (FSI) analysissupplementary plateswirling strengthStrouhal numberFLUID-STRUCTURE INTERACTIONPOLLUTANT TRANSPORT MODELIMMERSED BOUNDARY METHODPEARL RIVER ESTUARYMONOLITHIC APPROACHMOVING BOUNDARIESALGORITHMSSIMULATIONSCFD
제목
Flow-induced vibration of a radial gate at various opening heights
저자
Lee, Seung OhSeong, HojeKang, Jun Won
DOI
10.1080/19942060.2018.1479662
발행일
2018-06-30
유형
Article
저널명
Engineering Applications of Computational Fluid Mechanics
12
1
페이지
567 ~ 583