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Prediction of the Flow-Induced Vibration Response of the Chenderoh Dam Left Bank Section

机译:Chenderoh大坝左岸断面流致振动响应的预测

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Flow-induced vibration is a common phenomenon that happened in any of dam structures during the operational condition. This includes the effect of water spilling from the upstream to the downstream of the dam due to high water volume at the upstream side. the release of water from the dam can be beneficial in generating the electricity source to the surrounding areas. However, in some cases, the spill of water can induced the significant vibration effects to the dam structure. In this study, the prediction of the flow-induced vibration response at the left bank section of the real scale Malaysian Chenderoh Dam model is simulated using the ANSYS software. the input force disturbances from the flow of the water at the left bank section during the normal water spilling condition is investigated. the results of frequency domain response and operational defection shapes (ODS) from the effect of flow-induced vibration are compared with the natural frequencies and mode shapes of the dam. From the results, the transient vibration responses due to the flow of water happened at the frequency of 13.3 Hz while the natural frequency of the left bank section occurred at 52.3 Hz, which indicates that there is no resonance phenomenon for the normal case of water spilling at the left bank section of the dam structure. This result is useful for the dam operation section in order to avoid any disaster of the dam structure.
机译:流动引起的振动是在运行状态下发生在任何大坝结构中的常见现象。这包括由于上游侧水量大而导致水从大坝上游向下游溢出的影响。从大坝中释放水可以为周围地区提供电力。但是,在某些情况下,水的溢出会对坝结构产生明显的振动影响。在这项研究中,使用ANSYS软件模拟了实际规模的马来西亚Chenderoh大坝模型左岸部分的水流振动响应预测。研究了正常洒水状态下左岸水流的输入力扰动。将流动引起的振动的影响得到的频域响应和运行缺陷形状(ODS)的结果与大坝的固有频率和振型进行了比较。结果表明,由于水流引起的瞬态振动响应发生在13.3 Hz频率,而左岸部分的固有频率出现在52.3 Hz,这表明在正常的漏水情况下没有共振现象。在大坝结构的左岸部分。该结果对于大坝运行部分是有用的,以便避免大坝结构的任何灾难。

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