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STABILITY ANALYSIS OF HYDROPOWER STATIONS WITH COMPLEX FLOW PATTERNS IN THE TAILRACE TUNNEL

机译:尾隧道复杂流动模式水电站的稳定性分析

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摘要

For some special tailrace tunnels in the hydropower stations, including the changing top-altitude tailrace tunnel and the tailrace tunnel with downstream reused flat-ceiling diversion tunnel, during normal operation and hydraulic transients, the flow patterns inside are relatively complex mainly including the free-surface pressurized flow and partial free flow if the tail water level is lower than the top elevation of tunnel's outlet. These complex flow patterns have obvious effect on system's stability, and can not be simulated accurately by the traditional models. Therefore, a characteristic implicit model is introduced to simulate these complex flow patterns for further stability analysis. In some special cases, the characteristic implicit model also fails to completely simulate the mixed free-surface pressurized flow in the flat-ceiling tailrace tunnel. A new method is presented based on both experimental research and numerical simulation, and then, system's stability is analyzed by compared with traditional ordinary boundary condition. The results indicate that, with different simulation models for the complex water flow in the tailrace tunnel, system's dynamic characteristic can be actually revealed with the consideration of the effect of complex flow patterns in the tailrace tunnel on system's stability and regulation performance.
机译:对于水电站中的一些特殊的Tailrace隧道,包括变化的顶级尾部隧道和尾部隧道,在正常运行和液压瞬变期间,内部的流动模式主要包括自由 - 如果尾水位低于隧道出口的顶部高度,则表面加压流动和部分自由流动。这些复杂的流动模式对系统稳定性具有明显的影响,并且传统模型不能准确地模拟。因此,引入了特征隐含模型以模拟这些复杂的流动模式以进行进一步的稳定性分析。在一些特殊情况下,特性隐式模型也未能完全模拟平顶尾部隧道中的混合自由表面加压流动。基于实验研究和数值模拟提出了一种新方法,然后通过与传统的普通边界条件相比,分析系统的稳定性。结果表明,对于Tailrace隧道中复杂水流的不同仿真模型,可以实际上考虑到系统稳定性和调节性能的尾部隧道中复杂的流动模式的效果,实际上可以揭示系统的动态特性。

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