首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Transient Pressure Measurements on a High Head Model Francis Turbine During Emergency Shutdown, Total Load Rejection, and Runaway
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Transient Pressure Measurements on a High Head Model Francis Turbine During Emergency Shutdown, Total Load Rejection, and Runaway

机译:高水头型弗朗西斯水轮机在紧急停机,总负荷抑制和失控期间的瞬态压力测量

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The penetration of intermittent wind and solar power to the grid network above manageable limits disrupts electrical power grids. Consequently, hydraulic turbines synchronized to the grid experience total load rejection and are forced to shut down immediately. The turbine runner accelerates to runaway speeds in a few seconds, inducing high-amplitude, unsteady pressure loading on the blades. This sometimes results in a failure of the turbine components. Moreover, the unsteady pressure loading significantly affects the operating life of the turbine runner. Transient measurements were carried out on a scale model of a Francis turbine prototype (specific speed = 0.27) during an emergency shutdown with a transition into total load rejection. A detailed analysis of variables such as the head, discharge, pressure at different locations including the runner blades, shaft torque, and the guide vane angular movements are performed. The maximum amplitudes of the unsteady pressure fluctuations in the turbine were observed under a runaway condition. The amplitudes were 2.1 and 2.6 times that of the pressure loading at the best efficiency point in the vaneless space and runner, respectively. Such high-amplitude, unsteady pressure pulsations can affect the operating life of the turbine.
机译:间歇风和太阳能在可控制的限制范围内渗透到电网,会扰乱电网。因此,与电网同步的水轮机会承受全部负载,并被迫立即关闭。涡轮转子在数秒内加速至失控速度,从而在叶片上产生高振幅,不稳定的压力负载。有时这会导致涡轮组件发生故障。此外,不稳定的压力负载会显着影响涡轮机转轮的使用寿命。在紧急停机期间过渡到总负荷抑制期间,在弗朗西斯涡轮原型机的比例模型(比速= 0.27)上进行了瞬态测量。对变量进行了详细分析,例如扬程,排放量,不同位置(包括流道叶片)的压力,轴扭矩和导向叶片角运动。在失控状态下观察到涡轮机中非定常压力波动的最大幅度。在无叶片空间和流道中,在最佳效率点的振幅分别是压力负载的振幅的2.1倍和2.6倍。这种高振幅,不稳定的压力脉动会影响涡轮机的使用寿命。

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