首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Three-dimensional simulation of unsteady flows in a pump-turbine during start-up transient up to speed no-load condition in generating mode
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Three-dimensional simulation of unsteady flows in a pump-turbine during start-up transient up to speed no-load condition in generating mode

机译:在启动瞬态过程中水轮机中非稳态流动的三维模拟,直至在发电模式下加速空载条件

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摘要

Three-dimensional numerical simulation for a prototype pump-turbine has been performed to investigate the transient characteristics and flow behaviors in the startup process. The rotational speed, which varies with runner torque and inertial of the rotating systems, is obtained by hydraulic-force coupling method. To simulate the guide vane motions, dynamic overset mesh technique is applied with good maintenance of mesh quality. Comparisons with the existing experimental results verify the validity of the current method in predicting the startup transient characteristics of a pump-turbine with good accuracy. During the startup transient, the guide vanes open according to a prescribed sequence, which brings in increasing flow rate to the unit. The runner accelerates due to growing water power energy exerted on the runner blades. When approaching the speed no-load condition, a ring-shaped flow enlacing the entire vaneless space, that we term water-ring, is found to block the through-flow along the circumference, and the pump-turbine features a prominent partial pump flow state in the runner, which equalizes the torque to no load. Thus, the runner rotational speed stops increasing and stabilizes toward rated speed. The prediction shows that the pressure fluctuation amplitude of the speed no-load can be 3.8 to 8 times that of the full load, presenting evidently stronger instability at the speed no-load.
机译:进行了原型水泵水轮机的三维数值模拟,以研究启动过程中的瞬态特性和流动行为。通过液力耦合法获得随转轮转矩和旋转系统惯性而变化的转速。为了模拟导向叶片的运动,采用了动态过冲网格技术,并很好地保持了网格质量。与现有实验结果的比较证明了当前方法在预测水泵水轮机启动瞬态特性方面具有很高的准确性。在启动瞬态过程中,导向叶片会按照规定的顺序打开,这会增加设备的流量。转轮由于施加在转轮叶片上的水力能量的增长而加速。当接近速度空载条件时,发现包围整个无叶空间的环形流(我们称为水环)会阻塞沿周向的通流,并且水泵水轮机具有明显的部分水流转轮处于“空载”状态,使扭矩等于空载。因此,转轮转速停止增加并且朝额定速度稳定。预测表明,空载时的压力波动幅度可以是满载时的3.8到8倍,在空载时存在明显的不稳定性。

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