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Optimization and Mechanism of the Wicket Gate Closing Law for High-Head Pumped Storage Power Stations

机译:高头泵送存储电站检票口闭合法的优化与机制

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摘要

The high-head pumped storage power station (PSPS) has complex working conditions and severe transient processes. Under load rejection conditions, the turbine speed and the flow channel pressure will threaten the unit. By adjusting the wicket gate closing law (WGCL), we can effectively alleviate the adverse effects of the transient process. In this study, a full flow channel refined model of a high-head PSPS was constructed, and the influence mechanism of load rejection conditions on key parameters was analyzed by tracking the operating trajectory on the S characteristic curves and simulating the transient flow field inside the pumped turbine by three-dimensional computational fluid dynamics (3D-CFD). Given the contradiction between different parameters in the wicket gate closing process, a third-generation non-dominated genetic algorithm based on reference point selection (NSGA-III) was introduced, and a high-dimensional multi-objective WGCL optimization model was constructed. We compared parameter changes in the two-phase and three-phase WGCL optimized elite solutions and explained the rationality of adopting the three-phase WGCL in high-head PSPSs. By proposing an improved three-phase WGCL, a new scheme—the most suitable WGCL under load rejection—was obtained through precise optimization. The research embodied the excellent effect of the heuristic multi-objective (MO) optimization algorithm based on the Pareto strategy in solving the operation problem of the large fluctuation transient process of hydraulic machinery. It revealed the theoretical basis of engineering adjustment for the safe production and operation of hydropower.
机译:高头泵送存储电站(PSP)具有复杂的工作条件和严重的瞬态过程。在负载排斥条件下,涡轮速度和流动通道压力将威胁到该单元。通过调整检票口闭合法(WGCL),我们可以有效缓解瞬态过程的不利影响。在该研究中,构造了高头PSP的完整流动通道精制模型,通过跟踪S特征曲线上的操作轨迹并模拟瞬态流场的操作轨迹来分析​​负载抑制条件对关键参数的影响机理。通过三维计算流体动力学(3D-CFD)泵送涡轮机。鉴于检票口闭合过程中不同参数之间的矛盾,引入了基于参考点选择(NSGA-III)的第三代非主导遗传算法,构建了高维多目标WGCC优化模型。我们比较了两相和三相WGCL优化的精英解决方案中的参数变化,并解释了在高头PSPS中采用三相WGCL的合理性。通过提出改进的三相WGCl,通过精确优化获得了新的三相WGCl-最合适的WGCl。研究体现了启发式多目标(MO)优化算法的优异效果,基于Pareto策略解决了液压机械大波动瞬态过程的运行问题。它揭示了工程调整的理论基础,为水电的安全生产和运行。

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