首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Formulae for the intersecting curves of pump-turbine characteristic curves with coordinate planes in three-dimensional parameter space
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Formulae for the intersecting curves of pump-turbine characteristic curves with coordinate planes in three-dimensional parameter space

机译:三维参数空间中水轮机特性曲线与坐标平面相交曲线的公式

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Pump-turbine characteristics are important boundary conditions for simulating hydraulic transients in pumped-storage hydroelectric power stations. However, the changing laws of the characteristics of different pump turbines are not well understood. Here, two-dimensional characteristic curves are converted into three-dimensional forms, and the intersecting curves, defined by the intersection of the characteristic curves with the coordinate planes in a parameter space defined by the unit rotational speed, unit discharge, and unit torque, are determined to clarify these changing laws. Basic pump-turbine theory of the flow characteristics and idealizations of the hump and S regions of the characteristic curves are considered to determine formulae for each intersecting curve. Each formula consists of two unknown coefficients that are obtained from fits to measured data. The dependence of the coefficients on specific speed values is clarified to obtain general formulae governed by specific speed. The nonlinear changing laws of the characteristic curves and their relationship with the flow and operating conditions are analyzed and clarified. This work provides a theoretical basis for predicting the characteristic curves of any pump turbine without model-measured characteristics.
机译:水轮机特性是模拟抽水蓄能水电站水力瞬变的重要边界条件。但是,人们对不同泵涡轮的特性变化规律尚不十分了解。在这里,二维特征曲线被转换为三维形式,并且相交曲线是由特征曲线与由单位转速,单位排放量和单位扭矩确定的参数空间中的坐标平面的交点定义的,决心澄清这些不断变化的法律。考虑流动特性的基本水泵水轮机理论以及特性曲线的驼峰和S区域的理想化,可以确定每条相交曲线的公式。每个公式都包含两个未知系数,这些系数是通过对测量数据进行拟合获得的。明确了系数对特定速度值的依赖性,以获得由特定速度控制的通用公式。分析并阐明了特征曲线的非线性变化规律及其与流量和工况的关系。这项工作为预测没有模型测量特性的任何水轮机特性曲线提供了理论基础。

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