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Using mathematical modeling for determination the optimal geometric parameters of a pump-turbine water passage

机译:使用数学模型确定水轮机水道的最佳几何参数

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In this work, the method of non-dimension averaged parameters is applied. It allows to choose the optimal geometry of the elements of the water passage at the initial stages of designing a new reversible hydraulic machine or modernizing an existing one. This method has proved positive in the numerical study of high-head reversible hydraulic machines at pressures of 200 and 500 m. Using the method of non-dimension averaged parameters in calculation it is necessary to have geometric parameters only in the specific cross-sections of the water passage. This is very effective in terms of saving time and computational resources. In the course of the work, three variants of the water passage of the high-head low-speed reversible ORO500 hydraulic machine were investigated. As a result, it was determined that the geometry of the water passage’s elements significantly effects the hydraulic machine’s parameters. The highest losses value (62 %) is in the inlet (spiral casing with stator and wicket gate). Therefore, the parameters of these elements were changed. Hydraulic efficiency increased by 1.16 % results from changing the parameters of the spiral casing (increasing the average flow angle by 100). Changing the geometry of the wicket gate leads to additional increasing of efficiency by 0.84 %.
机译:在这项工作中,应用了无维平均参数的方法。它允许在设计新的可逆液压机或对现有液压机进行现代化改造的初始阶段,选择水道元件的最佳几何形状。该方法在200和500 m压力下的高扬程可逆液压机的数值研究中被证明是积极的。在计算中使用无量纲平均参数的方法时,仅在水通道的特定横截面中才需要具有几何参数。就节省时间和计算资源而言,这非常有效。在工作过程中,研究了高扬程低速可逆ORO500液压机的水通道的三种变体。结果,确定水通道元件的几何形状会显着影响液压机的参数。最高的损耗值(62%)在进口(带有定子和风门的螺旋壳体)中。因此,这些元素的参数已更改。通过更改螺旋套管的参数(将平均流量角增加10%),液压效率提高了1.16%。 0 )。改变闸门的几何形状会导致效率额外提高0.84%。

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