Determination of the main parameters of the pump-turbine using the block-hierarchical approach

V. Makarov, K. Rezvaya, Viktor Drankovskiy, Cherkashenko Mikhaylo
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Abstract

This paper considers the application of the block-hierarchical approach to the study of the working process of the water passage of a radial-axial reversible hydraulic machine based on mathematical modeling. The advantages and features of this approach on the system of multilevel description of the working process are determined. It has been determined that the choice of the most effective model is influenced by the design stage of the water passage and the tasks that are set before designer. The general structure of the mathematical description using dimensionless coefficients for the turbine and pumping modes of operation of a reversible hydraulic machine is presented as a block diagram. Calculations of the main parameters of the pump-turbine for a head of 200 m were carried out. The kinematic characteristics (flow angles of the blade system) in the turbine mode and the hydraulic efficiency in the pumping and turbine modes were determined during these calculations. The mathematical model was applied to the kinematic description of the working process during determining the flow angels. According to the calculation results, the isolines of the angles at the optimal point have acceptable values. The values of the hydraulic efficiency at the optimal point of operation in pumping and turbine modes, obtained as a result of calculations, showed good convergence with the experimental data (0.1 % and 0.7 %, respectively). This indicates the correctness of the calculations performed using this approach.
用分块分层法确定水泵水轮机的主要参数
本文考虑将块分层方法应用于基于数学建模的径向轴向可逆液压机水道工作过程的研究。确定了该方法在工作过程多层次描述系统中的优势和特点。研究表明,最有效模型的选择受水道设计阶段和设计人员所面临的任务的影响。以方框图的形式给出了可逆液压机水轮机和泵送工况的无量纲系数数学描述的一般结构。对水头200m的水泵水轮机的主要参数进行了计算。在此计算过程中,确定了涡轮模式下叶片系统的运动特性(流动角)以及泵送和涡轮模式下的水力效率。将该数学模型应用于确定流角时工作过程的运动学描述。计算结果表明,最优点处的角度等值线具有可接受值。计算结果表明,水泵模式和水轮机模式下的最佳运行点水力效率值与实验值有较好的收敛性(分别为0.1%和0.7%)。这表明使用这种方法进行的计算是正确的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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