Losses and Flow Structure for the Movement of Turbine Blade Row

Soo-Yong Cho, Y. Jung
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Abstract

: The output power of turbine is greatly affected by the losses generated within the passage. In order to develop a better turbine or loss models, an experimental study was conducted using a linear cascade experimental apparatus. The total pressure loss and flow structures were measured at two cross-sectional planes located downstream of blade row. Measurement was conducted in a steady state for the several different locations of the blade row along the rotational direction. The blade row moved by 20 % of the pitch, and tip clearance was varied from 2% to 8%. Axial-type blades were used and its blade chord was 200mm. A square nozzle was applied and its size was 200mm x 200mm. The experiment was conducted at a Reynolds number of 3×10 5 based on the chord. Nozzle flow angle sets to 65° based on the axial direction and the solidity of blade row was 1.38. From the experimental results, the total pressure loss was greatly varied in the receding region than in the entering region. The flow properties within the blade passage were strongly changed according to the location of blade row.
涡轮叶片排运动的损失与流动结构
:水轮机的输出功率受通道内产生的损失影响很大。为了建立更好的涡轮或损失模型,利用线性叶栅实验装置进行了实验研究。在叶片排下游的两个横截面上测量了总压损失和流动结构。在稳态下对叶片排沿旋转方向的几个不同位置进行了测量。叶片排移动了20%的节距,叶尖间隙从2%到8%不等。叶片采用轴向型,叶弦为200mm。采用方形喷嘴,尺寸为200mm × 200mm。实验以弦为基础,雷诺数为3×10 5。喷嘴沿轴向流动角设置为65°,叶片排固度为1.38。从实验结果来看,总压损失在后退区比进入区变化更大。叶片排的位置对叶片流道内的流动特性有强烈的影响。
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