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Effect of vane/blade relative position on heat transfer characteristics in a stationary turbine blade: Part 2. Blade surface

机译:叶片/叶片相对位置对固定式涡轮机叶片中传热特性的影响:第2部分。叶片表面

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摘要

This study was carried out to investigate local heat/mass transfer characteristics on the stationary blade near-tip surface for various relative positions of the blade. A low speed wind tunnel with a stationary annular turbine cascade was used. The test section has a single turbine stage composed of sixteen guide plates and sixteen blades. The chord length of the blade is 150 mm and the mean tip clearance of the blade is 2.5% of the blade chord. Detailed mass transfer measurements were conducted for the stationary blade fixed at six different relative blade positions in a single pitch using a naphthalene sublimation method. The Reynolds number based on the blade inlet velocity and the chord length ranges between 1.0 x 105 and 2.3 x 105 and mean turbulence intensity is about 3%. The change in blade position, which causes a different interaction between vane and blade, changes the incoming flow condition. As a result, significantly different patterns are observed on the blade surface, especially near the blade tip due to the variation in tip leakage flow.
机译:进行了这项研究,以研究固定叶片近端表面上叶片相对位置的局部传热/传质特性。使用具有固定环形涡轮机叶栅的低速风洞。测试部分具有一个由十六个导向板和十六个叶片组成的涡轮级。叶片的弦长为150毫米,叶片的平均叶尖间隙为叶片弦的2.5%。使用萘升华法对固定在六个不同相对叶片位置上的固定叶片进行了详细的传质测量,该间距为单个螺距。基于叶片入口速度和弦长的雷诺数范围介于1.0 x 105和2.3 x 105之间,平均湍流强度约为3%。叶片位置的变化会导致叶片与叶片之间的相互作用不同,从而改变进入的流动状态。结果,由于叶尖泄漏流的变化,在叶片表面上观察到明显不同的图案,尤其是在叶片尖端附近。

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