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Heat/Mass Transfer Measurement on The Tip Surface Of Rotor Blade With Squlear Rim

机译:带有Squlear边缘的转子叶片尖端表面的热/质量传递测量

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The present study investigates local heat/mass transfer characteristics on blade tip surface with squealer rim. A linear cascade experimental setup consists of three large scale airfoils was used. The axial chord length and turning angle of test blade are 237 mm and 126°, respectively. Heat/mass transfer coefficients were measured with three different rim heights (3%, 6% and 9% of axial chord length) and fixed tip clearance (2% of axial chord length). Main flow Reynolds number based on axial chord length is 1.5.105. Naphthalene sublimation method is used to measure the detailed mass transfer coefficient on the blade tip surface. The heat/mass transfer results show that as the rim height increases, the peak values on the upstream region of the tip surface decreases and moves to the suction side rim. At the downstream region of the tip surface, the pitch-wise averaged heat/mass transfer coefficients increases as the rim height increases.
机译:本研究研究了用尖端边缘对叶片尖端表面上的局部热/质量传递特性。线性级联实验设置由三种大型翼型组成。试验叶片的轴向弦长和转动角度分别为237mm和126°。用三个不同的边缘高度(轴向弦长的3%,6%和9%)和固定尖端间隙(轴向弦长的2%)测量热/传质系数。基于轴向弦长的主流雷诺数为1.5.105。萘升华方法用于测量叶片尖端表面上的详细质量传递系数。热/传质结果表明,随着轮辋高度的增加,尖端表面的上游区域上的峰值减小并移动到吸入侧边缘。在尖端表面的下游区域,随着轮辋高度的增加,俯仰平均热/传质系数增加。

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