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Unsteady Numerical Investigation of Blade Tip Leakage,Part 2: Time-Dependent Parametric Study

机译:叶片尖端泄漏的非定常数值研究,第2部分:时变参数研究

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The purpose of the present work is to conduct an unsteady study of the tip leakage flow adjacent to the shroud in real gas turbine engines using an in-house industrial computational fluid dynamics code. Both time-averaged and time-dependent data for the velocity, temperature, and mass flow rate in the tip clearance region are presented in parts 1 and 2, respectively. In part 2 of the present work, the effect of tip clearance height, inlet turbulence intensity, inlet total temperature, and rotor angular velocity on the tip leakage flow pattern is investigated. It is found that the separation bubble is always present near the pressure side of the blade tip at all times and that its size varies with flow conditions. For smaller tip clearance heights, the mass flow rate entering the tip clearance region is lower, due to the smaller area, which results in a smaller separation bubble. At higher stagnation temperatures, the separation bubble size is also reduced, due to the flow's higher velocity, which allows the leakage flow to dominate over the bubble growth. Also, at lower angular velocities, the effect of the shroud relative motion is reduced, and so more leakage flow is allowed to enter, thereby suppressing the growth of the separation bubble.
机译:本工作的目的是使用内部工业计算流体动力学代码对真实燃气轮机中与护罩相邻的叶尖泄漏流进行不稳定的研究。尖端间隙区域中速度,温度和质量流率的时间平均和时间相关数据分别显示在第1部分和第2部分中。在本工作的第2部分中,研究了叶尖间隙高度,入口湍流强度,入口总温度和转子角速度对叶尖泄漏流型的影响。发现分离气泡始终始终存在于叶片尖端的压力侧附近,并且其大小随流动条件而变化。对于较小的尖端间隙高度,由于较小的面积,进入尖端间隙区域的质量流率较低,这导致较小的分离气泡。在较高的停滞温度下,由于气流的较高速度,分离气泡的尺寸也减小了,这使泄漏流在气泡生长过程中占主导地位。同样,在较低的角速度下,护罩相对运动的影响减小了,因此允许更多的泄漏流进入,从而抑制了分离气泡的生长。

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