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Aerothermal Investigations of Tip Leakage Flow in Axial Flow Turbines-Part II: Effect of Relative Casing Motion

机译:轴流式涡轮机尖端泄漏流的空气热研究-第二部分:相对套管运动的影响

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A numerical study has been performed to investigate the effect of casing motion on the tip leakage flow and heat transfer characteristics in unshrouded axial flow turbines. The relative motion between the blade tip and the casing was simulated by moving the casing in a direction from the suction side to the pressure side of the stationary blade. Base line flat tip geometry and squealer type geometries, namely, double squealer or cavity and suction side squealer, were considered at a clearance gap of 1.6%C. The computations were performed using a single blade with periodic boundary conditions imposed along the boundaries in the pitchwise direction. Turbulence was modeled using the shear stress transport k-co model. The flow conditions correspond to an exit Reynolds number of 2.3 X 10s. The results were compared to those obtained without the relative casing motion reported in Part I of this paper. In general, the effect of relative casing motion was to decrease the tip leakage mass flow and the average heat transfer to the tip due to the decrease in leakage flow velocity caused by a drop in driving pressure difference. Compared to the computations with stationary casing, in the case of all the three geometries considered, the average heat transfer to the suction surface of the blade was found to be larger in the case of the computations with relative casing motion. At a larger clearance gap of 2.8% C, in case of a flat tip, while the tip leakage mass flow decreased due to relative casing motion, only a smaller change in the average heat transfer to the tip and the suction surface of the blade was noticed.
机译:进行了数值研究,以研究套管运动对无罩轴流式涡轮机的叶尖泄漏流和传热特性的影响。通过沿从静叶片的吸力侧到压力侧的方向移动壳体来模拟叶片尖端与壳体之间的相对运动。基线扁平尖端的几何形状和刮油器类型的几何形状(即双刮油器或腔体和吸气侧刮油器)的间隙为1.6%C。使用具有沿俯仰方向的边界施加的周期性边界条件的单个叶片来执行计算。用剪切应力传递k-co模型对湍流进行建模。流动条件对应的出口雷诺数为2.3 X 10s。将结果与没有在本文第一部分中报道的相对套管运动的结果进行比较。通常,由于驱动压力差的减小导致泄漏流速的降低,相对壳体运动的作用是减小尖端泄漏质量流量和向尖端的平均热传递。与采用固定套管的计算相比,在考虑所有三种几何形状的情况下,在采用相对套管运动的计算情况下,发现平均传给叶片吸力表面的热量更大。在尖端为2.8%C的较大间隙时,如果尖端是扁平的,则尖端泄漏的质量流量会由于相对的套管运动而降低,而到尖端和叶片吸力表面的平均传热变化较小。注意到了。

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