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Effects of Free Stream Turbulence and Unsteady Wake on Convective Heat Transfer Around a Radially Rotating Cylinder

机译:自由流湍流和非恒定尾流对径向旋转圆柱体对流传热的影响

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Experiments were conducted to investigate the effects of free stream turbulence and unsteady wake on convective heat transfer of axial air flow on a radially rotating cylinder. In the experiment, one used wake generator for simulating turbine stator, and rotating circular cylinder for turbine blade. Furthermore, one utilized cold air-hot cylinder in the experiment instead of hot air-cold blade in a real engine. The bakelite test cylinder was pasted with a heater made of 0.03 mm thin film of stainless steel. The maximum air stream velocity was 20 m/s with the corresponding Reynolds number (Re=U_mD/v) of 1.2 X 10~5 that was high enough to simulate the real turbine blade of Re ≈10~5. When the blade rotates, additional centrifugal and Coriolis forces appear in the heated fluid near the blade. With the effect of rotation and high turbulence intensity, the cylinder surface temperature was measured and analyzed for determining the heat transfer coefficient.
机译:进行了实验,以研究自由流湍流和非恒定尾流对径向旋转气缸上轴向气流对流传热的影响。在实验中,使用了一种尾流发生器来模拟涡轮定子,并使用旋转圆柱体作为涡轮叶片。此外,有人在实验中使用了冷风气缸,而不是在实际发动机中使用了冷风叶片。在胶木测试筒上粘贴由0.03毫米不锈钢薄膜制成的加热器。最大气流速度为20 m / s,对应的雷诺数(Re = U_mD / v)为1.2 X 10〜5,足以模拟Re≈10〜5的真实涡轮叶片。当叶片旋转时,在叶片附近的加热流体中会出现额外的离心力和科里奥利力。在旋转和高湍流强度的影响下,对气缸表面温度进行了测量和分析,以确定传热系数。

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