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首页> 外文期刊>International Journal of Thermal Sciences >Heat transfer of a circular impinging jet on a circular cylinder in crossflow
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Heat transfer of a circular impinging jet on a circular cylinder in crossflow

机译:横流中圆形冲击射流在圆柱体上的传热

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摘要

Local heat transfer characteristics on a circular cylinder subject to a circular impinging jet in crossflow are studied experimentally at a fixed jet Reynolds number of Re_j = 20,000. Three cylinder-to-jet diameter ratios, D/D_j = 0.5, 2.0, and 5.0 are selected for a fixed jet diameter D_j. As reference, heat removal from a flat plate (having D/D_j = ∞) by the same circular impinging jet is also measured. Results reveal that local surface heat transfer characteristics are governed separately by the mechanisms for two limiting configurations. Smaller cylinders (than the circular jet diameter e.g., D/D_j ≤ 0.5) behave as if immersed in uniform free-stream - flow separation causes the local minimum heat transfer. Larger cylinders (than the circular jet diameter e.g., D/D_j ≥ 2.0) follow the local heat transfer characteristics observable on a flat plate subject to a circular impinging jet - laminar to turbulent flow transition induces local heat transfer peaks.
机译:在固定射流的雷诺数Re_j = 20,000的情况下,通过实验研究了在横流中经受圆形撞击射流的圆柱体上的局部传热特性。对于固定的喷嘴直径D_j,选择三个气缸与喷嘴的直径比D / D_j = 0.5、2.0和5.0。作为参考,还测量了通过相同的圆形冲击射流从平板(D / D_j =∞)中去除的热量。结果表明,局部表面传热特性分别受两种极限构型的机理支配。较小的圆柱体(比圆形射流直径例如D / D_j≤0.5)表现得好像浸没在均匀的自由流中-流动分离导致局部最小的热传递。较大的圆柱体(比圆形射流直径大,例如D / D_j≥2.0)遵循在平板上观察到的局部传热特性,该平板受到圆形撞击射流-层流到湍流的过渡会引起局部传热峰。

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