首页> 外文会议>IMECE2008;ASME international mechanical engineering congress and exposition >Effect of Turbulator Width and Spacing on the Thermal Performance of Angled Ribs in a Rectangular Channel (AR = 3:1)
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Effect of Turbulator Width and Spacing on the Thermal Performance of Angled Ribs in a Rectangular Channel (AR = 3:1)

机译:涡轮宽度和间距对矩形通道中斜肋的热性能的影响(AR = 3:1)

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The thermal performance is measured in a rectangular channel (AR = 3:1) with rib turbulators oriented at 45° to the mainstream flow. Ribs are placed on one of the wide walls, while heat transfer coefficients are also measured on a single smooth, narrow wall. The heat transfer enhancement is combined with the frictional losses to evaluate the benefit of turbulator width. Square ribs (w/e = 1) with a rib pitch - to - height (P/e) ratio of 8 serves as the baseline configuration. The rib width, w, is varied while the rib height, e, remains constant. Rib aspect ratios (w/e) of 1, 2, 3, and 4 are considered. In addition, the distance between the ribs is varied to consider the combined effect of rib width and rib spacing. As the width of the ribs is changing, the physical distance between the ribs, e, is varied, and four rib spacings are considered (e /e = 2.6, 6.6 [baseline corresponding to P/e = 8], 10.6, and 14.6). The thermal performance is measured in the 3:1 channel at Reynolds numbers of 10000, 30000, 50000, and 70000. Results indicate increasing the rib width is effective to increase the thermal performance of a cooling passage. However, the rib width and spacing must be varied in conjunction with one another to optimize the thermal performance.
机译:热性能是在矩形通道(AR = 3:1)中测量的,其中肋条湍流器与主流方向成45°角。肋被放置在宽壁之一上,而传热系数也被测量在单个光滑的窄壁上。传热的增强与摩擦损失相结合,以评估湍流器宽度的好处。肋距与高度(P / e)之比为8的方肋骨(w / e = 1)用作基线配置。肋骨宽度w变化,而肋骨高度e保持恒定。肋骨纵横比(w / e)为1、2、3和4。另外,改变肋条之间的距离以考虑肋条宽度和肋条间隔的组合影响。随着肋骨宽度的变化,肋骨之间的物理距离e发生变化,并考虑了四个肋骨间距(e / e = 2.6、6.6 [基线对应于P / e = 8],10.6和14.6。 )。在雷诺数分别为10000、30000、50000和70000的3:1通道中测量热性能。结果表明,增大肋宽度可有效提高冷却通道的热性能。但是,肋的宽度和间距必须相互结合以优化热性能。

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