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Investigation of Coriolis Forces Effect of Flow Structure and Heat Transfer Distribution in a Rotating Dimpled Channel

机译:旋转凹坑内流动结构和传热分布的科里奥利力效应研究

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Large-eddy simulations are used to investigate Coriolis forces effect on flow structure and heat transfer in a rotating dimpled channel. Two geometries with two dimple depths are considered, 8=0.2 and 0.3 of channel height, for a wide range of rotation number, Ro_b=0.0-0.70, based on mean bulk velocity and channel height. It is found that the turbulent flow is destabilized near the trailing side and stabilized near the leading side, with secondary flow structures generated in the channel under the effect of Coriolis forces. Higher heat transfer levels are obtained at the trailing surface of the channel, especially in regions of flow reattachment and boundary layer regeneration at the dimple surface. Coriolis forces showed a stronger effect on the flow structure for the shallow dimple geometry (8=0.2) compared to the deeper dimple where the growth and shrinkage of the flow recirculation zone in the dimple cavity with rotation were more pronounced than the deep dimple geometry (8=0.3). Under the action of rotation, heat transfer augmentation increased by 57% for 8=0.2 and by 70% for 8=0.3 on the trailing side and dropped by 50% for 8=0.2 and by 45% for 8=0.3 on the leading side from that of the stationary case.
机译:大涡模拟用于研究科里奥利力对旋转凹坑通道内流动结构和传热的影响。根据平均体积速度和通道高度,对于大范围的旋转数Ro_b = 0.0-0.70,考虑了两个具有两个凹坑深度的几何形状,即通道高度的8 = 0.2和0.3。发现湍流在尾侧附近不稳定并且在前侧附近稳定,在科里奥利力的作用下,在通道中产生了次级流动结构。在通道的后表面获得更高的传热水平,尤其是在凹坑表面的流动重新附着和边界层再生的区域。与较深的酒窝相比,科里奥利力对浅酒窝几何形状(8 = 0.2)的流动结构表现出更强的影响,在较深的酒窝中,随着旋转,酒窝腔中流动再循环区的生长和收缩比深酒窝几何形状更为明显( 8 = 0.3)。在旋转的作用下,传热增强在后侧增加8%= 0.2的57%,在8 = 0.3处增加70%,在前侧减少8%= 0.2的50%和减少8%= 0.3减少45%与固定盒的情况不同。

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