首页> 外文期刊>International journal of numerical methods for heat & fluid flow >Thermal performance of angled, V-shaped and leaning-V-shaped ribs in a rotating rectangular channel with 45° orientation
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Thermal performance of angled, V-shaped and leaning-V-shaped ribs in a rotating rectangular channel with 45° orientation

机译:45°旋转矩形通道中倾斜的V形和倾斜V形肋的热性能

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Purpose - The fluid flow in a rotating channel is obviously different from that in a stationary channel due to the existence of Coriolis force, which, in turn, enhances the heat transfer on the trailing side and reduces the heat transfer on the leading side. The purpose of this paper is to study various rib configurations combined with channel orientation on heat transfer and frictional loss in a rotating channel. Design/methodology/approach - In the present study, the k-a> SST model was used as the turbulence model. The fluid flow direction in the channel is radially outward. The angle between the rotation axis and leading side is 45°. The channel aspect ratio (W/H) is 2, the blockage ratio (elD„) is 0.1 and the pitch ratio (P/e) is 10. The Reynolds number is fixed at 10,000 and the rotation number varies from 0 to 0.7. Angled ribs, reversed angled ribs, standard V-shaped ribs and outer-leaning V-shaped ribs, are examined. Findings - It is found that the reversed angled rib configuration and the outer-leaning V-shaped rib configuration display better heat transfer performance than the V-shaped ribs in rotating condition, which is in contrast to stationary condition. At the leading side, the reversed angled rib and the outer-leaning V-shaped rib show better performance in recovering the heat transfer recession due to the negative effects of the Coriolis force. Research limitations/implications - In the present study, the fluid is incompressible with constant thermophysical properties and the flow is steady. Practical implications - The results of this study will be helpful in design of ribbed channels internal cooling for turbine blade. Originality/value - The results imply that the rib configuration combined with channel orientation significantly impacts the heat transfer performance in a rotating channel. The reversed angled rib and the outer-leaning V-shaped rib show better heat transfer performance than standard V-shaped ribs, especially at high Rotating numbers, which is in contrast to stationary condition. The outer-leaning V-shaped rib has a relatively good heat transfer uniformity along the widthwise direction.
机译:目的-由于存在科里奥利力,旋转通道中的流体流量与固定通道中的流体流量明显不同,这反过来又增强了尾部侧的传热,并减小了前侧的传热。本文的目的是研究与旋转方向上的传热和摩擦损失有关的各种肋结构,并结合通道方向。设计/方法/方法-在本研究中,将k-a> SST模型用作湍流模型。通道中的流体流动方向是径向向外的。旋转轴与前导侧之间的角度为45°。通道宽高比(W / H)为2,阻塞比(elD„)为0.1,螺距比(P / e)为10。雷诺数固定为10,000,转数从0到0.7变化。检查了斜肋,反斜肋,标准V形肋和倾斜V形肋。发现-发现倾斜的肋状结构和外倾斜的V形肋状结构在旋转状态下比V形肋状结构表现出更好的传热性能,这与静止状态相反。在前侧,由于科里奥利力的负面影响,倒角的肋骨和倾斜的V形肋骨在恢复传热衰退方面表现出更好的性能。研究的局限性/意义-在本研究中,流体是不可压缩的,具有恒定的热物理性质,并且流量稳定。实际意义-这项研究的结果将有助于设计带肋通道的涡轮机叶片内部冷却。原创性/价值-结果表明肋结构与通道方向相结合会显着影响旋转通道中的传热性能。倒角的肋骨和倾斜的V型肋骨比标准V型肋骨具有更好的传热性能,特别是在高转数下,这与静止状态相反。外部倾斜的V形肋沿宽度方向具有相对良好的传热均匀性。

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