首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.3; 20040614-17; Vienna(AT) >THERMAL PERFORMANCE OF ANGLED, V-SHAPED, AND W-SHAPED RIB TURBULATORS IN ROTATING RECTANGULAR COOLING CHANNELS (AR = 4:1)
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THERMAL PERFORMANCE OF ANGLED, V-SHAPED, AND W-SHAPED RIB TURBULATORS IN ROTATING RECTANGULAR COOLING CHANNELS (AR = 4:1)

机译:旋转矩形冷却通道中成角度的,V形和W形的肋式涡轮机的热性能(AR = 4:1)

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An experimental study was performed to measure the heat transfer distributions and frictional losses in rotating ribbed channels with an aspect ratio of 4:1. Angled, discrete angled, V-shaped, and discrete V-shaped ribs were investigated, as well as the newly proposed W-shaped and discrete W-shaped ribs. In all cases, the ribs are placed on both the leading and trailing surfaces of the channel, and they are oriented 45° to the mainstream flow. The rib height-to-hydraulic diameter ratio (e/D) is 0.078, and the rib pitch-to-height ratio (P/e) is 10. The channel orientation with respect to the direction of rotation is 135°. The range of flow parameters includes Reynolds number (Re = 10000 - 40000), rotation number (Ro = 0.0 - 0.15), and inlet coolant-to-wall density ratio (Δρ/ρ - 0.12). Both heat transfer and pressure measurements were taken, so the overall performance of each rib configuration could be evaluated. It was determined that the W-shaped and discrete W-shaped ribs had the superior heat transfer performance in both non-rotating and rotating channels. However, these two configurations also incurred the greatest frictional losses while the discrete V-shaped and discrete angled ribs resulted in the lowest pressure drop. Based on the heat transfer enhancement and the pressure drop penalty, the discrete V-shaped ribs and the discrete W-shaped ribs exhibit the best overall thermal performance in both rotating and non-rotating channels. These configurations are followed closely by the W-shaped ribs. The angled rib configuration resulted in the worst performance of the six configurations of the present study.
机译:进行了一项实验研究,以测量长宽比为4:1的旋转肋状通道中的传热分布和摩擦损失。研究了成角度的,离散的成角度的,V形和离散的V形肋,以及新提出的W形和离散的W形肋。在所有情况下,肋条都放置在通道的前表面和后表面上,并且与主流流动方向成45°角。肋骨高度与液压直径之比(e / D)为0.078,肋骨螺距与高度之比(P / e)为10。相对于旋转方向的通道方向为135°。流量参数范围包括雷诺数(Re = 10000-40000),转数(Ro = 0.0-0.15)和入口冷却剂与壁的密度比(Δρ/ρ-0.12)。进行了传热和压力测量,因此可以评估每个肋结构的整体性能。可以确定,W形和离散的W形肋在非旋转和旋转通道中都具有优异的传热性能。但是,这两种配置也产生了最大的摩擦损失,而离散的V形和离散的成角度的肋骨则导致了最低的压降。基于传热的增强和压降损失,离散的V形肋和离散的W形肋在旋转和非旋转通道中均表现出最佳的整体热性能。这些配置后紧接着是W形肋。倾斜的肋骨配置导致本研究的六种配置中性能最差。

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