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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Visualization of Surface Flow on a Prolate Spheroid Model Suspended by Magnetic Suspension and Balance System
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Visualization of Surface Flow on a Prolate Spheroid Model Suspended by Magnetic Suspension and Balance System

机译:APS-流体动力学APS部门第70届年会-事件-磁悬浮和平衡系统悬浮的扁平球状模型上的表面流可视化

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摘要

In this study, the surface flow on a 6:1 prolate spheroid model was visualized by oil flow method in the magnetic suspension and balance system (MSBS). The MSBS is a support-free system for wind-tunnel test in that a model is levitated by magnetic force. In this experiment, the 0.3-m MSBS was installed in the low-speed wind tunnel. The Reynolds number was 0.5 million and the angle of attack was set 0 and 5 degrees. In addition to free-levitation tests, a thin rod simulating disturbance of a support system was placed on the model surface and the influence of support interference was evaluated. The obtained results indicate that complicated separation patterns are present even at zero angle of attack. At $alpha quad =$ 5extdegree , separation pattern becomes more complicated than that at $alpha quad =$ 0extdegree and the streamlines form a highly three-dimensional structure. A characteristic pattern of open separation is observed and a focal point is formed at the end of the separation line. In evaluation of the support interference, the separation is delayed in the downstream of the rod, suggesting that the change of separation pattern is caused by the transition of laminar boundary layer behind the rod. These results indicate that one must take particular care to the support interference in studying three-dimensional separation on a prolate spheroid.
机译:在这项研究中,通过油悬浮法在磁悬浮和平衡系统(MSBS)中将6:1扁长球体模型上的表面流动可视化。 MSBS是用于风洞测试的无支撑系统,因为模型会受到磁力的影响。在此实验中,将0.3米的MSBS安装在低速风洞中。雷诺数为50万,迎角设置为0度和5度。除了自由悬浮试验外,还将一个模拟支撑系统扰动的细杆放置在模型表面上,并评估了支撑干扰的影响。所得结果表明即使在零迎角下也存在复杂的分离模式。在$ alpha quad = $ 5extdegree时,分离模式比在$ alpha quad = $ 0extdegree时更复杂,并且流线形成高度三维结构。观察到开放分离的特征图案,并且在分离线的末端形成焦点。在评估支撑干涉时,分离在杆的下游延迟,这表明分离模式的变化是由杆后面的层状边界层的过渡引起的。这些结果表明,在研究扁球体上的三维分离时,必须特别注意支撑干扰。

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