流态变化过程中简化车辆尾流模型的可视化

T. Nakashima, T. Moriuchi, Yan Chao, I. Kohri
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引用次数: 1

摘要

围绕三维钝体(如汽车)的流动有时表现为双稳定状态,其中在单一条件下存在两种稳定流动状态。抑制或促进这种双稳态之间的流动状态变化,可以获得较好的气动特性。因此,有必要了解流态变化的触发条件和过程。在本研究中,我们研究了Ahmed模型在侧风条件下的瞬态空气动力学,该模型的倾斜角为32°,超过了临界角30°。通过旋转模型改变偏航角,产生流动状态的变化,并伴有时间延迟。在连续测量流体力的同时,我们进行了PIV测量,该测量是由流动状态变化所对应的流体动力的突然变化所触发的。利用这些方法,实现了流态变化过程中流体力和尾流的同步测量。在流动状态改变开始时,沿斜面后缘的流动速度发生变化。随后,斜面上方的分离流增加。在PIV测量的速度场中,没有观察到与阻力变化相关的流动行为,但在流动状态改变之前,阻力系数逐渐减小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wake Flow Visualization of a Simplified Vehicle Model During Flow State Change
A flow around a three-dimensional bluff body such as an automobile sometimes exhibits a bi-stable state wherein two stable flow states exist for a single condition. Better aerodynamic characteristics can be obtained if we suppress or promote the flow state change between such bi-stable states. Hence, it is necessary to understand the trigger conditions and process of the flow state change. In this study, we investigated the transient aerodynamics of the Ahmed model with the slant angle of 32°, exceeding the critical angle of 30°, known to exhibit bi-stable state under crosswind conditions. Changing the Yaw angle by rotating the model, produced change in the flow state, accompanied by time delay. While continuously measuring fluid force, we performed PIV measurement triggered by a sudden change in fluid dynamic force corresponding to the flow state change. Using these methods, we realized the synchronous measurement of the fluid force and wake flow during the flow state change. At the beginning of the flow state change, flow velocity changed around the trailing edge of the slant surface. Subsequently, the separated flow above the slant surface increased. A gradual decrease of drag coefficient was observed before the flow state change though flow behavior associated with the drag change was not observed in the velocity field of PIV measurement.
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