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Turbulent near wake of an Ahmed vehicle model

机译:Ahmed车辆模型的近湍流

摘要

The lasting high fuel cost has recently inspired resurgence in drag reduction research for vehicles, which calls for a thorough understanding of the vehicle wake. The simplified Ahmed vehicle model is characterized by controllable flow separation, thus especially suitable for this purpose. In spite of a considerable number of previous investigations, our knowledge of flow around this model remains incomplete. This work aims to revisit turbulent flow structure behind this model. Two rear slant angles, i.e., α = 25° and 35°, of the model were examined, representing two distinct flow regimes. The Reynolds number was 5.26 × 104 based on the model height (H) and incident flow velocity. Using particle image velocimetry (PIV), flow was measured with and without a gap (g/H = 0.174) between the vehicle underside and ground in three orthogonal planes, viz. the x-z, x-y and y-z planes, where x, y, and z are the coordinates along longitudinal, transverse, and spanwise directions, respectively. The flow at g/H = 0 serves as an important reference for the understanding of the highly complicated vehicle wake (g/H ≠ 0). While reconfirming the well-documented major characteristics of the mean flow structure, both instantaneous and time-averaged PIV data unveil a number of important features of the flow structure, which have not been previously reported. As such, considerably modified flow structure models are proposed for both regimes. The time-averaged velocities, second moments of fluctuating velocities, and vorticity components are presented and discussed, along with their dependence on g/H in the two distinct flow regimes.
机译:持续的高燃油成本最近激发了汽车减阻研究的复兴,这要求对汽车尾流进行彻底的了解。简化的艾哈迈德(Ahmed)车辆模型的特点是可控的流量分离,因此特别适合此目的。尽管先前进行了大量的研究,但我们对这种模型的流动性的知识仍然不完整。这项工作旨在重新探讨该模型背后的湍流结构。检查了模型的两个后倾斜角,即α= 25°和35°,代表了两种不同的流动状态。基于模型高度(H)和入射流速,雷诺数为5.26×104。使用粒子图像测速(PIV),在三个正交平面中,车辆底侧和地面之间有无间隙(g / H = 0.174)的情况下测量流量。 x-z,x-y和y-z平面,其中x,y和z分别是沿纵向,横向和展向的坐标。 g / H = 0时的流量为理解高度复杂的车辆尾流(g / H≠0)提供了重要参考。在再次确认平均流量结构的充分记录的主要特征的同时,瞬时和时间平均的PIV数据都揭示了流量结构的许多重要特征,这些以前没有报道过。因此,针对这两种方案提出了相当大的修改后的流动结构模型。给出并讨论了时均速度,速度的第二阶矩和涡度分量,以及它们在两种不同流动状态下对g / H的依赖性。

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