论文标题

深入了解前沿涡流形成和俯仰上的脱离

Insights into Leading Edge Vortex Formation and Detachment on a Pitching and Plunging Flat Plate

论文作者

Kissing, Johannes, Kriegseis, Jochen, Li, Zhenyao, Feng, Lihao, Hussong, Jeanette, Tropea, Cameron

论文摘要

本研究是将不同的流控制装置应用于俯仰和降低机翼的序幕,目的是控制前沿涡流(LEV)的生长;因此,在不稳定的失速条件下的升降机。作为先决条件,必须充分理解影响LEV拓扑发展的参数,这构成了本实验研究的主要动机。这项研究的目的是双重的。首先,引入了一种方法,以利用常见的基线案例来验证两个不同设施的流场和LEV特性之间的可比性。这种比较背后的动机是,有两个设施可以大大扩展整个参数范围。该比较包括对各个参数范围的概述,对机翼运动学的控制以及仔细审查速度数据的后处理程序如何通过时间分辨粒子图像速率(PIV)影响用于表征LEV开发表征LEV开发的积分特性和拓扑特性。其次,研究了辅助结构的出现及其对扩展参数范围内LEV脱离的影响。基于有限时间Lyapunov指数(FTLE)脊的拉格朗日流场分析允许精确识别二级结构,并揭示其出现与从LEV循环中计算出的涡旋雷诺数阈值密切相关。该阈值用于对二级结构的时间发作进行建模。进一步的分析表明,如果二级结构的出现导致LEV停止累积循环,如果平板的前缘处的剪切层角已停止增加。

The present study is a prelude to applying different flow control devices on pitching and plunging airfoils with the intention of controlling the growth of the leading edge vortex (LEV); hence, the lift under unsteady stall conditions. As a pre-requisite, the parameters influencing the development of the LEV topology must be fully understood, and this constitutes the main motivation of the present experimental investigation. The aims of this study are twofold. First, an approach is introduced to validate the comparability between flow fields and LEV characteristics of two different facilities using water and air as working media by making use of a common baseline case. The motivation behind this comparison is that with two facilities the overall parameter range can be greatly expanded. This comparison includes an overview of the respective parameter ranges, control of the airfoil kinematics and careful scrutiny of how post-processing procedures of velocity data from time-resolved particle image velocimetry (PIV) influence the integral properties and topological features used to characterise the LEV development. Second, and based on results coming from both facilities, the appearance of secondary structures and their effect on LEV detachment over an extended parameter range is studied. A Lagrangian flow field analysis, based on finite-time Lyapunov Exponent (FTLE) ridges, allows precise identification of secondary structures and reveals that their emergence is closely correlated to a vortex Reynolds number threshold computed from the LEV circulation. This threshold is used to model the temporal onset of secondary structures. Further analysis indicates that the emergence of secondary structures causes the LEV to stop accumulating circulation if the shear layer angle at the leading edge of the flat plate has ceased to increase.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源