首页> 外文会议>AIAA aerospace sciences meeting;AIAA SciTech forum >Direct Numerical Simulation of Mach 6 Flow over a Cone with a Highly Swept Fin
【24h】

Direct Numerical Simulation of Mach 6 Flow over a Cone with a Highly Swept Fin

机译:具有高扫掠鳍的锥面Mach 6流动的直接数值模拟

获取原文

摘要

A swept fin on a slender cone is a canonical geometry relevant to high speed aeronautics. Predicting growth of instahilities and the onset of transition to turbulence on the swept fin/cone flow requires understanding and characterizing the primary flow features of the undisturbed steady state. The fin/cone geometry is topologically complex and involves challenging grid construction and numerical methodology for an accurate flow simulation. In the present study, we compute low-dissipation steady state flow on a blunt (1 mm nose radius), 7° half angle cone with a fin at a sweep angle of 70° in Mach 6 flow with a unit Reynolds number of 9.68 x 10~6 m~(-1). While flow separation is minimal due to the highly swept nature of the fin, two steady state primary vortex systems are found to exist: the horse-shoe vortex system on the cone, and the leading edge vortex system on the fin. Multiple streamwise vortices develop in both vortex systems owing to the presence of strong crossflow, both on the fin and the cone. The primary streamwise vortices originate near the fin leading edge junction and require high grid and numerical resolution for accurate spatial evolution. Presence of strong streamwise and cross-stream gradients and streamwise vorticity make the flow susceptible to complex instability mechanisms. This work serves to inform future investigations of flow breakdown on the fin/cone geometry in the presence of disturbances at Mach 6 freestream conditions.
机译:细长圆锥体上的后掠鳍是与高速航空相关的规范几何。预测不稳定性的增长以及掠过的鳍/锥流的湍流过渡将需要理解并表征未扰动稳态的主要流动特征。翅片/锥体的几何形状拓扑复杂,涉及具有挑战性的网格构造和数值方法,无法进行精确的流动模拟。在本研究中,我们在Mach 6流中计算钝角(鼻子半径1 mm),钝角为7°的半角锥和70°扫掠鳍的低耗散稳态流,单位雷诺数为9.68 x 10〜6 m〜(-1)。尽管由于鳍片的高度扫掠特性而使流动分离最小,但是发现存在两个稳态的初级涡旋系统:圆锥体上的马蹄形涡流系统和鳍片上的前缘涡旋系统。由于在翅片和锥体上都存在强横流,因此在两个涡流系统中都会形成多个沿流的涡流。主要的沿流涡流起源于鳍的前缘结附近,并且需要较高的网格和数值分辨率才能实现精确的空间演化。强烈的水流和横流梯度的存在以及水流的涡流使水流容易受到复杂的不稳定机制的影响。这项工作可为将来在马赫数为6的自由流条件下存在扰动的情况下对翅片/锥面几何形状的流体击穿提供参考。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号