Investigation on asymmetric flow over a blunt-nose slender body at high angle of attack

被引:11
作者
Qi Zhongyang [1 ]
Wang Yankui [1 ]
Wang Lei [1 ]
Li Qian [1 ]
机构
[1] Beihang Univ, Minist Educ, Key Lab Fluid Mech, Beijing 100191, Peoples R China
基金
中国国家自然科学基金;
关键词
asymmetric vortex; blunt-slender body; perturbation; high angle of attack; VORTICES FLOW; ALLEVIATION; FLOWFIELD; CYLINDER; LOADS;
D O I
10.1088/1873-7005/aa9582
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The asymmetric vortices over a blunt-nose slender body are investigated experimentally and numerically at a high angle of attack (AoA, alpha = 50 degrees) and a Reynolds number of Re-D = 1.54 x 10(5) on the basis of an incoming free-stream velocity and diameter (D) of the model. A micro-perturbation in the form of a hemispherical protrusion with a radius of r = 0.012D is introduced and attached on the nose of the slender body to control the behavior of the asymmetric vortices. Given the predominant role of micro perturbation in the asymmetric vortex pattern, a square wave, which is singly periodic, is observed for side-force variation by setting the circumferential angle (theta) of the micro perturbation from 0 degrees to 360 degrees. The asymmetric vortex pattern and the corresponding side force are manageable and highly dependent on the location of perturbation. The flow structure over the blunt-nose slender body is clarified by building a physical model of asymmetric vortex flow structure in a regular state at a high AoA (alpha = 50 degrees). This model is divided into several regions by flow structure development along the model body-axis, i.e., inception region at x/D <= 3.0, triple-vortex region at 3.0 <= x/D <= 6.0, four-vortex region at 6.0 <= x/D <= 8.5, and five-vortex region at 8.5 <= x/D <= 12. The model reveals a complicated multi-vortex system. The associated pressure distributions and flow characteristics are discussed in detail.
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页数:18
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