横向微槽加工缺陷对边界层失稳控制效果的研究

Yong Liu, Qi Long-Guo, Guo Hua-Tu, Qiang Yang, Xian Xu-Yuan, Bing Bing-Wan
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摘要

从抑制高超声速边界层二阶模态扰动的角度研究了横向矩形微沟槽的局部加工缺陷。采用直接数值模拟(DNS)方法,对边界层基流施加二次模态扰动,研究了局部变形微槽对边界层稳定性的影响。结果表明:变形微槽表面产生压缩波和膨胀波;变形微槽的后边缘可能出现微尺度的分离气泡。结果表明,微槽的局部变形比相应的规则变形更有效地抑制了二次模态波。随着变形高度的增加,抑制效果越来越明显。与常规矩形微沟槽相比,局部变形微沟槽对二阶模态扰动的幅度抑制率可达19.6%。
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Investigation of machining flaw of transverse micro-grooves on the control effect of boundary layer instability
Local machining flaw of transverse rectangular micro-grooves is investigated from the viewpoint of suppressing the second mode disturbances of a hypersonic boundary layer. The effect of local deformed micro-grooves on boundary layer stability was studied by the direct numerical simulation (DNS) where the second mode disturbances are imposed to the base flow of the boundary layer. The results showed that compression waves and expansion waves were generated on the surface of the deformed micro-groove. Micro-scale separation bubbles may appear at the rear edge of the deformed micro-grooves. The results show that the local deformation of micro-grooves is more effective in suppressing the second mode waves than the corresponding regular one. With the increase of the deformation height, the suppressing effect becomes great. Compared with the regular rectangular micro-grooves, the amplitude inhibition rate of the local deformation micro-grooves to the second mode disturbance can reach 19.6%.
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