首页> 外文期刊>International Journal of Heat and Fluid Flow >Secondary flow in a laminar boundary layer developing over convergent-divergent riblets
【24h】

Secondary flow in a laminar boundary layer developing over convergent-divergent riblets

机译:层层边界层中的二次流动在收敛 - 发散的Riblets上发展

获取原文
获取原文并翻译 | 示例
       

摘要

Convergent-divergent (C-D) riblets are a type of bio-inspired surface pattern. They are known to induce secondary flow in a boundary layer that may point to their potential for surface friction drag reduction and flow separation control. In this paper, a systematic investigation of the effect of riblet height, wavelength and yaw angle on the secondary flow in a flat-plate laminar boundary layer developing over a C-D riblet section is undertaken. The large-scale secondary flow in the cross-stream plane belongs to Prandtl's first kind, and is induced by the spanwise velocity generated by the yawed riblet passages. The exact structure of this secondary flow depends on the relative size of riblet height and wavelength to the local boundary layer thickness, and three different patterns are observed within the range of parameters examined. As the wavelength increases, the strength of the secondary flow increases firstly and then levels off at large wavelengths, whereas the average strength per unit area exhibits a peak around a ratio between wavelength and local boundary layer thickness of 1. As the yaw angle increases from 20 degrees to 70 degrees, the strength of the secondary flow exhibits a parabolic trend and achieves a maximum around a yaw angle of 45 degrees. The findings from this work can be used to inform the choice of riblet geometry for maximizing the strength of the secondary flow in a given boundary layer flow.
机译:收敛分歧(C-D)Riblet是一种生物启发表面图案。已知它们在可以指向其表面摩擦减阻和流量分离控制的潜力的边界层中引起二次流动。在本文中,进行了对在C-D Riblet截面上显影的平板层边界层中的次流中的Riblet高度,波长和横摆角对二次流动的效果的系统研究。交叉平面中的大型次级流量属于Prandtl的第一种,并且由由Rawed Riblet Passages产生的翼展速度引起。该二次流程的确切结构取决于Riblet高度的相对尺寸和波长到局部边界层厚度,并且在检查的参数范围内观察到三种不同的图案。随着波长的增加,二次流动的强度首先增加,然后在大波长下截止,而每单位面积的平均强度在波长和局部边界层厚度为1.随着偏航角度增加20度至70度,二次流动的强度表现出抛物线趋势,并且围绕45度的横摆角达到最大值。该工作的发现可用于通知Riblet几何形状,以便最大化给定边界层流中的二次流量的强度。

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