Investigation of the Cross-beam Correlation Algorithm to Reconstruct Local Field Statistics from Line-of-sight Measurements in Turbulent Flows

被引:0
作者
Pankaj S. Kolhe
Ajay K. Agrawal
机构
[1] University of Alabama,Department of Mechanical Engineering
来源
Flow, Turbulence and Combustion | 2010年 / 84卷
关键词
Turbulence measurements; Deflectometry; Abel inversion; Tomography; Scalar measurements;
D O I
暂无
中图分类号
学科分类号
摘要
Optical techniques such as speckle photography and rainbow schlieren deflectometry yield path integrated measurements of deflection angle instead of the local field variable such as density, temperature and/or species concentration. Thus, a reconstruction algorithm is employed to obtain the local properties from the path-integrated measurements. Cross-beam correlation (CBC) algorithm provides the link between path-integrated and local field statistics in time-averaged axisymmetric turbulent flows. Path-integrated statistics are obtained using orthogonal light rays crossing within the turbulent flow. The algorithm assumes local isotropy and negligible correlation between points on orthogonal beams, which is valid strictly in fully turbulent flows. In this study, noise-free synthetic scalar turbulence data are generated and used to determine how different assumptions in the CBC algorithm affect the reconstruction accuracy. Results show that the reconstruction accuracy is excellent for a narrow correlation function (or small integral length scale), while significant errors are incurred in case of a wide correlation function. A procedure to improve the reconstruction accuracy of the CBC algorithm is proposed in this study.
引用
收藏
页码:617 / 638
页数:21
相关论文
共 55 条
[1]  
Mathew J(2000)Reacting, circular mixing layers in transition to turbulence Flow Turbul. Combust. 64 71-93
[2]  
Basu AJ(2000)Spatial direct numerical solution of the large vortical structures in forced plumes Flow Turbul. Combust. 64 43-69
[3]  
Jiang X(2001)Buoyancy-driven coherent structures in free round flame Flow Turbul. Combust. 67 325-353
[4]  
Luo KH(2007)Role of buoyancy on instabilities and structure of transitional gas jet diffusion flames Flow Turbul. Combust. 79 343-360
[5]  
Asendrych D(1967)The crossed-beam correlation technique J. Fluid Mech. 28 705-717
[6]  
Drobniak S(1970)Statistical properties of turbulent density fluctuations J. Fluid Mech. 43 291-303
[7]  
Kolhe PS(1984)Fluctuations of density, pressure and temperature in a turbulent mixing region Proc. R. Soc. Lond. Ser. A. 395 203-228
[8]  
Agrawal AK(1981)Crossed-beam correlation measurements and model predictions in a rocket exhaust plume Combust. Flame 43 51-67
[9]  
Fisher MJ(1975)Intensity, scale and convection of turbulent density fluctuations J. Fluid Mech. 70 463-479
[10]  
Krause FR(1989)Turbulent refractive index fluctuations in a hydrogen diffusion flame Combust. Sci. Technol. 64 51-65