Abstract
In experiments concerning the instability of free shear layers, oscillations have been observed in the downstream flow which have a frequency exactly half that of the dominant oscillation closer to the origin of the layer. The present analysis indicates that the phenomenon is due to a secondary instability associated with the nearly periodic flow which arises from the finite-amplitude growth of the fundamental disturbance.At first, however, the stability of inviscid shear flows, consisting of a non-zero mean component, together with a component periodic in the direction of flow and with time, is investigated fairly generally. It is found that the periodic component can serve as a means by which waves with twice the wavelength of the periodic component can be reinforced. The dependence of the growth rate of the subharmonic wave upon the amplitude of the periodic component is found for the case when the mean flow profile is of the hyperbolic-tangent type. In order that the subharmonic growth rate may exceed that of the most unstable disturbance associated with the mean flow, the amplitude of the streamwise component of the periodic flow is required to be about 12 % of the mean velocity difference across the shear layer. This represents order-of-magnitude agreement with experiment.Other possibilities of interaction between disturbances and the periodic flow are discussed, and the concluding section contains a discussion of the interactions on the basis of the energy equation.
Publisher
Cambridge University Press (CUP)
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics
Reference33 articles.
1. Betchov, R. & Criminale, W. O. 1966 Spatial instability of the inviscid jet and wake J. Phys. Fluids,9,359–362.
2. Wehrmann, O. & Wille, R. 1958 Beitrag zur Phänomenologie sep laminar-turbulenten Übergangs im Freistrahl bei kleinen Reynoldszahlen. Boundary Layer Research ( H. Görtler , ed., pp.387–404).Berlin:Springer-Verlag.
3. Stuart, J. T. 1962 Nonlinear effects in hydrodynamic stability. Proc. Xth Int. Congr. Appl. Mech., Stresa ,1960.Amsterdam:Elsevier.
4. Lessen, M. & Fox, J. A. 1955 The stability of boundary layer type flows with infinite boundary conditions. 50 Jahre Grenzschichtforschung (pp.122–126).Braunschweig:Friedr. Vieweg und Sohn.
5. Greenspan, H. P. & Benney, D. 1963 On shear-layer instability, breakdown and transition J. Fluid Mech. 15,133–153.
Cited by
194 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献