LOCAL INSTABILITY CHARACTERISTICS AND FREQUENCY DETERMINATION OF SELF-EXCITED WAKE FLOWS

被引:185
作者
KOCH, W
机构
[1] DFVLR/AVA, Inst fuer Theoretische, Stroemungsmechanik, Goettingen, West, Ger, DFVLR/AVA, Inst fuer Theoretische Stroemungsmechanik, Goettingen, West Ger
关键词
FLUID MECHANICS - Mathematical Models;
D O I
10.1016/0022-460X(85)90445-6
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
As suggested by the strong effect resonances and feedback mechanisms can exert upon vortices shed from blunt bodies, it is proposed that the discrete frequency, self-excited vortex shedding process itself is governed by a resonance-like mechanism. With the assumption that to a first approximation the shedding frequency is determined by the behavior in the linear regime, the resonance hypothesis is found to lead to a bifurcation condition (direct resonance condition) of the local instability eigenvalue. In a corresponding initial value formulation the same condition separates a subcritical region of locally absolute instability from a supercritical region of locally convective instability. The critical basic wake profile corresponding to the bifurcation condition is found to be near the end of the potential core. For asymmetrical steady wakes a limiting asymmetry seems to exist beyond which no time-harmonic resonance could be determined.
引用
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页码:53 / 83
页数:31
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