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ON THE SPATIAL EVOLUTION OF CENTRIFUGAL INSTABILITIES WITHIN CURVED INCOMPRESSIBLE MIXING LAYERS

机译:不可压缩混合层内离心失稳的空间演化

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It is known that certain configurations which possess curvature are prone to a class of instabilities which their 'flat' counterparts will not support. The main thrust of the study of these centrifugal instabilities has concentrated on curved solid boundaries and their effect on the fluid motion. In this article attention is shifted towards a fluid-fluid interface observed within a curved incompressible mixing layer. Experimental evidence is available to support the conjecture that this situation may be subject to centrifugal instabilities. The evolution of modes with wavelengths comparable with the layer's thickness is considered within moderately curved mixing layers. The high Taylor/Gortler number regime is also discussed which characterizes the ultimate fate of the modes. [References: 24]
机译:众所周知,某些具有曲率的构型易于产生其“平坦”对应物将不支持的一类不稳定性。这些离心不稳定性研究的主要推力集中在弯曲的固体边界及其对流体运动的影响上。在本文中,注意力转向了在弯曲的不可压缩混合层中观察到的流体界面。实验证据可用于支持这种情况可能受离心不稳定影响的推测。在适度弯曲的混合层中考虑了波长与层厚度可比的模的演化。还讨论了高泰勒/戈特勒数体系,它表征了模式的最终命运。 [参考:24]

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