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Absolute and convective instabilities of heated coaxial jet flow

机译:加热的同轴射流的绝对和对流不稳定性

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This study investigates the inviscid, linear spatio-temporal stability of heated, compressible, and incompressible coaxial jet flows. The influence of the temperature ratio and the velocity ratio between the core jet and the bypass stream on the transition from convectively to absolutely unstable flows is studied numerically. The investigation shows that for coaxial jets, absolute instability can occur for considerably lower core-stream temperatures than for single jets. The reason for this modified stability character is the appearance of an additional unstable mode as a result of the outer velocity shear layer between the bypass stream and the ambient flow. The presence of two shear layers enables the interaction between otherwise free waves to give rise to new instabilities. When the bypass-stream velocity is increased, the classical absolute mode known from single jets (inner mode) is first stabilized and then destabilized for high bypass-stream velocities, whereas the outer mode reaches maximum spatio-temporal growth rates when the core-stream velocity is approximately equal to twice the bypass-stream velocity. Additionally, it is demonstrated that the spatio-temporal character of the modes is very sensitive to the shear-layer thickness and to the distance separating the two layers. Increasing the Mach number strongly dampens the onset of an absolute instability for both modes. (C) 2015 AIP Publishing LLC.
机译:本研究调查了加热的,可压缩的和不可压缩的同轴射流的无粘性线性时空稳定性。数值研究了温度比和堆芯射流与旁路流之间的速度比对从对流到绝对不稳定流动的影响。研究表明,对于同轴射流,与单射流相比,如果芯流温度低得多,则可能发生绝对不稳定。修改后的稳定性特征的原因是由于旁路流和环境流之间的外部速度剪切层而导致出现了另一个不稳定模式。两个剪切层的存在使原本自由的波之间的相互作用引起新的不稳定性。当旁路流速度增加时,对于高旁路流速度,首先稳定然后从单流已知的经典绝对模式(内部模式)稳定,而在核心流时外部模式达到最大时空增长率速度大约等于旁路流速度的两倍。另外,证明了模态的时空特性对剪切层厚度和分隔两层的距离非常敏感。马赫数的增加极大地抑制了两种模式的绝对不稳定性。 (C)2015 AIP Publishing LLC。

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