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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >The linear stability of oscillatory poiseuille flow in channels and pipes
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The linear stability of oscillatory poiseuille flow in channels and pipes

机译:通道和管道中的振荡泊流的线性稳定性

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摘要

The linear stability of confined, periodic, parallel fluid flows is examined. The flow fields considered consist of a steady pressure gradient-driven velocity field combined with a purely oscillatory component generated by either an oscillatory pressure gradient or by harmonically oscillating bounding surfaces. Plane channel and circular pipe geometries are studied and all possible combinations of the steady and oscillatory flow components investigated. Neutral stability curves and critical conditions for instability are computed for a selection of steady-unsteady velocity ratios, channel half-widths and pipe radii. The results obtained confirm previous investigations into the effects of small amounts of periodic modulation on the linear stability of the underlying steady flow, but provide much more comprehensive information on the linear stability regions of unsteady parallel flows in channels and pipes.
机译:检查受限,周期性,平行流体流动的线性稳定性。所考虑的流场由稳态压力梯度驱动的速度场与纯振荡分量组成,该纯振荡分量是由振荡压力梯度或谐波振荡边界表面生成的。研究了平面通道和圆形管道的几何形状,并研究了稳态和振荡流动分量的所有可能组合。计算中性稳定性曲线和不稳定的临界条件,以选择稳态-非稳态速比,通道半宽度和管道半径。获得的结果证实了先前对少量周期性调制对基础稳定流的线性稳定性的影响的研究,但是提供了有关通道和管道中非稳定平行流的线性稳定区域的更全面的信息。

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