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Parametric instability in a rotating cylinder of gas subject to sinusoidal axial compression. Part 1. Linear theory

机译:正弦轴向压缩的气体旋转气缸中的参数不稳定性。第1部分。线性理论

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摘要

An analysis is presented of parametric instability in a finite-length rotating cylinder subject to periodic axial compression by small sinusoidal oscillations of one of its ends (the 'piston'). The instability is due to resonant interactions between inertial-wave (Kelvin) modes of the cylinder and the oscillatory compression and is resisted by viscosity, acting both through thin boundary layers and throughout the volume, the two mechanisms proving crucial for a satisfactory description. Instability is found to take the form of either a single axisymmetric mode with frequency near to half that of compression, or a pair of non-axisymmetric modes of the same azimuthal and axial orders and oppositely signed frequencies, whose difference is close to the compression frequency. Thus, in the axisymmetric case, instability leads to spontaneous growth of a system of one or more oscillating toroidal vortices encircling the cylinder axis, while the differing frequencies of the two modes of non-axisymmetric instability implies an oscillatory aperiodic flow. The neutral curves giving the threshold for instability are determined for all modes/mode pairs. For a given mode or mode pair, the neutral curve shows a critical piston amplitude dependent on rotational Reynolds number and cylinder aspect ratio, below which instability does not occur, and above which there is instability provided the compression frequency is chosen to lie in a band centred on the exact resonance condition.
机译:分析了有限长旋转圆柱体中参数不稳定性的问题,该圆柱体由于其一端(“活塞”)的微小正弦振动而受到周期性轴向压缩。这种不稳定性是由于气缸的惯性波(Kelvin)模式与振荡压缩之间的共振相互作用所致,并且受到黏性的抵制,黏性既通过薄边界层起作用,也通过整个体积起作用,这两种机制被证明对令人满意的描述至关重要。发现不稳定性采取频率接近压缩频率一半的单一轴对称模式,或者是具有相同方位角和轴向阶次且符号相反的频率的一对非轴对称模式,其差值接近压缩频率。 。因此,在轴对称情况下,不稳定性导致围绕圆柱轴的一个或多个振荡环形涡旋系统的自发增长,而两种非轴对称不稳定模式的不同频率暗示了振荡的非周期性流动。为所有模式/模式对确定给出不稳定性阈值的中性曲线。对于给定的模式或模式对,中性曲线显示取决于旋转雷诺数和汽缸纵横比的临界活塞振幅,在该临界活塞振幅以下不会发生不稳定性,而在此之上则存在不稳定,只要选择将压缩频率置于一个频带内即可。以确切的共振条件为中心。

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