两相流中大小压缩脉冲的发展

Pub Date : 2024-01-23 DOI:10.21136/AM.2024.0107-23
Nishi Deepa Palo, Jasobanta Jena, Meera Chadha
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引用次数: 0

摘要

在方位角速度可变的气体和尘埃粒子两相流中,研究了小型和大型压缩脉冲的演变。使用相对不扭曲波的方法研究了旋转轴对称含尘气体中不同类型的机械脉冲。研究结果与非旋转介质的结果进行了比较。使用渐近展开程序讨论了几何声学的非线性理论。研究了固体颗粒和介质旋转效应对变形的影响。在旋转流中可以观察到,随着旋转参数值的增加,脉冲的陡度也会增加。旋转流中尘埃的存在延迟了冲击的形成,从而增加了冲击首先形成的距离。旋转参数和尘埃参数对冲击强度的影响是相同的。
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Development of small and large compressive pulses in two-phase flow

The evolutions of small and large compressive pulses are studied in a two-phase flow of gas and dust particles with a variable azimuthal velocity. The method of relatively undistorted waves is used to study the mechanical pulses of different types in a rotational, axisymmetric dusty gas. The results obtained are compared with that of nonrotating medium. Asymptotic expansion procedure is used to discuss the nonlinear theory of geometrical acoustics. The influence of the solid particles and the rotational effect of the medium on the distortion are investigated. In a rotational flow it is observed that with the increase in the value of rotational parameter, the steepening of the pulses also increases. The presence of dust in the rotational flow delays the onset of shock formation thereby increasing the distance where the shock is formed first. The rotational and the dust parameters are observed to have the same effect on the shock strength.

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