...
首页> 外文期刊>International Journal of Multiphase Flow >Linear instability of two-way coupled particle-laden jet
【24h】

Linear instability of two-way coupled particle-laden jet

机译:双向耦合颗粒粒子射流的线性不稳定性

获取原文
获取原文并翻译 | 示例

摘要

The two-way coupled particle-laden jet is studied numerically in order to understand how the addition of solid particles affects the stability of the jet. In contrast with the particle-laden mixing layer studied, the jet flow stability is complicated by a variable wave (or phase) velocity and an additional curvature parameter, i.e., the ratio of jet radius to shear layer thickness. Nevertheless, we have demonstrated that the following similar scenario holds for a particle-laden jet: the addition of particles can destabilize the flow at small particle Stokes number, while the stabilizing effect prevails for intermediate to large Stokes numbers. Both these competing effects scale approximately linearly with the particle mass loading. We also found that the addition of particles increases the wave velocity at high wave numbers but decreases the wave velocity at low wave numbers. The fact that the addition 6f particles can destabilize the gas flow in the absence of gravity has been shown to follow the previous speculation. Two general asymptotic relations proposed by Saffman have been confirmed numerically for the case of the particle4aden jet. Physically, the increase of effective inertia of the fluid-particle mixture causes a destabilization effect while the enhanced viscous dissipation around the particles gives a stabilization effect. Results for various mass loadings, Stokes numbers, and wave numbers show that for a given mass loading and wave number, there is an intermediate Stokes number that corresponds to a maximum flow stability. We have shown that this Stokes number is on the order of 1 and depends weakly on the wave number.
机译:为了研究固体颗粒的添加如何影响射流的稳定性,对双向耦合的载有颗粒的射流进行了数值研究。与所研究的掺有颗粒的混合层相反,喷射流的稳定性由于可变的波(或相)速度和附加的曲率参数(即喷射半径与剪切层厚度之比)而变得复杂。然而,我们已经证明,对于载有颗粒的射流,以下类似情况也适用:添加颗粒会在小颗粒斯托克斯数下使流量不稳定,而稳定作用在中等到较大斯托克斯数下占主导。这两种竞争效应都与颗粒质量负荷大致成线性比例关系。我们还发现,粒子的添加在高​​波数下会增加波速,但在低波数下会降低波速。在没有重力的情况下,添加的6f颗粒会破坏气流的事实已被证明遵循先前的推测。 Saffman提出的两个一般渐近关系已经在数值上证实了4aden射流的情况。在物理上,流体-颗粒混合物的有效惯性的增加引起去稳定作用,而在颗粒周围增强的粘性耗散则产生稳定作用。各种质量载荷,斯托克斯数和波数的结果表明,对于给定的质量载荷和波数,存在一个中间斯托克斯数,该斯托克斯数对应于最大流量稳定性。我们已经表明,此斯托克斯数约为1,并且与波数的相关性很小。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号