论文标题

在双射流的首选拍打运动上

On the preferred flapping motion of round twin jets

论文作者

Rodriguez, Daniel, Stavropoulos, Michael N., Nogueira, Petronio A. S., Edgington-Mitchell, Daniel, Jordan, Peter

论文摘要

线性稳定理论(LST)通常用于模拟湍流混合区域中的大规模流量结构和高速射流的近压力场。对于完美扩展的单个圆形喷气机,这些模型可预测$ m = 0 $和$ m = 1 $ helical模式的较低频率范围,这与经验数据一致。当将LST应用于双喷射系统时,遵循对称平面的压力场的奇数/偶数行为出现了四个溶液系列。两个喷气机的不稳定压力场之间的相互作用也导致它们的耦合。不同溶液家族的各个模式不再对应于螺旋运动,而是对射流羽流的振荡。在大型喷气间隔的极限中,当喷气耦合消失时,对应于每个家族的$ m = 1 $模式的特征值是相同的,并且它们的线性组合恢复了螺旋运动。相反,随着射流分离的减小,每个家族的$ M = 1 $模式的特征值偏爱特定的拍打振荡而不是其他振荡并防止螺旋运动的出现。给定喷气机数$ m_j $和温度比$ t_r $的主要振荡模式取决于Strouhal数字$ ST $和JET SPAINATION $ S $。独立地增加了$ m_j $和$ t_r $,以增强喷气联轴器并修改首选振荡模式的$(st,s)$地图。当前的结果预测了当射流相互作用相关的两种模式的偏好,即在喷嘴平面上的静脉曲张,尤其是弯曲的拍打振荡。

Linear stability theory (LST) is often used to model the large-scale flow structures in the turbulent mixing region and near pressure field of high-speed jets. For perfectly-expanded single round jets, these models predict the dominance of $m=0$ and $m = 1$ helical modes for the lower frequency range, in agreement with empirical data. When LST is applied to twin-jet systems, four solution families appear following the odd/even behaviour of the pressure field about the symmetry planes. The interaction between the unsteady pressure fields of the two jets also results in their coupling. The individual modes of the different solution families no longer correspond to helical motions, but to flapping oscillations of the jet plumes. In the limit of large jet separations, when the jet coupling vanishes, the eigenvalues corresponding to the $m=1$ mode in each family are identical, and a linear combination of them recovers the helical motion. Conversely, as the jet separation decreases, the eigenvalues for the $m=1$ modes of each family diverge, thus favouring a particular flapping oscillation over the others and preventing the appearance of helical motions. The dominant mode of oscillation for a given jet Mach number $M_j$ and temperature ratio $T_R$ depends on the Strouhal number $St$ and jet separation $s$. Increasing both $M_j$ and $T_R$ independently is found to augment the jet coupling and modify the $(St,s)$ map of the preferred oscillation mode. Present results predict the preference of two modes when the jet interaction is relevant, namely varicose and especially sinuous flapping oscillations on the nozzles plane.

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