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首页> 外文期刊>Journal of Fluid Mechanics >Hysteresis and turbulent vortex breakdown in transitional swirling jets
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Hysteresis and turbulent vortex breakdown in transitional swirling jets

机译:过渡式旋转喷气机的滞后和湍流涡流故障

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摘要

Vortex breakdown (VB) in unconfined swirling jets occurs as either a bubble form of vortex breakdown (BVB) or a conical form of vortex breakdown (CVB). This computational study examines flow features of these forms for a Reynolds number at which VB is accompanied by a transition to turbulence (Re = 1000, based on inflow jet radius and centreline velocity). Large eddy simulations were performed with the inflow condition as the Maxworthy profile which models a laminar, axisymmetric swirling jet, and the effect of varying inflow swirl strength was investigated. BVB was observed at lower swirl strengths than those at which CVB occurs. With increasing swirl, the regular and wide-open types of CVB occur. Spiral coherent structures that develop in the flow were examined using spectral proper orthogonal decomposition. Further, by means of hysteresis studies, it is established that the turbulent BVB and regular CVB are bistable forms. Similarly, it is shown that the two types of CVB are also bistable. The difference in recirculation zone (RZ) sizes between the turbulent BVB and regular CVB is greatly reduced when compared to the laminar counterparts. This is postulated as a reason for misidentification of CVB (RZ approximately conical in shape) as BVB (spheroidal RZ) in some previous studies. The present study highlights the distinct features of turbulent BVB and CVB, which can potentially be used towards improving designs of swirl-stabilized combustors.
机译:无侧限旋转射流中的涡破裂(VB)以气泡形式的涡破裂(BVB)或锥形形式的涡破裂(CVB)发生。本计算研究考察了雷诺数下这些形式的流动特征,在此雷诺数下,VB伴随着向湍流的过渡(Re=1000,基于流入射流半径和中心线速度)。以流入条件为Maxworthy剖面,模拟了层流轴对称旋转射流,进行了大涡模拟,并研究了不同流入涡流强度的影响。与CVB发生时相比,在较低的涡流强度下观察到BVB。随着涡流的增加,CVB会出现规则的大开口类型。利用谱本征正交分解研究了流动中形成的螺旋相干结构。此外,通过滞回研究,确定湍流BVB和规则CVB是双稳态形式。同样,这两种类型的CVB也是双稳态的。与层流相比,湍流BVB和常规CVB之间的再循环区(RZ)尺寸差异大大减小。在之前的一些研究中,这被认为是将CVB(RZ形状近似圆锥形)错误识别为BVB(球状RZ)的一个原因。本研究突出了湍流BVB和CVB的显著特征,这可能用于改进旋流稳定燃烧室的设计。

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