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首页> 外文期刊>International Journal of Heat and Fluid Flow >Precessing vortex core in a swirling wake with heat release
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Precessing vortex core in a swirling wake with heat release

机译:旋涡状进动中的旋涡核心与热量释放

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摘要

Numerical simulation of the non-stationary three-dimensional swirling flow is presented for an open tube with a paraxial heat source. In the considered type of swirling flows, it is shown that a precessing vortex core (PVC) appears. The obtained PVC is a left-handed co-rotated bending single-vortex structure. The influence of the heat release enhancement on parameters of PVC is investigated. Using various turbulence models (the Spalart-Allmaras, k-omega and SST models), it is shown that an increase in the heat-source power leads to an increase in the PVC frequency and to a decrease in the amplitude of PVC oscillations. Moreover, we conduct the linear stability analysis of the simplified flow model with paraxial heating (the Rankine vortex with the piecewise axial flow and density) and demonstrate that its results correspond to the results of numerical simulations rather well. In particular, we prove that the left-handed bending mode (m = +1) is the most unstable one in the low-density wake and its frequency increases with a decrease of density ratio that is similar to the behavior of precession frequency with an increase of heat source power. (C) 2016 Elsevier Inc. All rights reserved.
机译:提出了具有近轴热源的开管非稳态三维旋流的数值模拟。在所考虑的旋流类型中,显示出出现了旋进旋涡芯(PVC)。所得的PVC为左旋同向弯曲单涡结构。研究了热释放增强对PVC参数的影响。使用各种湍流模型(Spalart-Allmaras,k-omega和SST模型),表明热源功率的增加会导致PVC频率的增加和PVC振荡幅度的减小。此外,我们对近轴加热简化流模型(具有分段轴向流和密度的兰金涡)进行了线性稳定性分析,并证明了其结果与数值模拟的结果相当吻合。特别是,我们证明了左弯弯曲模式(m = +1)是低密度尾流中最不稳定的弯曲模式,并且其频率随着密度比的减小而增加,这与进动频率的行为类似,即随着增加热源功率。 (C)2016 Elsevier Inc.保留所有权利。

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