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首页> 外文期刊>Journal of Fluid Mechanics >Axial mixing and vortex stability to in situ radial injection in Taylor-Couette laminar and turbulent flows
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Axial mixing and vortex stability to in situ radial injection in Taylor-Couette laminar and turbulent flows

机译:在泰勒 - 圆锥层和湍流中,轴向混合和涡旋稳定性径向注射

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摘要

Taylor-Couette flows have been widely studied in part due to the enhanced mixing performance from the variety of hydrodynamic flow states accessible. These process improvements have been demonstrated despite the traditionally limited injection mechanisms from the complexity of the Taylor-Couette geometry. In this study, using a newly designed, modified Taylor-Couette cell, axial mass transport behaviour is experimentally determined over two orders of magnitude of Reynolds number. Four different flow states, including laminar and turbulent Taylor vortex flows and laminar and turbulent wavy vortex flows, were studied. Using flow visualization techniques, the measured dispersion coefficient was found to increase with increasing Re, and a single, unified regression is found for all vortices studied. In addition to mass transport, the vortex structures' stability to radial injection is also quantified. A dimensionless stability criterion, the ratio of injection to diffusion time scales, was found to capture the conditions under which vortex structures are stable to injection. Using the stability criterion, global and transitional stability regions are identified as a function of Reynolds number, Re.
机译:由于来自各种流体动力流动状态可接近的流体动力流动状态的增强性能,泰勒 - 汤流量已被广泛研究。尽管传统的注射机制来自泰勒 - 汤几何形状的复杂性,但已经证明了这些过程改进。在本研究中,使用新设计的改进的泰勒 - 汤电池,轴向大众传输行为在实验上确定了雷诺数的两个数量级。研究了四种不同的流动状态,包括层流和湍流泰勒涡流流动和层流和湍流波浪涡流流动。使用流量可视化技术,发现测量的分散系数随着Re的增加而增加,并且发现了所有研究的所有涡流的单一统一回归。除了大规模运输之外,还量化了涡流结构对径向注射的稳定性。发现无量纲稳定性标准,注射与扩散时间尺度的比率,以捕获涡流结构稳定的条件。使用稳定性标准,全局和过渡稳定性区域被识别为Reynolds号码的函数Re。

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