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Oil mist transport process in a long pipeline on turbulent flow transition region

机译:湍流过渡区长管中油雾的输送过程

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Internal gas velocity fluctuations and their effects on the mist diffusion process were examined in a long horizontal pipe to understand oil mist transportation, particularly in the laminar-to-turbulent flow transition region. Three hot-wire anemometers and aerosol concentration monitors were used to deduce these effects as the two-phase mist flow gradually developed in the stream-wise direction. We found significant axial mist diffusion at Reynolds numbers (Re) < 1000 because of passive scalar transport by Poiseuille flow. However, this diffusion was restricted by the non-zero inertia of the mist at a Stokes number, 0(10(-5)), relying on the Brownian motion of the mist. At Re > 2400, a sharp mist waveform was maintained by a turbulent flow with active radial mixing. New data were obtained within the range of 1000 < Re < 2400, which cannot be explained by interpolation between the above-mentioned two states. The mist concentration displays multiple temporal peaks at Re < 2000 owing to perturbations of localized turbulence as well as radial anisotropy as being conveyed more than 2000-diameters in distance. This behavior is caused by intermittent disturbances induced by the pipe wall roughness, which sharply distorts the wall-aligned laminar mist layer left by parabolic axial stretching of local laminar flow. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在较长的水平管道中检查了内部气体速度波动及其对雾扩散过程的影响,以了解油雾的传输,尤其是在层流到湍流过渡区域。随着两相雾流沿水流方向逐渐发展,使用了三个热线风速计和气溶胶浓度监测仪来推断这些影响。我们发现由于雷神流通过被动标量传输,在雷诺数(Re)<1000时,轴向薄雾有明显的扩散。但是,这种扩散受雾的布朗运动影响,在斯托克斯数为0(10(-5))的情况下受雾的非零惯性限制。在Re> 2400时,在有效径向混合的作用下,湍流保持了清晰的雾状波形。在1000

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