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首页> 外文期刊>Journal of engineering thermophysics >Wall Shear Stress and Heat Transfer of Downward Bubbly Flow at Low Flow Rates of Liquid and Gas
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Wall Shear Stress and Heat Transfer of Downward Bubbly Flow at Low Flow Rates of Liquid and Gas

机译:液体剪切应力和向下的液体和气体流量下的向下流动的传热

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摘要

The effect of suppression of turbulence in a downward bubbly flow and its impact on the wall shear stress and heat transfer are discussed. Measurements were carried out for Reynolds numbers Re = 5000-10000, which were calculated from the velocity of the liquid phase and with the gas volumetric flow rate ratio beta = 0-0.05. Data on the size of bubbles detaching from the edges of an array of capillaries in a liquid flow are given. The influence of the disperse phase dimensions on the wall shear stress and heat transfer is discussed. It is shown that change in the size of the dispersed phase can lead to both intensification and deterioration of heat transfer as compared with a single-phase flow at constant flow rates of liquid and gas at the channel inlet. The cause of the heat transfer deterioration is "laminarization" of the flow in the near-wall region. An analysis of the spectral power of signals is given.
机译:讨论了向下气泡流动中抑制湍流的效果及其对壁剪切应力和热传递的影响。 对Reynolds数Re = 5000-10000进行测量,从液相的速度和气体体积流速比β= 0-05次计算。 给出了关于从液体流动阵列阵列的边缘脱离的气泡尺寸的数据。 讨论了分散相尺寸对壁剪切应力和传热的影响。 结果表明,分散相的尺寸的变化可以导致传热的强化和劣化,而与通道入口处的液体和气体的恒定流速处的单相流相比。 传热劣化的原因是近壁区域的流动的“层析”。 给出了信号光谱功率的分析。

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