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Effects of Reduced Gravity Conditions on Bubble Dispersion Characteristics in the Bubble Column

机译:重力条件降低对气泡塔内气泡分散特性的影响

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Bubble-liquid turbulent flow has an excellent heat and mass transfer behaviors than single gas or liquid flow. In order to analyze the effects of normal and reduced gravity on cold bubble-liquid two-phase turbulent flow in bubble column a second-order moment cold bubble-liquid two-phase turbulent model was developed to disclose the bubble dispersion characteristics. Under the reduced gravity condition, volume fraction caused by the decrease of buoyance force is larger than normal gravity level due to bigger bubble solid volume. In addition, bubble frequency is also decreased by in decrease of buoyance force. Normal and shear stresses have strongly anisotropic characteristics at every directions and have larger values under normal gravity than reduced gravity. The liquid turbulent kinetic energy has the two-peak bimodal distribution and weaker than bubble turbulent kinetic energy with one peak unimodal, which is caused by vigorous wake fluctuations. The correlation of fluctuation velocities between bubble and liquid has clearly anisotropic behaviors Under reduced gravity, the bubble motion has a little impact on liquid turbulent flow caused by slight buoyancy force, however, it will greatly reduce the liquid turbulent intensity due to energy cascade transport, which was transformed into bubbles or dissipated by interface friction. Bubble formation and detachment mechanisms affected by gravity conditions lead to the different levels of bubble dispersion distributions.
机译:气泡-液体湍流比单一气体或液体流具有出色的传热和传质性能。为了分析正常重力和减小重力对气泡塔内冷气液两相湍流的影响,建立了二阶矩冷气液两相湍流模型,揭示了气泡的分散特性。在减小重力的情况下,由于较大的气泡固体体积,浮力减小引起的体积分数大于正常重力水平。另外,由于浮力的降低,气泡频率也降低。正应力和剪应力在每个方向上都具有很强的各向异性,并且在法向重力下的应力值要大于减小的重力。液体湍动能具有两峰双峰分布,并且比具有一个峰值单峰的气泡湍动能弱,这是由剧烈的尾流波动引起的。气泡和液体之间的波动速度的相关性具有明显的各向异性行为。在重力降低的情况下,气泡的运动由于轻微的浮力而对液体湍流的影响很小,但是由于能量的级联传递,它将大大降低液体湍流的强度,变成气泡或由于界面摩擦而消散。受重力条件影响的气泡形成和分离机理导致气泡分散分布的水平不同。

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