首页> 外文会议>ASME Fluids Engineering Division summer meeting >EFFECT OF AMPLITUDE ON MASS TRANSPORT, VOID FRACTION AND BUBBLE SIZE IN A VERTICALLY VIBRATING LIQUID-GAS BUBBLE COLUMN REACTOR
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EFFECT OF AMPLITUDE ON MASS TRANSPORT, VOID FRACTION AND BUBBLE SIZE IN A VERTICALLY VIBRATING LIQUID-GAS BUBBLE COLUMN REACTOR

机译:立式对立式液体汽泡塔反应器中传质,空分和气泡大小的影响

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Two-phase and three-phase Bubble Column Reactors are used in many chemical, petroleum, and bio-systems processing applications such as the hydrogenation of coal slurry to produce synthetic fuels during the Fischer-Tropsch process. Vertical vibration of a BCR has previously been shown to increase mass transfer, increase void fraction, decrease bubble size and establish interesting flow phenomena through kinetic buoyancy or "Bjerknes force". However, the effect of kinetic buoyancy on the flow field, mass transfer, and flow properties such as void fraction is not fully understood. While previous research has focused on the effect of vibration frequency (10 <f< 120 Hz) at low amplitudes, (A < 2.5 mm) very little attention has been given to the effect of larger amplitudes. Therefore, a new experimental set up was designed, built, verified by comparison to previous research, and used to collect mass transfer, void fraction, and bubble size data at high amplitude (2.5 mm < A < 9.5 mm) over a frequency range of 7.5-22.5 Hz. Comparison of the results with previous research shows similar local maxima occurring for void fraction and mass transfer, but that an optimum amplitude may exist for mass transfer which is independent of frequency. Statistical analysis and comparison of the results with data from the literature suggests a stronger relationship may exist between kinetic buoyancy and mass transfer than previously theorized.
机译:两相和三相鼓泡塔反应器用于许多化学,石油和生物系统加工应用中,例如费-托过程中煤泥的氢化以生产合成燃料。先前已显示出BCR的垂直振动会通过动态浮力或“ Bjerknes力”增加传质,增加空隙率,减小气泡大小并建立有趣的流动现象。但是,动力学浮力对流场,传质和流动特性(如空隙率)的影响尚不完全清楚。虽然先前的研究集中在低振幅时振动频率(10 <f <120 Hz)的影响,但(A <2.5 mm)很少关注较大振幅的影响。因此,设计了一个新的实验装置,并与以前的研究进行了比较,并进行了验证,并用于收集在频率范围为2.5mm <A <9.5 mm的高振幅(2.5 mm <A <9.5 mm)下的传质,空隙率和气泡尺寸数据。 7.5-22.5赫兹。结果与先前研究的比较表明,空隙率和传质发生了类似的局部最大值,但传质的最佳振幅可能存在,而与频率无关。统计分析和结果与文献数据的比较表明,动力学浮力和传质之间的关系可能比以前的理论更强。

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