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首页> 外文期刊>Chemical Engineering Science >Dense gas-liquid-solid flow in a slurry bubble column: Measurements of dynamic characteristics, gas volume fraction and bubble size distribution
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Dense gas-liquid-solid flow in a slurry bubble column: Measurements of dynamic characteristics, gas volume fraction and bubble size distribution

机译:浆料泡泡柱中的致密气体 - 固体流动:动态特性测量,气体体积分数和泡沫尺寸分布

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Dense three-phase slurry flows are important in several industrial processes (e. g., Methanol/DME synthesis, Fischer Tropsch synthesis). In the present work, gas-liquid-solid flow in a pseudo 3D slurry bubble column is characterized under dense flow conditions for superficial gas velocity (U-G) of 5-30 cm s-1 and overall solid loading (haSi) of 0-40 vol.%. In-house developed voidage probes were used to measure local gas volume fraction fluctuations. The high frequency fluctuations (similar to 1-10 Hz) caused by individual bubbles or swarms of bubbles were found to increase with increase inhaSiand UG. The low frequency oscillations (similar to< 1 Hz) corresponding to column-scale recirculating flow were found to decrease with increase inhaSi. Importantly, time-averaged gas volume fraction and its internal composition (i. e. gas volume fraction contained in different bubble size groups) and bubble size distribution were measured at different locations in the slurry bubble column. With an increase inhaSi, local gas volume fraction was found to decrease, accompanied by an increase in bubble size. Based on the distribution of bubble chord lengths, the gas volume fraction contained in different bubble size groups was measured for differenthaSiand UG. With increase inhaSi, the gas volume fraction for small bubbles was found to decrease while that for large bubbles was found to increase. Under the dense flow conditions (at high UG andhaSi), while small bubbles were found to accumulate near the column walls, as indicated by the wall peaking in aG profiles, large bubbles/gas slugs were found to flow predominantly through the column center. In addition to the new experimental data, the present work helps to improve the understanding of dense slurry flows that will aid the development and verification of Eulerian multiphase models. (C) 2017 Elsevier Ltd. All rights reserved.
机译:致密的三相浆料流动在若干工业过程中非常重要(例如,甲醇/ DME合成,费氏鼠合成)。在本作本作的情况下,伪3D浆料泡塔中的气液固体流动的表征在致密流动条件下,浅表气体速度(UG)为5-30cm S-1和0-40的整体固体载荷(HASI)卷。%。内部开发的空转探针用于测量局部气体体积分数波动。发现由单个气泡或泡沫的群体引起的高频波动(类似于1-10 Hz)随着Inhasiand UG的增加而增加。发现对应于柱级再循环流量的低频振荡(类似于<1Hz),以随着Inhasi的增加而降低。重要的是,时间平均气体体积分数及其内部组合物(即,在浆料泡塔的不同位置处测量不同气泡尺寸组中含有的气体体积分数,并在浆料泡塔的不同位置测量。随着inhasi的增加,发现局部气体体积分数降低,伴随着泡沫尺寸的增加。基于气泡弦长的分布,测量不同泡尺寸组中含有的气体体积分数,用于不同的熟料UG。随着inhasi的增加,发现小气泡的气体体积分数减小,而发现大气泡增加。在致密流动条件下(在高UG和莎莎中),而发现小气泡在柱壁附近积聚,如Ag型材中的壁峰所示,发现大气泡/气体块主要通过柱中心流动。除了新的实验数据外,目前的作品有助于提高对致密浆料流动的理解,以帮助欧拉多相模型的开发和验证。 (c)2017 Elsevier Ltd.保留所有权利。

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