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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >PREDICTION OF COALESCENCE PROPERTIES OF GAS BUBBLES IN A GAS-LIQUID REACTOR USING PERSISTENCE TIME MEASUREMENTS
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PREDICTION OF COALESCENCE PROPERTIES OF GAS BUBBLES IN A GAS-LIQUID REACTOR USING PERSISTENCE TIME MEASUREMENTS

机译:预测聚结气体的性质气液反应器使用泡沫持久性时间的测量

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摘要

The continuous coalescence and redispersion process of gas bubbles is an important phenomenon that has great significance on bubble size,gas holdup and gas-liquid mass transfer in gas-liquid reactors.The physical laws that determine the bubble coalescence rate are not yet well understood.Therefore,there is a great need for more detailed information about the coalescence process.The coalescence models can be utilized,for example,in multiphase CFD simulations.A combination of CFD and population balances with coalescence and break-up models is a promising topic,which enables a more detailed calculation of local hydrodynamics,gas holdup and gas-liquid mass transfer.The measurement of persistence time,defined as a time that a bubble remains attached at free gas-liquid surface,was used in this work to predict the coalescence properties in a bubble column.The persistence time was evaluated for different liquids and different bubble sizes using highspeed video camera.The applied method for measuring the persistence time is very simple and fast.The measured persistence times range from 10 ms for de-ionized water up to 15 s for water isopropanol solution.In addition,bubble size distributions were photometrically determined in a bubble column at several height positions using different liquids and operational conditions.The measured persistence times were applied in a simplified bubble column simulation model together with population balances and the measured and predicted bubble sizes were compared.A good agreement with calculated and measured size distributions was observed.
机译:连续聚结和再分散气泡的过程是一个重要的现象对泡沫的大小,天然气,具有重要意义持枪抢劫,在气液气液传质反应堆。泡沫聚结速度还没有好理解。关于聚结的更详细的信息的过程。例如,利用多相计算流体动力学模拟。余额合并和拆分模型一个有前途的话题,使一个更详细的计算当地的水动力学、气体持枪抢劫气液传质。持久性时间定义为一个时间,一个泡沫仍然附在气液自由表面,用于这项工作预测聚结属性列在一个泡沫。对不同的液体和时间评估不同大小的泡沫用高速视频相机。持续时间非常简单和快速。测量范围从10 ms持久性倍de-ionized水15 s异丙醇解决方案。光度计的决定在一个泡沫列在几个高度位置使用不同的液体和操作条件。应用在测量持续时间简化的泡罩塔仿真模型人口平衡和在一起测量和预测泡沫的大小比较。观察测量尺寸分布。

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