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首页> 外文期刊>AIChE Journal >Bubble Size Distribution Modeling in Stirred Gas-Liquid Reactors with QMOM Augmented by a New Correction Algorithm
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Bubble Size Distribution Modeling in Stirred Gas-Liquid Reactors with QMOM Augmented by a New Correction Algorithm

机译:新型修正算法增强QMOM的搅拌气液反应器中气泡尺寸分布建模

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Local gas hold-up and bubbles size distributions have been modeled and validated against experimental data in a stirred gas-liquid reactor, considering two different spargers. An Eulerian multifluid approach coupled with a population balance model (PBM) has been employed to describe the evolution of the bubble size distribution due to break-up and coalescence. The PBM has been solved by resorting to the quadrature method of moments, implemented through user defined functions in the commercial computational fluid dynamics code Fluent v. 6.2. To overcome divergence issues caused by moments corruption, due to numerical problems, a correction scheme for the moments has been implemented; simulation results prove that it plays a crucial role for the stability and the accuracy of the overall approach. Very good agreements between experimental data and simulations predictions are obtained, for a unique set of break-up and coalescence kinetic constants, in a wide range of operating conditions.
机译:考虑到两个不同的喷射器,已经在搅拌的气液反应器中对实验中的局部气体滞留量和气泡尺寸分布进行了建模和验证。欧拉多流体方法与人口平衡模型(PBM)结合使用来描述由于破裂和聚结而引起的气泡尺寸分布的演变。 PBM已通过采用矩量的正交方法解决,该方法通过商业计算流体力学代码Fluent v。6.2中的用户定义函数来实现。为了克服由于数值问题而引起的力矩破坏引起的发散问题,已经实施了力矩校正方案。仿真结果证明,它对于整体方法的稳定性和准确性起着至关重要的作用。对于各种工作条件下的一组独特的分解和合并动力学常数,实验数据与模拟预测之间取得了很好的一致性。

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