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CFD optimization of continuous stirred-tank (CSTR) reactor for biohydrogen production

机译:用于生物制氢的连续搅拌釜(CSTR)反应器的CFD优化

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摘要

There has been little work on the optimal configuration of biohydrogen production reactors. This paper describes three-dimensional computational fluid dynamics (CFD) simulations of gas-liquid flow in a laboratory-scale continuous stirred-tank reactor used for biohydrogen production. To evaluate the role of hydrodynamics in reactor design and optimize the reactor configuration, an optimized impeller design has been constructed and validated with CFD simulations of the normal and optimized impeller over a range of speeds and the numerical results were also validated by examination of residence time distribution. By integrating the CFD simulation with an ethanol-type fermentation process experiment, it was shown that impellers with different type and speed generated different flow patterns, and hence offered different efficiencies for biohydrogen production. The hydrodynamic behavior of the optimized impeller at speeds between 50 and 70 rev/min is most suited for economical biohydrogen production.
机译:关于生物氢生产反应器的最佳配置的工作很少。本文介绍了用于生物制氢的实验室规模连续搅拌釜反应器中气液流动的三维计算流体动力学(CFD)模拟。为了评估流体力学在反应堆设计中的作用并优化反应堆配置,已构建了优化的叶轮设计,并通过在一定速度范围内对普通叶轮和优化叶轮的CFD仿真进行了验证,并通过检查停留时间来验证了数值结果分配。通过将CFD模拟与乙醇型发酵过程实验相结合,表明不同类型和速度的叶轮产生不同的流型,从而为生物制氢提供了不同的效率。优化的叶轮在50到70转/分钟之间的速度下的流体动力学特性最适合经济地生产生物氢。

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