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首页> 外文期刊>Brazilian journal of chemical engineering >Numerical study on the hydrodynamics of a fluidized-bed of bioparticles in tapered bioreactors with square shape cross-section
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Numerical study on the hydrodynamics of a fluidized-bed of bioparticles in tapered bioreactors with square shape cross-section

机译:方形横截面锥形生物反应器中生物颗粒流化床流体动力学的数值研究

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摘要

There are several configurations of fluidized beds commonly used in wastewater treatment units. Often their hydrodynamics is challenging to be evaluated experimentally, or too complex to be predicted accurately with empirical correlations only. In the present study, the computational fluid dynamics technique was applied to evaluate the hydrodynamic behavior of a liquid-solid fluidized bed in tapered bioreactors. The simulations were run with OpenFOAM, and they were based on a 3D, transient, Eulerian-Eulerian two-phase approach coupled with a turbulence model. Different tapered bioreactor angles were considered in the study, and the results showed a decrease in flow velocity along with the height of the device. Moreover, the distribution of the bioparticles within the fluidized bed was not found to be uniform, and it changed with the angle. It was also observed that bioparticle collisions caused large velocity fluctuations. Even though the bioreactor presented a square cross section, results also proved that the presence of the dead zone was negligible.
机译:有几种常用于废水处理单元的流化床配置。通常,它们的流体动力学是在实验上进行评估的具有挑战性的,或者在经验相关性的经验相关性地预测到过度复杂。在本研究中,应用计算流体动力学技术来评估锥形生物反应器中液体固体流化床的流体动力学行为。仿真与OpenFoam一起运行,它们基于3D,瞬态,欧拉 - 欧拉的两相方法与湍流模型相结合。在研究中考虑了不同的锥形生物反应器角度,结果表明,流速随着装置的高度而降低。此外,未发现流化床内的生物颗粒的分布是均匀的,并且随着角度而变化。还观察到生物池碰撞引起了大的速度波动。即使生物反应器呈现方形横截面,结果也证明了死区的存在可忽略不计。

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