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Effects of turbulence modelling on prediction of flow characteristics in a bench-scale anaerobic gas-lift digester

机译:湍流模型对台式厌氧气举消化池内流动特性预测的影响

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摘要

Flow in a gas-lift digester with a central draft-tube was investigated using computational fluid dynamics (CFD) and different turbulence closure models. The k-ω Shear-Stress-Transport (SST), Renormalization-Group (RNG) k-∊, Linear Reynolds-Stress-Model (RSM) and Transition-SST models were tested for a gas-lift loop reactor under Newtonian flow conditions validated against published experimental work. The results identify that flow predictions within the reactor (where flow is transitional) are particularly sensitive to the turbulence model implemented; the Transition-SST model was found to be the most robust for capturing mixing behaviour and predicting separation reliably. Therefore, Transition-SST is recommended over k-∊ models for use in comparable mixing problems. A comparison of results obtained using multiphase Euler–Lagrange and singlephase approaches are presented. The results support the validity of the singlephase modelling assumptions in obtaining reliable predictions of the reactor flow. Solver independence of results was verified by comparing two independent finite-volume solvers (Fluent-13.0sp2 and OpenFOAM-2.0.1).
机译:使用计算流体力学(CFD)和不同的湍流闭合模型研究了带有中央引流管的气举式消化池中的流动。针对牛顿流条件下的气举式环流反应堆,测试了k-ω剪切-应力传输(SST),重归一化组(RNG)k-∊,线性雷诺-应力模型(RSM)和Transition-SST模型。针对已发表的实验工作进行了验证。结果表明,反应堆内的流动预测(流动是过渡的)对实施的湍流模型特别敏感。发现Transition-SST模型对于捕获混合行为和可靠地预测分离是最强大的。因此,建议在与k-∊模型相比时使用Transition-SST,以解决可比的混合问题。介绍了使用多相Euler-Lagrange方法和单相方法获得的结果的比较。结果支持单相建模假设在获得反应堆流量的可靠预测中的有效性。通过比较两个独立的有限体积求解器(Fluent-13.0sp2和OpenFOAM-2.0.1)来验证结果的求解器独立性。

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