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A two-way coupled CFD-DQMOM approach for long-term dynamic simulation of A. fluidized bed reactor

机译:一种双向耦合CFD-DQMOM,用于长期动态模拟A.流化床反应器

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摘要

For the long-term dynamic simulation of a fluidized bed reactor (FBR), a two-way coupled computational fluid dynamics (CFD)-direct quadrature method of moments (DQMOM) approach is proposed. In this approach, CFD is first used only for hydrodynamic information without simulating any other chemical reactions or physical phenomena. Subsequently, the derived information is applied to the DQMOM calculation in MATLAB. From the calculation, a particle size distribution is obtained and subsequently adopted in a new CFD model to reflect the flow change caused by a change in the particle size distribution. Through several iterative calculations, long-term dynamic simulations are performed. To evaluate the efficacy of the proposed approach, the results from the suggested approach are compared for 60 s with those of the CFD-quadrature method of moments (QMOM) approach, which calculates hydrodynamics and physical phenomena simultaneously in CFD. The proposed approach successfully simulated the FBR for 6 h. The results confirmed that the proposed method can simulate complex flow patterns, which cannot be obtained in conventional CFD models. Another advantage of the approach is that it can be applied to various industrial multiphase reactors without any tuning parameters.
机译:对于流化床反应器(FBR)的长期动态模拟,提出了一种双向耦合计算流体动力学(CFD) - 直接正交方法(DQMOM)方法。在这种方法中,CFD仅用于流体动力学信息,而不模拟任何其他化学反应或物理现象。随后,派生信息应用于MATLAB中的DQMOM计算。从计算中,获得粒度分布并随后在新的CFD模型中采用,以反映由粒度分布的变化引起的流动变化。通过几个迭代计算,执行长期动态模拟。为了评估所提出的方法的功效,将提出方法的结果与60秒进行比较,其中包括矩(Qmom)方法的CFD正交方法,其在CFD中同时计算流体动力学和物理现象。所提出的方法成功模拟了6小时的FBR。结果证实,该方法可以模拟复杂的流动模式,其不能在传统的CFD模型中获得。该方法的另一个优点是它可以应用于各种工业多相反应器而没有任何调谐参数。

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