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Experimental investigation and CFD simulation of liquid-solid-solid dispersion in a stirred reactor

机译:搅拌反应器中液固固分散体的实验研究和CFD模拟

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For understanding the monosodium aluminate hydrate crystallization from the supersaturated aluminate solution containing red mud as the leaching liquor of bauxite, the liquid-solid-solid dispersion of a simulant system, i.e. glycerite, red mud and sand, in a stirred reactor has been experimentally investigated as well as simulated using computational fluid dynamics model (CFD) for the first time. The computational model is based on the Eulerian multi-fluid model along with RNG k-ε turbulence model, where Syamlal-obrien-symmetric drag force model (Syamlal, 1987) of the inter-phase momentum transfer between two dispersed solid phases is taken into account. A good agreement is obtained between the experimental data of solid distributions and the simulation results in the flow fields of liquid-solid-solid as well as liquid-solid systems. The solid suspension qualities of both liquid-solid and liquid-solid-solid systems in the stirred reactors with and without draft tube were also studied in detail based on mixing time, the standard deviation of solid concentration proposed by Bohnet and Niesmak (1980), the flow pattern and power number. The influence of the interaction between two dispersed solid phases on the suspension of red mud is found significantly greater than that of sand. The holdup of sand below the impeller is considerably larger than that above the impeller and the red mud dispersion approaches homogeneous in the reactor. The mixing time of liquid-solid-solid suspension is longer than that of liquid-solid suspension under the same conditions, and the mixing times of both systems in the stirred reactor with draft tube are longer than that in the reactor without draft tube. Furthermore, the distributions of sand and red mud in the reactor with draft tube were found less homogeneous than those without draft tube in most cases.
机译:为了理解从含有赤泥作为铝土矿浸出液的过饱和铝酸盐溶液中结晶出的铝酸钠水合物结晶,已经对搅拌反应器中模拟体系即甘油,赤泥和沙子的液-固-固分散体进行了实验研究。以及首次使用计算流体动力学模型(CFD)进行模拟。该计算模型基于欧拉多流体模型以及RNGk-ε湍流模型,其中考虑了两个分散固相之间相间动量传递的Syamlal-obrien对称阻力模型(Syamlal,1987)。帐户。固体分布的实验数据与液体-固体-固体以及液体-固体系统的流场中的模拟结果之间取得了很好的一致性。还根据混合时间,Bohnet和Niesmak(1980)提出的固体浓度的标准偏差,详细研究了带或不带引流管的搅拌反应器中液-固和液-固-固系统的固体悬浮液质量,流型和功率数。发现两个分散的固相之间的相互作用对赤泥悬浮液的影响明显大于沙子。叶轮下方的砂子滞留量比叶轮上方的砂子滞留量大得多,并且赤泥在反应器中的分散接近均匀。在相同条件下,液-固-固悬浮液的混合时间比液-固悬浮液的混合时间长,在带引流管的搅拌反应器中,两个系统的混合时间都比不带引流管的反应器长。此外,发现在大多数情况下,带有引流管的反应器中的沙子和赤泥的分布不如没有引流管的反应器均匀。

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