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Numerical Simulation on Characteristics of Dense-phase Pneumatic Conveying in Horizontal Pipe

机译:水平管密相气力输送特性的数值模拟

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Numerical simulation of dense-phase pneumatic conveying flow field was carried out by using k-ε-ks-εs two-fluid model in horizontal pipe on the basis of kinetic theory of granular flow. The coupling issue between gas phase and solid phase was taken into account in the process of simulation. Such characteristics of flow field along pipe as pressure distribution, concentration distribution, gas and particle velocity distribution were obtained. The results of numerical simulation showed the tends of pressure, gas velocity, particle concentration in pipeline. The results of numerical simulation were compared with experimental results, and it showed that the simulation results were validated by the experimental data, which indicate that the model and the corresponding algorithm have higher accuracy and better prediction. Thus the numerical simulation method can reveal the basic characteristics of dense phase pneumatic conveying in horizontal pipe.
机译:基于颗粒流动力学理论,利用k-ε-ks-εs双流体模型在水平管中进行了密相气力输送流场的数值模拟。在模拟过程中考虑了气相和固相之间的耦合问题。获得了沿管道流场的压力分布,浓度分布,气体和颗粒速度分布等特征。数值模拟结果表明了管道中压力,气体速度,颗粒浓度的变化趋势。将数值模拟结果与实验结果进行了比较,结果表明,通过实验数据对模拟结果进行了验证,表明该模型及相应算法具有较高的精度和较好的预测效果。因此,数值模拟方法可以揭示水平管中密相气力输送的基本特征。

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