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首页> 外文期刊>The Korean journal of chemical engineering >CFD simulation of coal-water slurry flowing in horizontal pipelines
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CFD simulation of coal-water slurry flowing in horizontal pipelines

机译:水平管道中水煤浆流动的CFD模拟

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摘要

An Eulerian multiphase approach based on kinetic theory of granular flow was used to simulate flow of coal-water slurries (CWS) in horizontal pipelines. The RNG κ-ε turbulent model was incorporated in the governing equation to model turbulent two-phase flow with strong particle-particle interactions. In this model, the coal particles with bimodal distribution were considered as two solid-phase components, and the moment exchange between solid and liquid as well as that between solid and solid were accounted for. The model was firstly validated with pressure gradient and concentration profile data from the open literature, and then validated with pressure gradient data of the authors' experiments. The effects of influx velocity, total influx concentration and grain composition were numerically investigated, and the results have displayed some important slurry flow characteristics, such as constituent particle concentration distribution and velocity distribution as well as pressure gradients, which are very difficult to display in the experiments. The results suggest that both gravity difference between large and small particles and strong particle-particle interaction had significant effects on concentration distribution as well as velocity distribution.
机译:基于颗粒流动力学理论的欧拉多相方法被用来模拟水煤浆在水平管道中的流动。将RNGκ-ε湍流模型纳入控制方程,以建模具有强粒子间相互作用的湍流两相流。在该模型中,将具有双峰分布的煤颗粒视为两个固相成分,并考虑了固液之间以及固液之间的瞬时交换。首先用公开文献中的压力梯度和浓度分布数据验证模型,然后用作者实验的压力梯度数据验证模型。数值研究了入流速度,总入流浓度和晶粒组成的影响,结果显示了一些重要的浆液流动特性,例如组成颗粒浓度分布和速度分布以及压力梯度,这些在浆液中很难显示。实验。结果表明,大小颗粒之间的重力差和强烈的颗粒间相互作用都对浓度分布和速度分布都有显着影响。

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