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Theoretical and numerical studies on the flow multiplicity phenomenon for gas-solids two-phase flows in CFB risers

机译:CFB立管中气固两相流多重流动现象的理论和数值研究

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The dependence of the fully-developed flow profiles on the inlet flow conditions for gas-solids two-phase flows, i.e. the flow multiplicity phenomenon, in circulating fluidized bed (CFB) risers was proposed and discussed in this article. The flow multiplicity phenomenon for gas-solids two-phase flows was first proved mathematically based on the conservation equations of mass and momentum. Then the CFD model using Eulerian-Eulerian approach with k-ε turbulence model for each phase was further adopted to analyze the details of this flow multiplicity phenomenon. It is theoretically and numerically revealed that for gas-solids two-phase flows, the flow profiles in the fully-developed region are always dominated by the flow profiles at the inlet. The solids concentration profile is closely coupled with the velocity profile, and the inlet solids concentration and velocity profiles can largely influence the fully-developed concentration and velocity profiles.
机译:本文提出并讨论了在循环流化床(CFB)立管中完全发展的流动曲线对气固两相流入口流动条件的依赖性,即流动多样性现象。首先根据质量和动量守恒方程数学地证明了气固两相流的多重流动现象。然后进一步采用CFD模型,该模型使用Eulerian-Eulerian方法和每个阶段的k-ε湍流模型来分析这种流动多样性现象的细节。理论上和数值上都表明,对于气固两相流,在完全展开区域中的流场总是由入口处的流场主导。固体浓度分布与速度分布密切相关,入口固体浓度和速度分布会极大地影响充分发展的浓度和速度分布。

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