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CFD investigation of the flow and heat transfer characteristics in a tangential inlet cyclone

机译:切向入口旋风分离器中流动和传热特性的CFD研究

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This work presents a computational fluid dynamics (CFD) calculation to investigate the flow field and the heat transfer characteristics in a tangential inlet cyclone which is mainly used for the separation of the dens phase of a two phase flow. Governing equations for the steady turbulent 3D flow were solved numerically under certain boundary conditions covering an inlet velocity range of 3 to 30 m/s. Finite volume based Fluent software was used and the RNG k-ε turbulence model was adopted for the modeling highly swirling turbulent flow. Good agreement was found between computed pressure drop and experimental data available in the literature. The structure of the vortices and variation of local heat transfer were studied under the effects of inlet velocity.
机译:这项工作提出了一种计算流体动力学(CFD)计算方法,以研究切向入口旋流器中的流场和传热特性,该方法主要用于分离两相流的密相。在涵盖入口速度范围为3至30 m / s的某些边界条件下,数值求解了稳定湍流3D流的控制方程。使用基于有限体积的Fluent软件,并采用RNGk-ε湍流模型来建模高涡旋湍流。在计算得出的压降与文献中提供的实验数据之间找到了很好的一致性。在入口速度的影响下,研究了涡的结构和局部传热的变化。

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