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Particle-Scale Simulation of the Flow and Heat Transfer Behaviors in Fluidized Bed with Immersed Tube

机译:沉管流化床流动和传热行为的粒度模拟

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A kind of new modified computational fluid dynamics-discrete element method (CFD-DEM) method was founded by combining CFD based on unstructured mesh and DEM. The turbulent dense gas-solid two phase flow and the heat transfer in the equipment with complex geometry can be simulated by the programs based on the new method when the k-s turbulence model and the multiway coupling heat transfer model among particles, walls and gas were employed. The new CFD-DEM coupling method that combining k-s turbulence model and heat transfer model, was employed to simulate the flow and the heat transfer behaviors in the fluidized bed with an immersed tube. The microscale mechanism of heat transfer in the fluidized bed was explored by the simulation results and the critical factors that influence the heat transfer between the tube and the bed were discussed. The profiles of average solids fraction and heat transfer coefficient between gas-tube and particle-tube around the tube were obtained and the influences of fluidization parameters such as gas velocity and particle diameter on the transfer coefficient were explored by simulations. The computational results agree well with the experiment, which shows that the new CFD-DEM method is feasible and accurate for the simulation of complex gas-solid flow with heat transfer. And this will improve the farther simulation study of the gas-solid two phase flow with chemical reactions in the fluidized bed.
机译:通过结合基于非结构化网格的CFD和DEM,建立了一种新的改进的计算流体动力学离散元方法(CFD-DEM)。当采用ks湍流模型和颗粒,壁和气体之间的多路耦合传热模型时,可以通过基于新方法的程序模拟湍流致密的气固两相流动和复杂几何形状的设备中的传热。 。将k-s湍流模型和热传递模型相结合的新的CFD-DEM耦合方法被用于模拟浸入管式流化床中的流动和热传递行为。仿真结果探讨了流化床传热的微观机理,并讨论了影响管与床之间传热的关键因素。得到了管子周围气体管与颗粒管之间的平均固体分率和传热系数的分布图,并通过模拟研究了流化参数如气体速度和粒径对传热系数的影响。计算结果与实验结果吻合良好,表明新的CFD-DEM方法对于模拟复杂的传热气固两相流是可行且准确的。这将进一步改善流化床中气固两相流与化学反应的模拟研究。

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