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Hydrodynamic Behavior of Particles in a 3D Integral Multi-Jet Spout-Fluidized Bed

机译:三维整体多喷射喷口流化床中颗粒的流体动力学行为

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The hydrodynamic behavior of particles in a 3D integral multi-jet spout-fluidized bed has been studied experimentally by particle image velocimetry method. In the cross section of the spouted bed, especially in the annulus, it was found that particle movement can be effectively promoted by adding the integral multi-jet, thus enhancing the radial movement of particles in the annulus and effectively eliminating the dead zone of particle flow in the annulus region. With the decrease of particle handling capacity, the fluidization effect of multi-jets was improved. When the static bed depth was 0.165 m, the enhancement effect of multi-jets on the movement of particles in the spouted bed would be optimal. When the particle diameter was overly small, the fluidization effect of the side jet would be relatively low, while excessive particle diameter would weaken the fluidization effect of the side jet due to the rise in the inertia force of particles. The analysis of the average turbulent kinetic energy and radial velocity of the particles revealed that when the particle diameter is equal to 0.72 mm, the strengthening factor of movement of particles (η) reaches the peak, the turbulence fluctuation of particles in the annulus region reaches the highest, and the fluidization effect of side jets on the particles is the best.
机译:通过通过颗粒图像速度法实验研究了3D积分多喷射喷口流化床中颗粒的流体动力学行为。在喷射床的横截面中,特别是在环形空间中,发现可以通过添加整体多射流来有效地促进颗粒运动,从而增强颗粒在环形中的径向运动,并有效地消除颗粒的死区在环形区域流动。随着粒子处理能力的降低,改善了多喷射的流化效果。当静态床深度为0.165米时,多喷射在喷出床上颗粒运动上的增强效果是最佳的。当粒径过于较小时,侧射流的流化效果将相对较低,而过度粒径会由于颗粒惯性力的升高而过度粒径会削弱侧射的流化效果。颗粒的平均湍流动能和径向速度的分析显示,当粒径等于0.72mm时,粒子(η)的加强因子达到峰值,环形区域中颗粒的湍流波动到达颗粒上侧喷射的最高和流化效果是最好的。

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