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Experimental Study on Gas–Solid Flow in the Spouted Bed under Longitudinal Vortex Effect

机译:纵向涡流作用下喷动床内气固两相流的实验研究

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To strengthen the particles radial movement and mixing, the longitudinal vortex generator of a sphere was adopted in the spouted bed in this study. To find the influence of the longitudinal vortex and particle properties on axial and radial velocities of particles in a 152 mm-diametered spouted bed, particle image velocimetry (PIV) was employed. The experimental results show that the addition of the longitudinal vortex generator caused the vortex movement of high-speed gas and induced a considerable secondary fine vortex in the cross section of the spouted bed, and the existence of longitudinal vortex significantly improved the radial velocity of particles, compared with that of the conventional spouted bed. Due to the effect of longitudinal vortex on particles, the phenomenon of early dropping of particles was increasingly obvious with the rise in bed height, and the value of axial velocity of particle phase was negative. With the decrease in the particle diameter, the longitudinal vortex effect of gas-driven particle movement would be enhanced. The longitudinal vortex could enhance particle velocity under a wide range of particle diameters, and the enhancement factor η decreased with the rise in the particle diameter and gradually approaches to 1.
机译:为了加强颗粒的径向运动和混合,本研究在喷动床中采用了球体的纵向涡流发生器。为了发现纵向涡旋和颗粒性质对直径为152 mm的喷射床中颗粒轴向和径向速度的影响,采用了颗粒图像测速仪(PIV)。实验结果表明,纵向涡流发生器的加入引起了高速气体的涡流运动,并在喷流床的横截面上产生了相当大的二次细涡流,并且纵向涡流的存在显着改善了颗粒的径向速度。与传统喷水床相比。由于纵向涡流对颗粒的影响,随着床层高度的增加,颗粒的早期掉落现象越来越明显,颗粒相的轴向速度为负。随着粒径的减小,气体驱动的颗粒运动的纵向涡旋效应将增强。纵向涡流可以在较宽的粒径范围内提高粒子速度,增强因子η随着粒径的增加而减小,并逐渐趋近于1。

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