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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Comparative study of flow structure in circulating fluidized bed risers with FCC and sand particles
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Comparative study of flow structure in circulating fluidized bed risers with FCC and sand particles

机译:FCC与砂粒循环流化床立管内流动结构的比较研究

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The combined influences of particle properties and nozzle gas distributor design on the axial and radial flow structure in two 100 mm i.d., 15.1 m and 10.5 m long risers with FCC and sand particles were investigated by measuring the axial pressure gradient profiles, and the axial and radial profiles of solids concentration. The results show that the nozzle gas distributor design has significant effects on the axial and radial flow structure for the FCC and sand particles. At lower superficial gas velocity of less than 8.0 m/s, the upward gas-solid flow of the sand particles decelerates in various degrees with the disappearing of the nozzle gas distributor effect. The upward gas-solid flow of the FCC particles, however, occurs without noticeable deceleration within the range of this study. In the acceleration section, the radial distributions of the local solids concentration of the FCC particles are more uniform than those of sand particles under the same operating conditions; while in the fully developed zone, the sand particles have a more uniform radial distribution than the FCC particles. The gas-solid flow is first developed in the center region, and then extends towards the wall. The overall flow development in the riser mainly depends on the local gas-solid flow in the wall region.
机译:通过测量轴向压力梯度分布,轴向压力梯度和轴向压力梯度曲线,研究了颗粒性质和喷嘴气体分配器设计对两个100 mm内径,15.1 m和10.5 m长的FCC和砂粒立管的轴向和径向流动结构的综合影响。固体浓度的径向分布。结果表明,喷嘴气体分配器的设计对FCC和沙粒的轴向和径向流动结构有重大影响。在低于8.0 m / s的较低表观气体速度下,随着喷嘴气体分配器效应的消失,砂粒的向上气固流动会不同程度地减速。但是,在本研究范围内,FCC颗粒向上发生了气固流动,而没有明显的减速。在加速工段中,在相同的工作条件下,FCC颗粒的局部固形物浓度的径向分布比砂子颗粒的分布更均匀。而在充分发育的区域中,沙粒的径向分布比FCC颗粒更为均匀。气固流首先在中心区域发展,然后向壁延伸。立管中的总流量发展主要取决于壁区域中的局部气固流动。

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