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Gas-Solids Flow Behavior: CFB Riser vs. Downer

机译:气固两相流动行为:CFB上升器与下降器

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Comparisons are made in a circulating fluidized-bed riser/downer system between a 15.1 m high, 0.10 m ID riser and a 9.3 m high, 0.10 m ID downer, based on the measurements of the radial distributions of the local solids holdups and local particle velocities along the two columns. Although the core-annulus flow structures exist in both the riser and downer, the radial flow structure in the downer differs largely from that in the riser. The radial distributions of solids holdup and particle velocity in the downer are much more uniform that those in the riser, thus ensuring the low back mixing and the narrow particle residence time distribution in the downer. The axial flow structure in the downer is also more uniform than that in the riser. Due to the high particle acceleration and the high particle velocity in the downer, the overall solids holdup is significantly lower than that in the riser. The microflow structure in the downer, characterized by the low intermittency indices, is also more uniform than that in the riser. These key properties of the downer make it a very promising candidate for industrial applications where short reaction times and high product selectivity are required.
机译:在循环流化床提升管/下降管系统中,基于局部固体滞留物和局部颗粒的径向分布的测量结果,对内径为15.1 m的高0.10 m立管和内径为9.3 m的高0.10 m的内立管进行了比较。两列的速度。尽管在上升管和下降管中都存在芯-环空流动结构,但下降管中的径向流动结构与上升管中的径向流动结构有很大不同。下降管中的固体滞留量和颗粒速度的径向分布要比上升管中的径向分布更均匀,因此可确保下降密度低且下降管中的颗粒停留时间分布窄。下降器中的轴向流动结构也比上升器中的轴向流动结构更均匀。由于下降器中的高颗粒加速度和高颗粒速度,总固体含量明显低于上升器中的固体含量。下降管中的微流结构具有较低的间歇指数,因此比上升管中的微流结构更均匀。下降器的这些关键特性使其成为需要短反应时间和高产品选择性的工业应用的非常有希望的候选者。

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