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Solids residence time distribution in the secondary reactor of a dual circulating fluidized bed system

机译:固体在双循环流化床系统二级反应器中的停留时间分布

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摘要

The present work reports on the characterization of solids residence time distribution (RTD) in the secondary reactor of a dual circulating fluidized bed (DCFB) system for chemical looping processes. This reactor takes part in the global solids loop but performs an internal recirculation of material as well. The study was carried out in a cold flow model especially designed for the fluid dynamical analysis of such system and provided with a novel residence time measurement device based on inductance measurements and developed in a previous work; ferromagnetic steel particles were used as tracer. Three main variables were studied regarding their influence on the solids residence time distribution, these are: global circulation rate, reactor inventory and reactor fluidization velocity. The use of a modular model allowed a reasonable description of the residence time distribution and a satisfactory fitting for all the experiments. The mean residence time in the global loop decreases inversely proportional to the global circulation rate while the mean residence time in the internal loop appears inversely proportional to the reactor fluidization velocity. The RTD in the internal loop is unexpectedly affected by the global circulation. No important changes are observed in the global loop mean residence time due to changes in the fluidization velocity. The diminution of inventory causes diminution in the mean residence times of both loops, but the ratio between up- and down-wards flows in the reactor appeared independent of the reactor inventory.
机译:本工作报告了化学循环过程的双循环流化床(DCFB)系统二级反应器中固体停留时间分布(RTD)的表征。该反应器参与了整体固体回路,但也进行了物料的内部再循环。该研究是在专门为此类系统的流体动力学分析而设计的冷流模型中进行的,并提供了基于电感测量的新型停留时间测量装置,该装置是在先前的工作中开发的。铁磁钢颗粒用作示踪剂。研究了三个主要变量对它们对固体停留时间分布的影响,它们是:总循环速率,反应器库存和反应器流化速度。模块化模型的使用允许对停留时间分布进行合理的描述,并为所有实验提供令人满意的拟合。在整体回路中的平均停留时间与整体循环速率成反比地减小,而在内部回路中的平均停留时间与反应器流化速度成反比。内部循环中的RTD意外地受到全局循环的影响。由于流化速度的变化,没有观察到整体回路平均停留时间的重要变化。库存的减少导致两个回路的平均停留时间减少,但是反应堆中向上和向下流动之间的比率似乎与反应堆库存无关。

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