• 化工学报 • Previous Articles     Next Articles

APPLICATION OF PHOSPHOR TRACER TECHNIQUE TO THE MEASUREMENT OF SOLIDS RTD IN CIRCULATING FLUIDIZED BED

Wei Fei, Jin Yong, Yu Zhiqing, Can Jun and Wang Zhanwen (Department of Chemical Engineering, Tsinghua University, Beijing 100084)   

  • Online:1994-04-25 Published:1994-04-25

磷光颗粒示踪技术在循环流态化中的应用

魏飞,金涌,俞芷青,甘俊,汪展文   

  1. 清华大学化工系,清华大学化工系,清华大学化工系,清华大学化工系,清华大学化工系 北京 100084 ,北京 100084 ,北京 100084 ,北京 100084 ,北京 100084

Abstract: A unique phosphor tracer technique was used to allow experimental measurement of residence time distribution (RTD) of solids in the circulating fluidized bed. The instantaneous input of light impulse and the detection of the light emission by the excited phosphor particles permit on-line continuous determination of solids tracer concentration with time at different radial and axial positions within the riser and downer. The measured RTD curves in the downer show that less axial solids mixing takes place in the downer than that in the riser. The two-peak distribution of RTD curves in the riser is clearly seen in the experiment.

摘要: <正> 1 引言 固体颗粒的停留时间分布(Residence Time Distribution简称RTD)在循环流态化研究中十分重要,它对于了解其两相流动特性、反应器的模拟计算和工程设计是必不可少的,对于流态化干燥过程及传热行为的研究也很重要。流化床中RTD的研究已有大量文献报道,发展了诸如染色颗粒、盐颗粒、磁性颗粒、放射性颗粒及热(冷)颗粒等众多的示踪方法,但是由于固体颗粒示踪本身存在着示踪剂的注入、在线检测、残留及示踪颗粒与床体物料一致性、示踪过程对床内流场的干扰等一系列技术上的困难,不但使实验操作繁琐,而且实验结果的可靠性、重复性均不理想,特别是在颗粒运动速度较快的循环流化床中,其颗粒示踪的难度更大。为了解决上述难题,本文参考了Jin Yong等和Yu Zhiqing及M.Kwauk在常规流化床中曾采用的磷光示踪方法,在循环流化床条件下进行了新的探索。

CLC Number: