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Hydrodynamic behavior of three-phase airlift loop slurry reactor

机译:三相气升环流淤浆反应器的水动力行为

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A novel fiber optic probe system and a set of commercial ultrasonic Doppler velocimeters have been used to study the hydrodynamic behavior of a three-phase airlift loop (TPAL) slurry reactor. Experiments have been carried out in a loop reactor with 100 mm inner diameter and 2. 5 m height, in which air, tap water and silica gel particles are used as the gas, liquid and solid phase, respectively. The radial profile of gas holdup, bubble size, bubble rising velocity, liquid circulating velocity, and the influence of the main operating conditions such as superficial gas velocity and solids concentration have been studied experimentally in the TPAL slurry reactor. The experimental results show that the bubble characteristics are different in various flow regimes and the radial profiles of some hydrodynamic parameters in the TPAL slurry reactor are more uniform than those in traditional three-phase reactors. The distribution of the bubble size and bubble rising velocity can be described by a lognormal function. The influence of superficial gas velocity on the hydrodynamic parameters is more remarkable than that of the solids concentration.
机译:一种新型的光纤探针系统和一套商用超声多普勒测速仪已被用于研究三相气举回路(TPAL)浆液反应器的流体动力学行为。已经在内径为100 mm,高为2. 5 m的环管反应器中进行了实验,其中空气,自来水和硅胶颗粒分别用作气相,液相和固相。在TPAL淤浆反应器中,通过实验研究了气体滞留率的径向分布,气泡大小,气泡上升速度,液体循环速度以及主要操作条件(例如表观气体速度和固体浓度)的影响。实验结果表明,TPAL淤浆反应器中的气泡特性在不同的流态下是不同的,并且某些流体动力学参数的径向分布比传统的三相反应器更均匀。气泡大小和气泡上升速度的分布可以通过对数正态函数描述。表观气体速度对流体动力学参数的影响比固体浓度的影响更为显着。

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