扩散器(光学)
喷油器
喷嘴
文丘里效应
机械
材料科学
航程(航空)
色散(光学)
混合(物理)
传质
喷射(流体)
热力学
化学
机械工程
光学
复合材料
入口
物理
工程类
量子力学
光源
作者
Jindřich Zahradník,Jan Kratochvı́l,M. Rylek
出处
期刊:ChemPlusChem
[Wiley-VCH]
日期:1985-01-01
卷期号:50 (11): 2535-2544
被引量:12
摘要
The effect of decisive construction parameters of ejectors on gas holdup and on the rate of interfacial mass transport (characterized by k L a values) was studied in a gas-liquid tower reactor (I.D. 0.3 m) with an ejector (Venturi-tube type) gas distributor. The selected ejector characteristics included diffuser length and angle of diffuser walls inclination as well as nozzle type and geometry. Experimental data confirmed validity of our previously published conclusions on the relation between the rate of energy dissipation in the place of dispersion formation ( i.e. in the ejector) and gas holdup and k L a values. The efficiency of dissipated energy utilization was however significantly influenced by the diffuser geometry. According to our experimental evidence the increase of ejector energy effectiveness with increasing diffuser length can be ascribed solely to its favourable effect on the gas suction rate while the mechanism of phases mixing (dispersion formation) in ejector was apparently independent of diffuser geometry within the whole range of experimental conditions.
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