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Power consumption in dual impeller gas-liquid contactors: Impeller spacing, gas flow rate, and viscosity effects

机译:双叶轮气液接触器的功耗:叶轮间距,气体流速和粘度影响

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摘要

The dependence of power consumption on impeller spacing, and also in relation to gas flow rate and viscosity, in unaerated and aerated gas-liquid contactors agitated by dual Rushton- and by dual pitched blade turbines was comparatively studied. In tap water the two Rushton impellers acted independently for spacings greater than Delta H = 1.65d, while in glycerol solutions the impellers acted independently on reaching an impeller spacing equal to 1.20d; the corresponding values for the two pitched blade impellers were 1.50d for tap water, 1.07d for relatively high viscosities, and 0.53d for very high viscosity values. The Newton number Ne decreases with increasing viscosity for the dual Rushton turbine systems, while an increase of Ne can be observed with increasing viscosity for the corresponding pitched blade systems. For the dual Rushton turbines, gas flow number Q has no effect on Ne, at very high values of viscosity, while at low and relatively high viscosity values a small effect of Q on Ne can be detected. As observed for the dual Rushton turbine systems, Ne is also not affected by Q for the corresponding pitched blade systems at very high viscosity values. Flow number Q does not significantly affect the Newton number for the water-glycerol solutions with a relatively high viscosity agitated by dual pitched blade turbines, while for the aerated water systems a decrease of Ne can be observed at relatively small gas flow numbers; high values of Q do not affect the Newton number.
机译:比较研究了由双Rushton型和双节距叶片式涡轮机搅动的无充气和充气式气液接触器中功率消耗对叶轮间距的依赖性以及与气体流速和粘度的关系。在自来水中,两个Rushton叶轮独立作用的距离大于Delta H = 1.65d,而在甘油溶液中,叶轮独立作用的叶轮间距等于1.20d。对于自来水,两个变桨叶轮的相应值分别为1.50d,相对高粘度的1.07d和非常高粘度的0.53d。对于双Rushton涡轮机系统,牛顿数Ne随着粘度的增加而降低,而对于相应的变桨叶片系统,随着粘度的增加,可以观察到Ne的增加。对于双Rushton涡轮机,在非常高的粘度值下,气体流量Q对Ne没有影响,而在较低和相对较高的粘度值下,可以检测到Q对Ne的影响很小。如对于双Rushton涡轮机系统所观察到的,Ne不受相应的变桨叶片系统在非常高的粘度值下的Q的影响。对于双桨叶片式涡轮搅拌的具有相对较高粘度的水甘油溶液,流量数Q不会显着影响牛顿数,而对于充气水系统,在相对较小的气体流量下可以观察到Ne的减少。 Q的高值不会影响牛顿数。

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