首页> 外文期刊>Brazilian journal of chemical engineering >LIQUID FLOW IN IMPELLER SWEPT REGIONS OF BAFFLED AND UNBAFFLED VESSELS WITH A TURBINE-TYPE AGITATOR
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LIQUID FLOW IN IMPELLER SWEPT REGIONS OF BAFFLED AND UNBAFFLED VESSELS WITH A TURBINE-TYPE AGITATOR

机译:涡轮式搅拌机叶轮横掠区的液流

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Liquid flow in the impeller swept region of vessels with a turbine-type agitator was examined for the flow path between the neighboring blades of the rotating impeller. Visualization of the flow and its measurement were done using particle tracking velocimetry with a camera rotating along with the impeller. Internal liquid flow of the impeller differed when the velocity magnitudes were compared in conditions with and without baffles. Larger circumferential and radial velocities were observed without the baffles and with the baffles, respectively, which was considered to result in the difference of impeller power transmission. Efficiencies produced, based on the flow-head concept, reflected the impeller power characteristics. The turbine-type impeller as an actuator was demonstrated to improve in the flow characteristics with viscous losses increased by the baffles. In terms of impeller efficiencies based on the power consumption, the effect of baffles for the energy was as a decreased transmission and an increased transport.
机译:检查在具有涡轮式搅拌器的容器的叶轮扫掠区域中的液体流动,以寻找旋转叶轮的相邻叶片之间的流动路径。流量的可视化及其测量是通过使用粒子跟踪测速仪以及与叶轮一起旋转的摄像机进行的。在有挡板和无挡板的情况下比较速度大小时,叶轮的内部液体流量有所不同。分别在没有挡板和有挡板的情况下观察到较大的圆周速度和径向速度,这被认为导致叶轮动力传递的差异。基于流头概念产生的效率反映了叶轮功率特性。涡轮式叶轮作为执行器已被证明可以改善流动特性,而挡板会增加粘性损失。就基于功率消耗的叶轮效率而言,挡板对能量的影响是减少的传输和增加的传输。

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