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The effects of acoustic flow and mechanical flow on the sonochemical efficiency in a rectangular sonochemical reactor

机译:矩形声波反应器中声流和机械流对声化学效率的影响

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摘要

Visualization of cavitation behavior in a rectangular sonochemical reactor at 490 kHz was carried out by a laser sheet technique and the distribution of liquid flow was measured by a laser Doppler velocimeter. The pattern of liquid flow and distribution of acoustic pressure of the rectangular sonochemical reactor were investigated as a function of the input power from 10 to 50 W. The liquid moved upward above the transducer at every power. As increasing the input power, the random flow out side the cylindrical part above the transducer changed into the convective one and the region of the visualized standing wave which was formed in the cylindrical part changed with the input power. The position showing the sonochemical luminescence exists inside or near the region where the standing wave was visualized. Introduction of a stirrer resulted in disturbance of liquid flow and expanded the position showing the sonochemical luminescence, but the luminescence intensity was weakened. The sonochemical efficiency was enhanced by about twice by introduction of the stirrer. From these results, we discussed the effects of liquid flow on sonochemical efficiency with and without a stirrer.
机译:通过激光薄片技术在矩形超声化学反应器中以490 kHz观察空化行为,并通过激光多普勒测速仪测量液体流量的分布。研究了矩形声化学反应器的液体流动模式和声压分布与输入功率(从10到50 W)的关系。在每种功率下,液体在换能器上方向上移动。随着输入功率的增加,从换能器上方的圆筒形部分随机流出的一侧变为对流,并且在圆筒形部分中形成的可视驻波的区域随输入功率而改变。表示声化学发光的位置存在于观察到驻波的区域内或附近。搅拌器的引入导致液体流动的干扰,并扩大了显示声化学发光的位置,但发光强度减弱了。通过引入搅拌器,声化学效率提高了约两倍。从这些结果,我们讨论了在有或没有搅拌器的情况下液体流量对声化学效率的影响。

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