推元件几何形状对表面处理池推拉式通风系统捕集效率的影响。

F. Marzal, E. González, A. Miñana, A. Baeza
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引用次数: 18

摘要

设计了一个模拟具有推拉式通风系统的表面处理槽的全尺寸装置。本研究考察了推动元件的几何形状对系统捕获效率的影响。结果表明:(1)由于形成连续幕,捕集效率随孔数的增加而增加,孔的大小在研究范围内(5 ~ 20 mm直径)对捕集效率无显著影响;(ii)推动元件最好支撑在罐壁上,这样外部的空气就不会渗透到喷射器下面,因为这样幕帘对罐的冲击发生得更早,损失也更小;(iii)当孔以22至45度的角度向下指向罐面时,效果最好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of push element geometry on the capture efficiency of push-pull ventilation systems in surface treatment tanks.
A full-scale installation which simulates a surface treatment tank provided with a push-pull ventilation system has been designed. This study examines the influence of the geometry of the push element on the capture efficiency of the system. It is observed that: (i) capture efficiency increases with the number of holes because of the continuous curtain formed, the size of the holes having no significant effect within the range studied (5-20 mm diameter); (ii) the push element is best supported on the tank wall so that no air from outside penetrates below the emitting jets because in this way the impact of the curtain on the tank occurs earlier and losses are less; (iii) the best results are obtained when the holes are directed downwards towards the tank surface at an angle of between 22 and 45 degrees.
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