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    基于声波团聚技术的电厂水分回收实验研究

    Experimental study of water recovery in power plants based on acoustic agglomeration technology

    • 摘要: 火力发电是高耗水行业,存在水资源大量浪费的现象。声波团聚作为一种颗粒物聚集技术,可用于电站烟气及冷却塔水分回收领域。基于声场作用下促进液滴团聚的技术,开展相关实验研究,通过探索频率、液滴初始浓度以及声压级对液滴团聚效果的影响。结果表明:相同声压级条件下,500 Hz和1 000 Hz的声波作用,均可取得良好的团聚效果。分析认为上述2频率均会产生驻波,提高声波团聚效率。而1 000 Hz声波所产生的驻波,受声衰减的影响较大,液滴粒径增大效果较差,因此在500 Hz下的团聚效果优于1 000 Hz;液滴初始浓度的增大表明单位体积内液滴数目越多,声波的扰动可以明显增大液滴颗粒的碰撞概率,促进团聚;随着声压级从120 dB增加到150 dB,液滴声波团聚的粒径不断增大,团聚效果明显增强。研究结果在一定程度上对于声波团聚技术在电站尾部烟道和冷却塔水分回收领域具有重要指导意义。

       

      Abstract: Thermal power generation is a high water-consuming industry and there is a large waste of water resources. As a technology for particle aggregation and removal, the acoustic wave agglomeration technology can be used in the field of flue gas or cooling tower water recovery in power stations. On the basis of the technology of promoting droplet agglomeration under the action of acoustic field, relevant experimental research is carried out to explore the effects of frequency, initial concentration of droplets and sound pressure level on the effect of droplet agglomeration. The results show that under the same conditions of sound pressure level, the sound waves of 500 Hz and 1 000 Hz can achieve better effect of agglomeration than other conditions. It is analyzed that the above two frequencies will generate standing waves, which will increase the efficiency of acoustic wave agglomeration. The standing wave generated by the sound wave at 1 000 Hz is more affected by the sound attenuation, and the effect of droplet particle size increase is poorer, so the effect of agglomeration at 500 Hz is better than that at 1 000 Hz. The increase in the initial concentration of droplets indicates that the more the number of droplets per unit volume, and the perturbation of the sound wave can obviously increase the probability of collision of droplet particles and promote the agglomeration. With the increasing of the sound pressure level from 120 to 150 dB, the particle size of droplet acoustic wave agglomeration is better than that at 500 Hz. And at the same time, the increase in the initial concentration of droplets indicates that the number of droplets per unit volume is greater. With the sound pressure level increases from 120 to 150 dB, the particle size of droplet acoustic agglomeration increases, and the effect of agglomeration is obviously enhanced. The results of the study to a certain extent for the acoustic agglomeration technology in the field of power station tail flue and cooling tower moisture recovery is of great significance.

       

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