加入种子核对自然雾声团聚效率的影响

Chang Liu, Yun Zhao, Zhangfu Tian, Hefeng Zhou
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引用次数: 0

摘要

声凝聚是一种很有前途的人工影响天气技术。现有的声波雾耗散仿真和实验研究表明,达到理想集聚效果所需的时间基本在100秒甚至1000秒以上。消雾作业时效性差。本文基于粒子群平衡模型,模拟了自然雾条件下外粒核对声团聚的影响。仿真结果表明:大粒子群的加入对雾的消散有很大的促进作用。1)在原有液滴光谱范围之外添加大颗粒时,随着种核浓度的增加,团聚效率也随之提高,促进团聚率可达81.99%。2)当大颗粒粒径在原液滴谱范围内且种子核群浓度高于原浓度时,团聚效率随核浓度的增加而增加;当添加的种子核群浓度低于初始浓度时,存在一个最优浓度,为初始浓度的1/10。此时,添加的颗粒浓度较低,团聚时间缩短了近一半。3)小颗粒的添加对团聚没有明显的促进作用,且随着浓度的增加而减弱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of adding seed nuclei on acoustic agglomeration efficiency of natural fog
Acoustic agglomeration is a promising weather modification technology. The existing simulation and experimental studies on acoustic wave fog dissipation show that the time required to achieve the ideal agglomeration effect is basically 100 s or even 1000 s and above. The timeliness of fog dissipation operation is poor. Based on the particle population balance model, this paper simulated the effect of external seed nuclei on acoustic agglomeration under the condition of natural fog. The simulation results show: the addition of large particle swarm has a great promotion on fog dissipation. 1) When large particles are added beyond the original range of droplet spectrum, the agglomeration efficiency increases with the increase of seed nuclei concentration, and the agglomeration promotion rate can reach up to 81.99%. Complete agglomeration only need 2 min. 2) When large particle sizes are within the range of the original droplet spectrum and the concentration of the seed nuclei swarm is higher than the original concentration, the agglomeration efficiency increases with the increase of nuclei's concentration; When the concentration of the added seed nuclei swarm is lower than the original concentration, there exists an optimal concentration, which is 1/10 of the original concentration. At this time, the concentration of the added particles is low and the agglomeration time is reduced by nearly half. 3) The addition of small particles has no obvious promoting effect on agglomeration, and becomes weaker with the increase of concentration.
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