旋转喷雾装置工作条件的变化对微细性能的影响

김형곤
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摘要

为了将旋转雾化器应用于农业喷雾系统,提出了电机直耦式旋转雾化器。研究了雾化空气流量、工作流体流量、旋转杯转速等工况对所设计的直接耦合旋转雾化器雾化性能的影响。使用交流变压器将电机转速控制在6,000至12,000 rpm的范围内,雾化空气由压缩机提供。本研究采用LDPA对旋转雾化器的喷雾特性进行了分析。D10、SMD、MMD、D90和DMax的代表粒径随雾化空气流量和电机转速的增加而减小,随工作液流量的增加而增大。影响SMD的顺序为雾化气流流量>电机转速>工作流体流量,影响DMax的顺序为工作流体供给>电机转速>雾化气流流量。
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회전 분무장치에서 작동조건의 변화가 미립화 성능에 미치는 영향
In order to apply rotary atomizer to agricultural spraying system, the motor direct coupled rotary atomizer was proposed. The effect of operating conditions such as atomizing air flow rate, working fluid flow rate, and rotation speed of spinning cup on the atomization performance was investigated for the proposed direct coupled rotary atomizer. The motor speed was controlled in the range of 6,000 to 12,000 rpm using an alternating current transformer, and the atomizing air was supplied by the compressor. In this study, LDPA was used to analyze the spray characteristics of the rotary atomizer. The representative particle diameters of D10, SMD, MMD, D90, and DMax tended to decrease as the atomizing air flow rate and the motor speed increased, but increased as the working fluid flow rate increased. Also, SMD was found to be influenced by order of atomizing air flow rate> motor speed> working fluid flow rate, and DMax was influenced by order of operating fluid supply> motor speed> atomizing air flow rate.
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