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作 者:吉鑫 崔银伟 Ji Xin;Cui Yinwei(Key Laboratory of Modern Agricultural Equipment and Technology,Ministry of Education,JiangsuUniversity,Zhenjiang 212013,China)
机构地区:[1]江苏大学现代农业装备与技术教育部重点实验室,江苏镇江212013
出 处:《农业装备技术》2019年第1期27-33,共7页Agricultural Equipment & Technology
基 金:江苏省重点研发计划(现代农业)资助项目(BE2018331)
摘 要:在PWM间歇喷雾式变量喷施系统中,流量变化会引起喷杆各管路中的压力损失的变化,电磁阀的快速启闭会在管路中形成液压冲击,致使各喷头的实际喷雾压力发生波动,导致其喷施流量和雾化特性出现畸变。为揭示其管路压力损失的变化特性和液压冲击特性,构建了一套PWM间歇喷雾式变量喷施系统,并对其进行了流体动力学分析,确定了不同喷雾流量下的管路药液流态,建立了压力损失和液压冲击的计算模型,分析了0.3 MPa设定喷杆压力下的管路压力损失变化范围和液压冲击幅度,并进行了实际试验测试。结果表明:在0.3 MPa设定喷杆压力下,同一喷头前端管路的压力损失的变化幅度可达140 kPa,不同喷头间的实际喷雾压力差异可达25 kPa,由于电磁阀快速启闭而引起的液压冲击幅值可达170 k Pa。In PWM-based intermittent spraying variable rate application system, duct pressure loss changes with the variation of flow rate, and hydraulic impact arises concomitantly with the close of solenoid valves, all these causes the fluctuation of spraying pressure which affected the actual spraying flow rate and spray characteristics of nozzles. In order to disclose the fluctuating mechanism of the spraying pressure, a PWM-based intermittent spraying variable rate application system was developed, and hydrodynamics analysis was carried out on it. Flow regime of the liquid in different flow rate was determined, computational models of the pressure loss and hydraulic impact were deduced, variation range of the pressure loss and amplitude of the hydraulic impact under 0.3 MPa boom set pressure were analyzed, and corresponding experiment testing were conducted. Test results showed that variation extent of the pressure loss for a nozzle was up to 140 kPa, differences of pressure loss between nozzles were up to 25 kPa, and hydraulic impact was up to 170 kPa under 0.3 MPa boom set pressure.
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