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Recent development of unmanned aerial vehicle for plant protection in East Asia 被引量:42
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作者 He Xiongkui Jane Bonds +1 位作者 Andreas Herbst Jan Langenakens 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2017年第3期18-30,共13页
Recently,the growing use of unmanned aerial vehicles(UAV)for pesticide application has been reported against a wide range of crops with promising results in East Asian countries such as Japan,South Korea and China.Thi... Recently,the growing use of unmanned aerial vehicles(UAV)for pesticide application has been reported against a wide range of crops with promising results in East Asian countries such as Japan,South Korea and China.This UAV-based application technology for agrochemicals is considered as a high efficiency alternative to the conventional manual spray operations and a low-cost choice as compared to the classical manned aerial application.However,the technology adoption rate and the designed optimal sprayer suitable for drone application for small scale farm remains at the development stage in China and also in Japan.This paper reports the current status of drone pesticide application in China and makes comparisons with its neighbor countries Japan and South Korea in terms of different UAV platforms and their implementation in plant protection for different crops.Challenges and opportunities for future development of UAV-based pesticide application technology are also discussed. 展开更多
关键词 plant protection UAV pesticide application RPA spray technology spray quality flight control agrochemical application
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农用喷头雾化粒径测试方法比较及分布函数拟合 被引量:27
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作者 王双双 何雄奎 +3 位作者 宋坚利 张录达 Gary J. Dorr Andreas Herbst 《农业工程学报》 EI CAS CSCD 北大核心 2014年第20期34-42,共9页
农药雾滴粒径是影响农药在靶标上的沉积量和分布均匀性的主要因素,测试方法和仪器很多。该文使用激光粒子图像分析测试系统(particle/droplet image analysis,PDIA)、Sympatec HELOS Vario激光衍射粒度分析仪和Spraytec实时喷雾粒度分析... 农药雾滴粒径是影响农药在靶标上的沉积量和分布均匀性的主要因素,测试方法和仪器很多。该文使用激光粒子图像分析测试系统(particle/droplet image analysis,PDIA)、Sympatec HELOS Vario激光衍射粒度分析仪和Spraytec实时喷雾粒度分析仪3种常用的雾滴粒径分析仪对ST喷头进行雾滴粒径测试,结果表明3种仪器测得的雾滴体积中径(VMD,volume median diameter)绝对结果有差异,但是与已有的喷头雾滴细度界限值相比,该文所用的不同仪器测量结果对相同喷头的定级相同。鉴于此,选用Spraytec对Lechler公司生产的IDK、TR和ST 3种类型、2个国标流量代号(02和03)的6种型号喷头在喷雾扇面内的VMD进行测试,基于最小二乘法对测试结果进一步分析拟合,得到VMD在喷雾扇面内分布规律的函数形式。回归拟合函数以位置信息(喷雾高度,水平位置)为自变量、VMD为因变量,经回归效果检验可知各函数F统计量皆大于其F临界值(α=0.05),且相关指数都大于0.8,表明该文中所得的拟合函数可以较准确地描述雾滴粒径分布规律,并较精确地预测出扇面中非测试点的雾滴粒径。这些拟合函数为进一步研究喷杆各喷头喷雾扇面叠合后的雾滴粒径分布提供了基础。 展开更多
关键词 喷头 雾化 粒径分析 测试方法比较 最小二乘法 回归拟合
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植保无人机低空低量施药雾滴沉积飘移分布立体测试方法 被引量:16
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作者 王志翀 Andreas Herbst +3 位作者 Jane Bonds 曾爱军 赵铖 何雄奎 《农业工程学报》 EI CAS CSCD 北大核心 2020年第4期54-62,共9页
随着植保无人机在中国的广泛使用,植保无人机的沉积分布均匀性与雾滴飘移流失也引起各方面的重视。目前,针对植保无人机施药雾滴沉积飘移的测试方法较少,且着重于从沉积或飘移中某一方面分析植保无人机雾滴沉积飘移规律,未对作业中全方... 随着植保无人机在中国的广泛使用,植保无人机的沉积分布均匀性与雾滴飘移流失也引起各方面的重视。目前,针对植保无人机施药雾滴沉积飘移的测试方法较少,且着重于从沉积或飘移中某一方面分析植保无人机雾滴沉积飘移规律,未对作业中全方位的雾滴的沉积飘失规律进行系统测试。该文基于国际标准ISO22866和ISO24253建了1套针对低空低量植保无人机的立体测试方法,分别在地面布置沉积和飘移收集器,在空中架设立体沉积和空中飘移收集器,结合航拍影像所获取的植保无人机准确作业参数,对4个型号植保无人机分别搭载德国Lechler公司的IDK120-015和TR80-0067喷头进行了测试,系统分析了无人机周边的总沉积以验证方法准确性,计算了总地面沉降以表征可利用部分和空中耗散以评估环境风险。结果表明,各植保无人机地面沉积率在53.6%~76.6%,地面飘移率最高17.4%,空中飘移率可高达14.7%;该测试系统可收集62.4%~101.7%无人机喷洒出的雾滴。测试的4种植保无人机在搭载IDK喷头后均明显降低了雾滴飘移,但也同时降低地面沉积率;各植保无人机在搭载2种喷头时沉积规律不同,不同植保无人机设计需要选择不同喷头。该测试方法能够有效的收集并分析植保无人机在作业区域的雾滴立体分布状态,可为植保无人机综合评估提供新的参考依据。 展开更多
关键词 农药 无人机 测试方法 立体分布 沉积 飘移
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Testing method and distribution characteristics of spatial pesticide spraying deposition quality balance for unmanned aerial vehicle 被引量:15
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作者 Changling Wang Xiongkui He +6 位作者 Xiaonan Wang Zhichong Wang Shilin Wang Longlong Li Jane Bonds Andreas Herbst Zhiguo Wang 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2018年第2期18-26,共9页
In order to explore the spatial pesticide spraying deposition distribution,the downwash flow field characteristics for unmanned aerial vehicle(UAV)pesticide application with accurate flight height and velocity and the... In order to explore the spatial pesticide spraying deposition distribution,the downwash flow field characteristics for unmanned aerial vehicle(UAV)pesticide application with accurate flight height and velocity and the relationship of these two aspects,a novel measurement method was proposed in this paper.A model‘3WQF80-10’single-rotor diesel UAV was tested using this method in wheat field and the effects of flight direction,flight parameters and crosswind on the distribution of spatial spraying deposition quality balance(SSDQB)and the downwash flow field distribution were researched.A cuboid aluminum sampling frame of spatial spraying deposition quality balance(SFSSDQB)with monofilament wires was made for collecting the droplets in four directions,and a set of multi-channel micro-meteorology measurement system(MMMS)was applied for measuring the downwash wind speed in three directions.Besides,BeiDou Navigation Satellite System(BNSS)was used for controlling and recording the working height,velocity and track of this model of single-rotor UAV.The results showed the distribution of the spatial spray deposition and the downwash flow field of UAV could be measured effectively at exact flight height and velocity via this method.When the average wind speed was 0.9 m/s,the average temperature was 31.5℃ and the average relative humidity was 34.1%,and the average distribution ratios of spraying deposition for model‘3WQF80-10’UAV on the upwind part,the top part,the downwind part and the bottom part were 4.4%,2.3%,50.4%and 43.7%,respectively.The flight directions of forward and backward had an impact on droplet deposition distribution and the working effect of flying backwards,with 60%of deposition ratio of the bottom part of the SFSSDQB,was better than flying forward.There was a linear negative correlation between the coefficient of variation(CV)of the bottom part and the flight height and the coefficient of determination was 0.9178,which means that the deposition distribution becomes more uniform with the increase of height.Additionally,there was a linear positive correlation between weighted mean deposition rate and crosswind speed and the coefficient of determination was 0.9684,which shows the deposition distribution gets more concentrated towards the downwind part with the rise of crosswind speed.Therefore,according to the results of tests of downwash airflow speed,it is shown that regardless of the flight direction and height and the crosswind,all these factors influence the droplet deposition distribution via weakening the intensity of the downwash airflow field in the direction perpendicular to the ground.The results can provide valuable information for the research of UAV pesticide application techniques and the establishment of the standard of spraying deposition and drift tests of UAV in crop field. 展开更多
关键词 unmanned aerial vehicle(UAV) spatial spraying deposition distribution downwind airflow flow field
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Dynamic evaporation of droplet with adjuvants under different environment conditions 被引量:3
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作者 Zhichong Wang Luchen Lan +1 位作者 Xiongkui He Andreas Herbst 《International Journal of Agricultural and Biological Engineering》 SCIE EI CAS 2020年第2期1-6,共6页
Pesticide droplet is evaporating during the falling from the nozzle to the target.This dynamic evaporation is influenced by ambient temperature,relative humidity(RH),adjuvant type and concentration.In the evaporation ... Pesticide droplet is evaporating during the falling from the nozzle to the target.This dynamic evaporation is influenced by ambient temperature,relative humidity(RH),adjuvant type and concentration.In the evaporation process,the droplet size at different height is affected by the droplet evaporation.Based on this,this study determined the droplet dynamic evaporation by collecting the droplets from different height via silicone oil method with a certain temperature and RH.Eight adjuvants were chosen,including three organo-silicon,three vegetable oil and two non-ionic,with five concentrations.All droplets were generated by a droplet generator.The results showed that the type of adjuvant,ambient temperature and RH had no significant influence on droplet size generated by droplet generator.All the adjuvants in this experiment cannot reduce dynamic evaporation;Concentration of adjuvant made a difference in dynamic evaporation.This could be because of the property of adjuvant.Organo-silicon adjuvants have a negative correlation with water vapor pressure,it showed less dynamic evaporation at high temperature and RH.Vegetable oil and non-ionic adjuvant,they are the same as the controlled blank that the dynamic evaporation reduces with decreasing temperature and increasing RH. 展开更多
关键词 pesticide droplet dynamic evaporation ADJUVANT temperature relative humidity
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