[1] 刘俊, 晁无疾, 亓桂梅, 等. 蓬勃发展的中国葡萄产业[J]. 中外葡萄与葡萄酒, 2020(1): 1-8.
Liu Jun, Chao Wuji, Qi Guimei, et al. Booming development of Chinese grape industry [J]. SinoOverseas Grapevine & Wine, 2020(1): 1-8.
[2] 国家统计局农村社会经济调查司. 中国农村统计年鉴2020[M]. 北京: 中国统计出版社, 2020.
[3] 李小红, 李运景, 马晓青, 等. 我国葡萄产业发展现状与展望[J]. 中国南方果树, 2021, 50(5): 161-166.
[4] 马德英, 马俊义, 王惠卿, 等. 新疆葡萄重大病虫害发生规律及绿色防控技术[J]. 新疆农业科学, 2010, 47(11): 2245-2251.
Ma Deying, Ma Junyi, Wang Huiqing, et al. The occurrence regularity of pests and diseases of grapes and key control techniques at green food level in Xinjiang [J]. Xinjiang Agricultural Sciences, 2010, 47(11): 2245-2251.
[5] 段长青, 刘崇怀, 刘凤之, 等. 新中国果树科学研究70年——葡萄[J]. 果树学报, 2019, 36(10): 1292-1301.
Duan Changqing, Liu Chonghuai, Liu Fengzhi, et al. Fruit scientific research in New China in the past 70 years: Grape [J]. Journal of Fruit Science, 2019, 36(10): 1292-1301.
[6] 闻桢杰, 邱威, 张镇涛, 等. 一种用于改善篱架型葡萄树雾滴沉积的隧道对流式风送施药技术[J]. 农业工程技术, 2022, 42(9): 100.
Wen Zhenjie, Qiu Wei, Zhang Zhentao, et al. Tunnelconvective airassisted spraying technology for improving droplet deposition on hedgerow vines [J]. Agricultural Engineering Technology, 2022, 42(9): 100.
[7] 唐永清, 苏铁峰, 夏劲松. 伊犁河谷葡萄植保机械应用浅析[J]. 新疆农机化, 2014(5): 24-25.
[8] 张付春, 钟海霞, 郝敬喆, 等. 新疆葡萄园机艺融合现状及需求分析[J]. 中外葡萄与葡萄酒, 2021(2): 60-67.
Zhang Fuchun, Zhong Haixia, Hao Jingzhe, et al. Status and demand analysis of integration of agricultural machinery and technology of vineyard in Xinjiang [J]. SinoOverseas Grapevine & Wine, 2021(2): 60-67.
[9] 刘来馨. 酿酒葡萄基地标准化生产技术研究[D]. 泰安:山东农业大学, 2008.
Liu Laixin. Study on standardization production technologies of wine grapes base [D]. Taian: Shandong Agricultural University, 2008.
[10] 张德学, 张军强, 李青江, 等. 我国葡萄全程机械化应用现状及发展展望[J]. 农业装备与车辆工程, 2019, 57(3): 17-22.
Zhang Dexue, Zhang Junqiang, Li Qingjiang, et al. Current situation and development prospect of grape mechanization in China [J]. Agricultural Equipment & Vehicle Engineering, 2019, 57(3): 17-22.
[11] 李鑫, 曹少波, 杨欣, 等. 适于机械化作业的葡萄栽培技术规程研究[J]. 中国农机化学报, 2017, 38(2): 120-123.
Li Xin, Cao Shaobo, Yang Xin, et al. Cultivation technical regulations for grape suitable for mechanized operation [J]. Journal of Chinese Agricultural Mechanization, 2017, 38(2): 120-123.
[12] 唐永清, 屈荷丽, 王佳武. 3种植保机械葡萄叶面喷雾效果对比分析[J]. 新疆农垦科技, 2014, 37(11): 34-35.
[13] 周良富, 薛新宇, 周立新, 等. 果园变量喷雾技术研究现状与前景分析[J]. 农业工程学报, 2017, 33(23): 80-92.
Zhou Liangfu, Xue Xinyu, Zhou Lixin, et al. Research situation and progress analysis on orchard variable rate spraying technology [J]. Transactions of the Chinese Society of Agricultural Engineering, 2017, 33(23):80-92.
[14] 徐强. 葡萄虫害的高空喷药防治[J]. 中国果菜, 2016, 36(12): 66-68, 75.
Xu Qiang. Prevention and control technology of Erythroneura apicalis using aerial spraying [J]. China Fruit Vegetable, 2016, 36(12): 66-68, 75.
[15] 李嘉泓, 顾沛雯, 张龙. 极飞2017P20型植保无人机防治葡萄霜霉病飞控参数及防效研究[J]. 安徽农学通报, 2020, 26(7): 82-83, 100.
[16] 于金友, 孔辉, 兰玉彬, 等. 植保无人机飞行方向对篱架式作物施药总量及农药利用率的影响[J]. 中国农机化学报, 2020, 41(5): 53-57.
Yu Jinyou, Kong Hui, Lan Yubin, et al. Effect of plant protection UAV flight direction on total amount of pesticide application and pesticide utilization rate of fence crops [J]. Journal of Chinese Agricultural Mechanization, 2020, 41(5): 53-57.
[17] 任苗苗, 崔乐, 顾沛雯. 极飞2017P20型植保无人机防治葡萄白粉病飞控参数及防治效果研究[J]. 南方农业学报, 2020, 14(5): 140-142.
[18] 何雄奎. 中国精准施药技术和装备研究现状及发展建议[J]. 智慧农业, 2020, 2(1): 133-146.
He Xiongkui. Research progress and developmental recommendations on precision spraying technology and equipment in China [J]. Smart Agriculture, 2020, 2(1): 133-146.
[19] 徐丽明, 马帅, 刘星星, 等. 新疆葡萄生产机械化现状与发展趋势[J]. 新疆农机化, 2019(3): 10-13.
Xu Liming, Ma Shuai, Liu Xingxing, et al. Present situation and development trend of grape production mechanization in Xinjiang [J]. Xinjiang Agricultural Mechanization, 2019(3): 10-13.
[20] 马毅全, 王忠跃. 自走式葡萄专用喷雾机[P]. 中国专利: CN201020640752.1, 2011-09-07.
[21] 杜慎忠. 葡萄园药液回收式喷雾机的设计与试验研究[D]. 乌鲁木齐: 新疆农业大学, 2020.
Du Shenzhong. Design and experimental study of vineyard liquid recovery sprayer [D]. Urumqi: Xinjiang Agricultural University, 2020.
[22] 葛建华, 燕保龙. 东华牌3WZ系列自走式葡萄喷药机[J]. 农业机械(导购版), 2014(8): 35-37.
[23] 李超, 张晓辉, 姜建辉, 等. 葡萄园风送式喷雾机的设计与仿真分析[J]. 山东农业大学学报(自然科学版), 2012, 43(4): 555-558.
Li Chao, Zhang Xiaohui, Jiang Jianhui, et al. Design of airassisted vineyard sprayer and simulation analysis [J]. Journal of Shandong Agricultural University (Natural Science Edition), 2012, 43(4): 555-558.
[24] 王亮杰. 风送式葡萄园喷雾机的研制与试验[D]. 泰安:山东农业大学, 2015.
Wang Liangjie. Development and experiment of airassisted vineyard sprayer [D]. Taian: Shandong Agricultural University, 2015.
[25] 李龙龙, 何雄奎, 宋坚利, 等. 基于变量喷雾的果园自动仿形喷雾机的设计与试验[J]. 农业工程学报, 2017, 33(1): 70-76.
Li Longlong, He Xiongkui, Song Jianli, et al. Design and experiment of automatic profiling orchard sprayer based on variable air volume and flow rate [J]. Transactions of the Chinese Society of Agricultural Engineering, 2017, 33(1): 70-76.
[26] 董祥, 张铁, 燕明德, 等. 3WPZ-4型风送式葡萄喷雾机设计与试验[J]. 农业机械学报, 2018, 49(S1): 205-213.
Dong Xiang, Zhang Tie, Yan Mingde, et al. Design and experiment of 3WPZ-4 type airassisted grape sprayer [J]. Transactions of the Chinese Society for Agricultural Machinery, 2018, 49(S1): 205-213.
[27] 邱威, 孙浩, 孙玉慧, 等. 低矮果园环流式循环风送喷雾机设计与试验[J]. 农业工程学报, 2021, 37(6): 18-25.
Qiu Wei, Sun Hao, Sun Yuhui, et al. Design and test of circulating airassisted sprayer for dwarfed orchard [J]. Transactions of the Chinese Society of Agricultural Engineering, 2021, 37(6): 18-25.
[28] 钟伟. 气助式静电喷头和喷雾系统的设计与试验研究[D]. 镇江: 江苏大学, 2021.
Zhong Wei. Design and experimental study of airassisted electrostatic nozzle and sprayer system [D]. Zhenjiang: Jiangsu University, 2021.
[29] 闫成功, 徐丽明, 袁全春, 等. 基于双目视觉的葡萄园变量喷雾控制系统设计与试验[J]. 农业工程学报, 2021, 37(11): 13-22.
Yan Chenggong, Xu Liming, Yuan Quanchun, et al. Design and experiments of vineyard variable spraying control system based on binocular vision [J]. Transactions of the Chinese Society of Agricultural Engineering, 2021, 37(11): 13-22.
[30] 孙瑞红, 姜莉莉, 武海斌, 等. 葡萄施药机械选用及注意事项[J]. 落叶果树, 2020, 52(6): 61-63.
[31] 姜莉莉, 武海斌, 宫庆涛, 等. 两种喷雾机型在葡萄上的应用效果比较[J]. 落叶果树, 2020, 52(5): 25-28.
[32] 王胜永, 朱守卫. 徐州鲜食葡萄生产现状与产学研融合发展策略[J]. 现代园艺, 2019(16): 10-12.
[33] NY/T 3413—2019, 葡萄病虫害防治技术规程[S].
[34] T/CAMDA 13—2021, 北方露地葡萄机械化施药作业技术规范[S].
|