[1] 曹秭琦, 任永峰, 路战远, 等. 油莎豆的特性及其开发利用研究进展[J]. 北方农业学报, 2022, 50(1): 66-74.
Cao Ziqi, Ren Yongfeng, Lu Zhanyuan, et al. Research progress on the characteristics and development and utilization of Cyperus esculentus [J]. Journal of Northern Agriculture, 2022, 50(1):66-74.
[2] 赵清来, 陈晓明, 许顺, 等. 油莎豆的应用价值及其播种和收获机的研究现状[J]. 农业技术与装备, 2022(1): 76-77, 80.
Zhao Qinglai, Chen Xiaoming, Xu Shun, et al. Application value and research status of its planter and harvester of Cyperus esculentus [J]. Agricultural Technology & Equipment, 2022(1): 76-77, 80.
[3] 陈惠宗. 油莎豆的特性及栽培技术[J]. 基层农技推广, 2016, 4(1): 97-98.
[4] 梁燕, 林志伟. 油沙豆种植价值及收获机械研究成果的推广[J]. 湖南农机, 2013, 40(9): 42-43.
Liang Yan, Lin Zhiwei. Oil sands soybean planting and harvesting machinery worth the promotion of research results [J]. Hunan Agricultural Machinery, 2013, 40(9): 42-43.
[5] 吴思荣, 刘涛. 油莎豆在静宁县引种试验表现[J]. 中国农技推广, 2009, 25(12): 14-15.
[6] 李志军, 王绛, 刘和, 等. 油莎豆产业发展现状及建议[J]. 现代农业科技, 2022(8): 225-231.
Li Zhijun, Wang Jiang, Liu He, et al. Status of development of Cyperus esculentus industry and its suggestion [J]. Modern Agricultural Science and Technology, 2022(8): 225-231.
[7] 王志成, 李双寿, 梁雄, 等. 中国油莎豆产业发展现状与前景展望[J]. 科技和产业, 2022, 22(1): 62-67.
Wang Zhicheng, Li Shuangshou, Liang Xiong, et al. Development status and prospect of Cyperus esculentus industry in China [J]. Science Technology and Industry, 2022, 22(1): 62-67.
[8] 张学昆. 我国油莎豆产业研发进展报告[J]. 中国农村科技, 2019(4): 67-69.
[9] 路战远, 刘和, 张建中, 等. 油莎豆产业发展现状、问题与建议[J]. 现代农业, 2019(6): 11, 13.
[10] 谢年保, 黄明星, 陈欣, 等. 油莎豆栽培技术及产业化开发[J]. 作物研究, 2005(2): 132-133.
[11] 邸志峰, 李青龙, 姜伟, 等. 油莎豆种植与收获机械技术装备研究现状[J]. 山西农业大学学报(自然科学版), 2022, 42(2): 96-106.
Di Zhifeng, Li Qinglong, Jiang Wei, et al. Research advance and perspective of Cyperus esculentus planting and harvesting machinery technology and equipment [J]. Journal of Shanxi Agricultural University (Natural Science Edition), 2022, 42(2): 96-106.
[12] 刘学敏, 刘志辉, 梁燕, 等. 基于模块化设计理念的多功能收获机开发[J]. 中国农机化, 2012(5): 47-50.
Liu Xuemin, Liu Zhihui, Liang Yan, et al. Development of multifunctional harvesting machine based on modular theory [J]. Chinese Agricultural Mechanization, 2012(5): 47-50.
[13] 张斌, 刘晶, 范仲学, 等. 盐碱地油莎豆机械化播种收获技术与装备研究进展[J]. 山东农业科学, 2019, 51(4): 144-148.
Zhang Bin, Liu Jing, Fan Zhongxue, et al. Research progresses of mechanical seeding and harvesting technology and equipment for salinealkali Cyperus esculentus [J]. Shandong Agricultural Sciences, 2019, 51(4): 144-148.
[14] 何晓宁, 张学军, 赵壮, 等. 基于离散元法的油莎豆降阻挖掘装置设计与试验[J]. 农业机械学报, 2021, 52(12): 124-133.
He Xiaoning, Zhang Xuejun, Zhao Zhuang, et al. Design and test of resistancereducing excavation device of Cyperus edulis based on discrete element method [J]. Transactions of the Chinese Society for Agricultural Machinery, 2021, 52(12): 124-133.
[15] 张红梅, 周正, 吕志军, 等. 油莎豆收获筛分机构运动学分析与试验[J]. 中国农机化学报, 2021, 42(10): 92-99.
Zhang Hongmei, Zhou Zheng, Lü Zhijun, et al. Kinematic analysis and testing of vibratory sieving mechanism for Cyperus esculentus L. harvester [J]. Journal of Chinese Agricultural Mechanization, 2021, 42(10): 92-99.
[16] 中国农业机械化科学研究院. 农业机械设计手册(下册)[M]. 北京: 中国农业科学技术出版社, 2007.
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