[ 1 ] 彭晓琴, 徐一, 万勇, 等. 凉山州苦荞种植业发展现状及建议[J]. 现代农业科技, 2022(20): 184-187.
[ 2 ] 徐一, 彭晓琴, 邱云桥. 布拖县苦荞产业发展情况调研报告[J]. 四川农业与农机, 2021(1): 44-45.
[ 3 ] 张思维, 李东梅, 孙建云, 等. 4种杂粮的营养价值与保健功能概述[J]. 农业科技与信息, 2022(24): 80-85.
[ 4 ] Kazumi N, Yusuke Y, Hitoshi K, et al. Physicochemical and functional properties of buckwheat (Fagopyrum esculentum Moench) albumin [J]. Future Foods, 2022, 6: 100178.
[ 5 ] Xabier S M G, Jon M A, Usue P L. Could buckwheat and spelt be alternatives to wheat under future environmental conditions study of their physiological response to drought [J]. Agricultural Water Management, 2023, 278: 108176.
[ 6 ] 李霖霖. 谷子、荞麦籽粒群力学特性试验研究与离散元仿真分析[D]. 晋中: 山西农业大学, 2020.
[ 7 ] 王强. 齿带式荞麦捡拾试验平台的设计与试验研究[D]. 杨凌: 西北农林科技大学, 2018.
[ 8 ] 茹孟菲. 荞麦内充种离心式排种器的设计研究[D]. 晋中: 山西农业大学, 2020.
[ 9 ] 李登. 基于离散单元法的荞麦排种器设计与研究[D]. 重庆: 西南大学, 2018.
[10] 卜一, 唐超, 李尽朝, 等. 大垄双行荞麦播种机的研制[J]. 干旱地区农业研究, 2016, 34(3): 281-284, 290.
[11] 梅林森, 赵帮泰, 郭曦, 等. 高寒山区荞麦机械化播种装备及技术研究[J]. 四川农业科技, 2019(2): 37-39.
[12] 高子洋. 燕麦荞麦小区播种机的设计与研究[D]. 晋中: 山西农业大学, 2021.
[13] 程玉明. 荞麦穴播机的设计与试验[D]. 杨凌: 西北农林科技大学, 2021.
[14] 李明生, 叶进, 李登, 等. 基于离散单元法的荞麦播种机排种器设计与试验[J]. 西南大学学报(自然科学版), 2019, 41(4): 78-85.
Li Mingsheng, Ye Jin, Li Deng, et al. Design and test of a seed metering device for buckwheat seeder based on the discrete element method [J]. Journal of Southwest University (Natural Science Edition), 2019, 41(4): 78-85.
[15] 向达兵, 邹亮, 彭镰心, 等. 适宜机播深度及覆土厚度提高苦荞幼苗素质[J]. 农业工程学报, 2014, 30(12): 26-33.
Xiang Dabing, Zou Liang, Peng Lianxin, et al. Appropriate mechanical sowing depth and soil‑covering thickness improving seedling quality of tartary buckwheat [J]. Transactions of the Chinese Society of Agricultural Engineering, 2014, 30(12): 26-33.
[16] Kamgar S, Noei‑Khodabadi F, Shafaei S M, Design, development and field assessment of a controlled seed metering unit to be used in grain drills for direct seeding of wheat [J]. Information Processing in Agriculture, 2015, 2(3-4): 169-176.
[17] 聂秀展, 于艳, 江景涛, 等. 花生精量播种漏播检测及补偿系统设计与试验[J]. 青岛农业大学学报(自然科学版), 2020, 37(2): 140-145.
Nie Xiuzhan, Yu Yan, Jaing Jingtao, et al. Design and experiment of miss‑seeding detection and reseeding system for peanut precision sower [J]. Journal of Qingdao Agricultural University (Natural Science), 2020, 37(2): 140-145.
[18] Xi Xiaobo, Gao Wenjie, Gu Chenjia, et al. Optimisation of no‑tube seeding and its application in rice planting [J]. Biosystems Engineering, 2021, 210: 115-128.
[19] 赵晓顺, 赵达卫, 闫青, 等. 基于模糊PID的电控精量播种系统与试验研究[J]. 河北农业大学学报, 2021, 44(1): 120-127.
[20] 徐亮, 肖平, 马伟, 等. 基于ANSYS的收割机割台模态分析及结构优化设计[J]. 新乡学院学报, 2021, 38(12): 58-62.
[21] 金诚谦, 刘岗微, 倪有亮, 等. 基于MBD-DEM耦合的联合收获机割台仿形机构设计与试验[J]. 农业工程学报, 2022, 38(2): 1-10.
Jin Chengqian, Liu Gangwei, Ni Youliang, et al. Design and experiment of header profiling mechanism for combine harvester based on MBD-DEM coupling [J]. Transactions of the Chinese Society of Agricultural Engineering, 2022, 38(2): 1-10.
[22] 赵景涛. 荞麦联合收割机割台的设计与仿真[D]. 晋中: 山西农业大学, 2019.
[23] 刘青山, 李川, 魏新华, 等. 基于LQR的联合收割机割台高度控制研究[J]. 电子测量与仪器学报, 2022, 36(4): 65-72.
[24] Ni Youliang, Jin Chengqian, Chen Man, et al. Computational model and adjustment system of header height of soybean harvesters based on soil‑machine system [J]. Computers and Electronics in Agriculture, 2021, 183: 105907.
[25] Ruan Mingjian, Jiang Hanlu, Zhou Haili, et al. Design and test of automatic control system for header height of combine harvester [J]. Agricultural Engineering, 2022, 3(68): 569-578.
[26] 尤兴芹, 王国强, 单宇, 等. 收获机械智能割台预收集装置及信息管理系统设计[J]. 现代农业科技, 2022(20): 103-107.
[27] 倪国庆, 朱金光, 焦中元, 等. 影响谷物收割机脱粒分离能力的要素分析与探讨[J]. 农业机械, 2018(3): 84-87.
[28] Wang Jiawei, Li Zhiwei, Hussain S, et al. Design and threshing outputs study of internal and external rotary roller buckwheat thresher [J]. Inmateh‑Agricultural Engineering, 2020, 60(1): 173-182.
[29] 樊荣, 崔清亮, 卢琦, 等. 风筛式清选装置筛下物料分布规律研究[J]. 中国农机化学报, 2023, 44(1): 142-151.
Fan Rong, Cui Qingliang, Lu Qi, et al. Study on distribution law of materials under sieve in air‑and‑screen cleaning device [J]. Journal of Chinese Agricultural Mechanization, 2023, 44(1): 142-151.
[30] 张龙祥. 基于FLUENT-EDEM耦合的荞麦收获机清选装置研究设计[D]. 成都: 成都大学, 2020.
[31] 荆谊. 荞麦联合收割机清选装置的运动仿真分析与优化[D]. 晋中: 山西农业大学, 2019.
[32] 黄颖石. 荞麦旋风分离清选试验平台设计与试验研究[D]. 杨凌: 西北农林科技大学, 2021.
[33] 黄小娜, 张卫国, 党威龙, 等. 荞麦收获机械研究现状及发展趋势[J]. 农业机械, 2018(10): 84-90.
|