陶桂香, 衣淑娟, 汪 春, 毛 欣. 基于高速摄像技术的水稻钵盘精量播种装置投种过程分析[J]. 农业工程学报, 2012, 28(26): 197-201.
    引用本文: 陶桂香, 衣淑娟, 汪 春, 毛 欣. 基于高速摄像技术的水稻钵盘精量播种装置投种过程分析[J]. 农业工程学报, 2012, 28(26): 197-201.
    Tao Guixiang, Yi Shujuan, Wang Chun, Mao Xin. Analysis on dropping processing of precision sowing device in rice seeding bowl by high-speed photography[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(26): 197-201.
    Citation: Tao Guixiang, Yi Shujuan, Wang Chun, Mao Xin. Analysis on dropping processing of precision sowing device in rice seeding bowl by high-speed photography[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(26): 197-201.

    基于高速摄像技术的水稻钵盘精量播种装置投种过程分析

    Analysis on dropping processing of precision sowing device in rice seeding bowl by high-speed photography

    • 摘要: 摘要:为揭示水稻钵盘精量播种装置投种过程,以水稻钵盘精量播种装置为研究对象,借助高速摄像技术对稻种投种过程和稻种的运动方式进行了观察,通过分析可知,稻种在运动中伴有自转、偏转等现象,运动轨迹符合二次曲线,垂直速度随时间增加而非线性增加,经拟合符合Yield Density模型;稻种水平位移与垂直位移有关。综合考虑投种率和投种效率,确定了垂直位移最大值为31 mm。该结果为提高播种装置的投种率提供理论依据。

       

      Abstract: In order to uncover the dropping processing of precision sowing device in rice seeding bowl, the process of dropping and motion manner of rice by the assembled of rice bowl dish precision sowing device was photographed on line by the high-speed photography. By observing and analyzing the reproduction of the photographed pictures, there exist different types of rice movement such as rotation, deflection etc. The trajectory is the quadratic curve, the vertical velocity increases with time but not increase by linear, by fitting the model in line with Yield Density, rice seed horizontal displacement are related to vertical displacement. Considering the rate and efficiency of dropping, 31 mm is determined as the maximum of the vertical displacement. The results provide the theoretic foundation for the dropping rate of precision sowing device in rice seeding bowl.

       

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