Design and Parametric Optimization Study of an Eccentric Parallelogram-Type Uprighting Device for Ratoon Rice Stubbles
文献类型: 外文期刊
作者: Shuaifeng Xing;Yang Yu;Guangqiao Cao;Jinpeng Hu;Linjun Zhu;Junyu Liu;Qinhao Wu;Qibin Li;Lizhang Xu
作者机构:
关键词: DEM-MBD analysis;ratoon rice;response surface methodology experiment;stubble uprighting
期刊名称: Agriculture (Switzerland)
ISSN: 2077-0472
年卷期: 2024 年 14 卷 4 期
页码:
收录情况: SCIE(2024版)
摘要: To address the issue of reduced yield in the second season caused by damaged stubbles resulting from being compressed during the harvesting process of the first season’s ratoon rice, a device for rectifying the compressed stubbles was designed. Utilizing the DEM-MBD coupling simulation method, a simulation analysis was conducted to determine the range of key parameters and verify the feasibility of the solution. Using rotational speed, forward speed, and stubble entry angle as experimental factors and stubble rectification rate and second-season yield as evaluation metrics, a three-factor, three-level Box–Behnken response surface field trial was conducted. The theoretically optimal working parameter combination was found to be a forward speed of 1.4 m/s, device rotational speed of 75 rpm, and stubble entry angle of 39°. Under these conditions, three parallel experiments were performed, resulting in a rectification rate of 90.35% in the mechanically harvested and compressed area and a second-season yield of 2202.64 ± 35 kg/hm2. The deviation from the numerical simulation results of parameter optimization was less than 5%. These findings suggest that the designed stubble rectification device for ratoon rice can meet the requirements of stubble rectification during the first-season harvest of ratoon rice. Furthermore, it provides valuable insights for reducing harvest losses in the first season and further improving the level of mechanized harvesting for ratoon rice.
分类号:
- 相关文献
作者其他论文 更多>>
-
Adaptive synchronous sliding mode levelling system for combine harvester considering track circumference: Co-simulation and experimental verification
作者:Jinpeng Hu;Maolin Shi;Tianle Ma;Peng Liu;Xiaoyu Chai;Guangqiao Cao;Lizhang Xu
关键词:Agricultural machinery;Hydraulic levelling system;Surrogate model;Synchronisation control;Track tension
-
Research on predictive control of a novel electric cleaning system for combine harvester based on data-driven
作者:Zhihao Zhu;Xiaoyu Chai;Lizhang Xu;Li Quan;Chaochun Yuan;Shuofeng Weng;Guangqiao Cao;Weijun Jiang
关键词:Adaptive MPC;Cleaning system;Combine harvester;Data-driven;Distributed electric drive
-
Adaptation of Diverse Maize Germplasm to Spring Season Conditions in Northeast China
作者:Yi Li;Zhiyuan Yang;Yong Shao;Zhenguo Jin;Li Gao;Yang Yu;Fengyi Zhang;Yuxing Zhang;Yuantao Nan;Mingshun Li;Degui Zhang;Zhuanfang Hao;Jianfeng Weng;Xinhai Li;Hongjun Yong
关键词:general combining ability;maize population;Northeast China;specific combining ability
-
The transcription factor TaWHY2-6A acts as a positive regulator in response to drought tolerance in transgenic plants
作者:Yang Yu;Conglei Wang;Xiao Zhang;Jianhe Wang;Mengting Li;Tianqi Song;Dan Liang;Gang Feng
关键词:Drought stress;Drought-resistant breeding;Wheat;WHY
-
A High Amount of Straw Pellets Returning Delays Maize Leaf Senescence, Improves Dry Matter Accumulation and Distribution, and Yield Increase in Northeast China
作者:Meng Cheng;Yiteng Zhang;Guoyi Lv;Yang Yu;Yubo Hao;Yubo Jiang;Linjing Han;Huancheng Pang;Feng Jiao;Chunrong Qian
关键词:dry matter accumulation and distribution;dry matter transport;leaf senescence;straw pellets
-
The long-term straw return resulted in significant differences in soil microbial community composition and community assembly processes between wheat and rice
作者:Siyuan Cui;Shangqi Xu;Guangqiao Cao;Xinkai Zhu
关键词:agricultural ecosystem;environmental factors;rice-wheat rotation;soil microbial communities;soil pH;straw return
-
Design and Experiment of Electric Control System for Self-Propelled Chinese Herbal Medicine Materials Transplanter
作者:Qingxu Yu;Xian Zhang;Guangqiao Cao;Yan Gong;Xiao Chen
关键词:electronic control system;fuzzy PID;herbal medicine materials;STM32;transplanter