全秸硬茬地小麦播种机碎秸导流装置参数设计与优化
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江苏省农业科技自主创新资金子项目(CX(17)1002-03)。


Design and optimization for smashed straw guide device of wheat clean area planter under full straw field
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    摘要:

    针对中国稻麦轮作区小麦播种时,存在田间秸秆量大和茬口紧等影响小麦播种的问题,提出可直接在全秸硬茬地作业的小麦"洁区"宽幅播种农艺模式,并基于种带无播种秸障、碎秸行间条覆的技术思路设计相应的碎秸导流装置。通过理论分析作业时碎秸下抛及与碎秸导流装置滑切耦合的运动规律,以清秸率和种带宽度变异系数为目标函数,确定影响目标函数的主要结构参数。结合Box-Benhnken中心组合试验方法和EDEM离散元仿真技术对影响碎秸导流装置作业性能的参数进行虚拟试验,利用Design-Expert软件分析因素对碎秸导流装置作业性能的影响,确定最佳参数组合,并通过田间对比试验验证该装置的作业性能。试验结果表明: 各因素对碎秸导流装置清秸覆秸性能有显著影响,其对清秸率影响的主次顺序依次为装置导流宽度、装置导流长度、径向距离,对种带宽度变异系数影响的主次顺序依次为装置导流长度、径向距离、装置导流宽度;最佳参数组合设计为装置导流长度300 mm、径向距离19 mm和装置导流宽度298 mm,其对应指标清秸率为91.83%,种带宽度变异系数为10.36%,其田间试验对应指标清秸率为90.75%,种带宽度变异系数为10.94%,仿真与田间试验结果基本吻合。研究结果可为全秸硬茬地的小麦机播作业提供技术与装备支持,亦可为碎秸行间集覆还田的碎秸导流装置参数优化提供参考。

    Abstract:

    The rice-wheat alternate planting system is the main grain production model in most areas of China which has a great significance to ensure food security in China. The wheat sowing season after the rice harvest is relatively short, combined with the complexity of the traditional wheat planting process, which not only result in the higher sowing costs, but also fails to complete all works during the wheat sowing season. . Seeding directly in the field without straw treatment is an effective way to avoid the aforementioned problems. However, the following issues often occur during the application: for example, the soil-buried parts of the machine are blocked by grass which can't guarantee the steady operation; a large amount of straw is mixed into the soil which will take the seeds outside the soil and lead to the seeds exposed. To handle the above problems, this paper provided a new sowing method and an efficient guiding device, which adopted the planting technology in the full amount of straw and root stubble field. After the straw was pulverized, all the smashed straw could be placed on inter-rows by using the guiding device to form a sown strip containing few stalks, and the subsequent sowing operations could be completed on the strip. Through the theoretical analysis of the motion of the smashed straw, length of the diversion, radial distance and width of the diversion as key parameters affect the performance of the equipment were verified. The discrete element platform for simulating the operation of the device was established, and the platform mainly was composed of a pellet factory, a crushing device cover, a smashed straw guiding device and a soil trough. Based on the Box-Benhnken central composite test method and EDEM technique, the three-factor and three-level orthogonal rotating quadratic combination experiment was carried out with straw cleaned rate and variable coefficient of the strip width as the evaluation indexes. The influence of the three key parameters was analyzed. Furthermore, the regression equations were established to describe the relationships between the various factors and each assessment index by using the regression analysis and response surface analysis by software Design-Expert 8.0.6. The optimum combination of the selected parameters was obtained, and it was verified by numerical simulations and field trials. The experiment results indicated that various factors had a significant impact on straw cleaned rate and variable coefficient of the strip width. Depending on the order of significance of the impacts, the factors affecting straw cleaned rate were arranged as follows: width of the diversion, length of the diversion, radial distance. Likewise, the factors affecting variable coefficient of the strip width were arranged as follows: length of the diversion, radial distance and width of the diversion. The combination result of parameter optimum design was presented as follows: length of the diversion is 300 mm, radial distance is 19 mm and width of the diversion is 298 mm. The straw cleaned rate and the variable coefficient of the strip width were (91.83%, 10.36%) and (90.75%, 10.94%), which were determined through simulation experiment and field experiment respectively. Hence, the results of the two verification tests were basically consistent. The study should provide technical and equipment reference for no-tillage seeding of wheat after the rice harvest in the rice-wheat alternate season in China.

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罗伟文,胡志超,吴峰,顾峰玮,徐弘博,陈有庆.全秸硬茬地小麦播种机碎秸导流装置参数设计与优化[J].农业工程学报,2019,35(18):1-10. DOI:10.11975/j. issn.1002-6819.2019.18.001

Luo Weiwen, Hu Zhichao, Wu Feng, Gu Fengwei, Xu Hongbo, Chen Youqing. Design and optimization for smashed straw guide device of wheat clean area planter under full straw field[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE),2019,35(18):1-10. DOI:10.11975/j. issn.1002-6819.2019.18.001

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  • 收稿日期:2019-05-17
  • 最后修改日期:2019-07-03
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  • 在线发布日期: 2019-10-12
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