配比变量施肥中多肥料掺混模拟与掺混腔结构优化
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国家自然科学基金资助项目 (31101461)、山东省自然科学基金资助项目(ZR2012CM035)和山东科技发展计划资助项目(2013GNC11203)和山东现代农业产业技术体系棉花创新团队资助项目(SDAIT-07-011-10)


Simulation of Multi-fertilizers Blending Process and Optimization of Blending Cavity Structure in Nutrient Proportion of Variable Rate Fertilization
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    摘要:

    提出3种配比变量施肥中掺混腔结构设计方案,应用散粒体离散元法对多种肥料颗粒的排肥、掺混和撒播过程进行了数值模拟,分析了多肥料掺混特性和掺混腔的不同结构对颗粒掺混均匀度的影响。计算结果及机理分析表明:掺混腔碰撞壁面形状影响颗粒碰撞后的反弹角度与水平速度分量,两者又进而影响碰撞后颗粒在掺混腔中的散布面积;设计的B型掺混腔结构能得到最佳的掺混均匀度;当掺混颗粒流量增加时,多肥料掺混均匀度也相应提高。

    Abstract:

    The blending process of granular multi-fertilizer flows in the nutrient proportion of variable rate technology (NPVRT) lacks mechanism research at present, and the blending cavity structure is the most important factor influencing blending uniformity of a variety of fertilizer. In this paper, using discrete element method, a variety of granular fertilizer, blending and seeding process based on three different blending cavity designs are simulated, and then the multi-fertilizers blending process and its uniformity characteristics are analyzed under three different structures. The computing results and mechanism analysis show that the collision wall shape of blending cavity affects rebound angle and horizontal velocity after particle collision, and both of factors affect the dispersed area of post-collision particles in the blending cavity. B type of blending cavity structure ensures optimum blending uniformity. When fertilizing flow increases, the fertilizer blending uniformity also increases accordingly.

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苑进,刘勤华,刘雪美,张疼,张晓辉.配比变量施肥中多肥料掺混模拟与掺混腔结构优化[J].农业机械学报,2014,45(6):125-132. Yuan Jin, Liu Qinhua, Liu Xuemei, Zhang Teng, Zhang Xiaohui. Simulation of Multi-fertilizers Blending Process and Optimization of Blending Cavity Structure in Nutrient Proportion of Variable Rate Fertilization[J]. Transactions of the Chinese Society for Agricultural Machinery,2014,45(6):125-132.

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  • 收稿日期:2013-07-31
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  • 在线发布日期: 2014-06-10
  • 出版日期: 2014-06-10