吉林大学学报(工学版) ›› 2024, Vol. 54 ›› Issue (4): 1153-1165.doi: 10.13229/j.cnki.jdxbgxb.20220687
• 农业工程·仿生工程 • 上一篇
Yuan-yi LIU1(),Sheng-jie YU1,Bei XU1,Xian-liang WANG1,Fa-cheng SONG2
摘要:
针对设施农业空间狭小,土壤病虫害严重,无法使用铧式犁深翻的问题,提出一种就地翻土解决办法。根据逆向工程得到就地翻土犁犁体逆向曲面,通过现有犁体成型原理,参照铧式犁犁体耕宽、耕深、犁体安装角、切土角、导曲线提升角、开度、犁体长度等参数,创设就地翻土犁犁体正向曲面;实测设施农业土壤相对湿度为34.57%、土壤堆积角为39°,通过EDEM软件中的接触参数数据库GEMM得到接触参数范围,标定土壤颗粒间表面能为4.19 J/m2、碰撞恢复系数为0.282、动摩擦因数为0.051、静摩擦因数为0.629,创设试验土槽;引入原沟落土率概念;构建原沟落土率与曲面参数间的相互作用模型,得到最佳原沟落土率曲面参数;利用Design-Expert软件进行分析,以原沟落土率为响应指标,使用Plackett-Burman试验设计方法开展多因素两水平显著性筛选试验,得到影响原沟落土率耕宽、犁铧安装角、切土角3个显著性因素;对3因素进行Box-Behnken试验设计,得到278.392 mm耕宽、40.522°犁铧安装角、23.211°切土角最佳设计参数。针对优化结果进行试验,得到试验结果与预测结果误差为3.13%,试验结果表明,所研究就地翻土犁可以达到就地翻垡的目的,并为解决设施农业内土壤深翻问题提供参考。
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