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烟草垄体分层施肥土壤镇压试验与肥料颗粒偏移分析
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作者 裴宜坤 宋强龙 +6 位作者 陈雪婷 夏月庆 陈永 汤胜美 马少帅 刘新萍 张秀丽 《河南农业大学学报》 CAS CSCD 北大核心 2024年第4期654-662,共9页
【目的】研究烟草起垄分层施肥镇压复合作业时,镇压压强P与土壤下陷量B的关系、土壤下陷量B与据表层150 mm处的土壤坚实度M的关系及土壤内部肥料颗粒的偏移情况,为镇压装置与分层施肥装置关键结构的设计提供理论基础。【方法】通过改变... 【目的】研究烟草起垄分层施肥镇压复合作业时,镇压压强P与土壤下陷量B的关系、土壤下陷量B与据表层150 mm处的土壤坚实度M的关系及土壤内部肥料颗粒的偏移情况,为镇压装置与分层施肥装置关键结构的设计提供理论基础。【方法】通过改变施加载荷的大小进行镇压试验,测量垄体表层土壤下陷量B和距离表层150 mm处的土壤坚实度M,获得P-B曲线和B-M曲线,根据烟草移栽农艺要求确定土壤下陷量B和压强P的范围。通过EDEM仿真,得到土壤镇压作业时内部颗粒的偏移情况。【结果】得到了在符合作物生长需求的条件下,镇压产生的土壤下陷量B的范围为5~33 mm,相应施加在土壤表面的压强P为5~23 kPa;在土壤下陷量B为25 mm时,分层施肥肥料颗粒向下偏移量分别为20.2、15.1、7.7、4.8 mm,与镇压试验结果误差为10.0%~14.6%。最后通过田间试验进行验证。【结论】根据土壤压缩及内部颗粒偏移规律设计分层施肥镇压装置,垄内分层施肥深度稳定,整形效果良好,可为镇压装置及垄内分层施肥装置的设计提供参考。 展开更多
关键词 烟草垄体 镇压试验 土壤下陷量 分层施肥 镇压装置
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Bounding surface model for ballast with additional attention on the evolution of particle size distribution 被引量:13
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作者 SUN YiFei XIAO Yang JU Wen 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第7期1352-1360,共9页
Particle size distribution significantly influences the mechanical response of the ballast under low confining pressure.However,particle breakage usually occurs and unfavorably degrades the particle size distribution ... Particle size distribution significantly influences the mechanical response of the ballast under low confining pressure.However,particle breakage usually occurs and unfavorably degrades the particle size distribution of the ballast when sufficient load is applied.To model the triaxial stress-strain behavior and its associated evolution of particle size distribution of the ballast,a specific bounding surface model is proposed.The proposed model is based on the traditional bounding surface plasticity and a modified particle breakage index,which correlates the initial gradation and the ultimate gradation together with the current gradation.Simulation of the experimental results from the triaxial compression tests shows that the proposed model can predict the strain softening and volumetric expansion of the ballast under relatively lower confining pressure.It is also able to simulate the strain hardening and volumetric compression of the ballast under relatively higher confining pressure.Most importantly,the proposed approach was observed to have a great potential in predicting the evolution of the particle size distribution of the ballast. 展开更多
关键词 bounding surface BALLAST particle breakage particle size distribution triaxial test
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