Research of the windrow formation process of the non-grain part of the corn and sunflower crop during harvesting for energy purposes

A. Kuzmych, M. Aneliak, O. Hrytsaka
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引用次数: 1

Abstract

Annotation Purpose. Improving the harvesting efficiency of the non-grain part of the corn and sunflower crops for energy purposes by substantiation of technical means for the forming the windrows with increased linear mass. Methods. Analysis of technological processes of harvesting the non-grain part of the crop (NGP) of corn and sunflower, mathematical modeling of material distribution and the windrow formation of the non-grain part of the crop. Results. The analysis of harvesting technological processes of corn and sunflower NGP is carried out. The way of harvesting of the NGP which has passed through a combine thresher into the trailed hopper with the increased running weight windrow formation on the field edge is proved. The dependences of the sheer force of the crushed layer of the NGP by the vertical wall of the combine harvester's trailed hopper are obtained analytically. Numerical simulation of material distribution and windrow formation of the NGP was performed. The constructional-technological scheme and parameters of the trailed hopper-windrower of the combine harvester are substantiated. Conclusions. The efficiency of harvesting the NGP of corn and sunflower for energy purposes can be improved by collecting the crushed mass passing through the combine thresher into a trailed hopper and forming the windrows with increased linear mass at the edge of the field for drying out and subsequent lifting by serial balers. The structural and technological scheme of a trailed hopper-windrower for a combine with a folding conveyor has been developed based on the results of simulation the processes of moving the stalk masses of the NGP of corn and sunflower. It was found that, the windrow formation process proceeds stably when the height of the crushed material of the NGP of corn and sunflower in the hopper chamber is within 2.0–2.2 m, with the angle of inclination of the discarding conveyor to the vertical within 8–15 deg and the speed it movement within 3–4 m/s. Keywords: non-grain part of the crop of corn and sunflower, harvesting of non-grain part of the crop, windrow formation.
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以能源为目的,研究玉米和向日葵作物收割时非籽粒部分的成窗过程
AnnotationPurpose。采用增加线质量的窗形成技术手段,提高玉米和向日葵能源作物非籽粒部分的收获效率。对玉米和向日葵非粒部作物收获工艺过程进行了分析,并对非粒部作物的物料分布和窗口形成进行了数学建模。对玉米、向日葵NGP的收获工艺流程进行了分析。证明了通过联合脱粒机进入拖尾料斗的玉米收获方式,并在田间边缘形成了增加运行重量的窗口。分析了联合收割机拖尾料斗垂直壁对破碎层的绝对力的依赖关系。对NGP的材料分布和窗口形成进行了数值模拟。确定了联合收割机拖尾斗风机的结构工艺方案和参数。通过将粉碎的质量通过联合脱粒机收集到拖尾料斗中,并在田地边缘形成线性质量增加的窗口,用于干燥和随后由系列打捆机提升,可以提高玉米和向日葵的NGP收割效率。根据对玉米和向日葵籽粒秸秆质量移动过程的仿真结果,提出了带折叠输送机的联合收割机拖尾斗风机的结构和工艺方案。研究发现,当玉米、向日葵NGP破碎物料在料仓内的高度在2.0 ~ 2.2 m范围内,出料输送机的倾斜角在8 ~ 15°范围内,出料输送机的运动速度在3 ~ 4 m/s范围内,出料窗形成过程较为稳定。关键词:玉米、向日葵非粒部作物;非粒部作物收获;
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