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首页> 外文期刊>Computers and Electronics in Agriculture >Analyzing the mixing performance of a rotary spader using digital image processing and discrete element modelling (DEM)
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Analyzing the mixing performance of a rotary spader using digital image processing and discrete element modelling (DEM)

机译:使用数字图像处理和离散元素建模(DEM)分析旋转散热器的混合性能

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摘要

In order to incorporate a range of surface applied materials into the soil profile to ameliorate crop production constraints, rotary spaders have recently been adopted in Australia. However, no fundamental studies have been carried out to quantify the mixing ability of rotary spaders. The discrete element method (DEM) has the potential to model soil to rotary spader interaction in terms of soil movement. In this study a full scale rotary spader was tested in the field and then simulated using DEM. The DEM model predicted top soil burial to a similar depth in the soil profile as was measured in the field. A method to compare and quantify soil movement was also developed using digital image processing. The forward soil movement which was not examined in the field was also simulated using DEM and it was found that higher forward speed increases the bite lengths, and hence results a heterogeneous top soil mixing. It was also found that in order to carry out a proper analysis, both cross section and forward soil movement must be considered while quantifying the mixing ability of the rotary spader. The results of this study proves that (1) DEM can be used to model soil to rotary spader interaction to analyse different operation conditions without time consuming and costly field tests which can only be performed certain times of the year and (2) digital image processing can be used as a method to quantify and validate simulations of field experiments.
机译:为了将一系列表面应用材料纳入土壤轮廓以改善作物生产限制,最近在澳大利亚采用了旋转锭剂。但是,没有进行基本研究以量化旋转散射体的混合能力。离散元素法(DEM)具有模拟土壤在土壤运动方面对旋转散射互动的潜力。在这项研究中,在该领域中测试了全尺寸旋转锭器,然后使用DEM进行模拟。 DEM模型预测在土壤轮廓中埋入的顶部土壤,如图所示。使用数字图像处理开发了一种比较和量化土壤运动的方法。使用DEM模拟在该领域中未检查的前卫土壤运动,发现较高的前进速度增加了咬合长度,因此导致非均相的土壤混合。还发现,为了进行适当的分析,在量化旋转散射体的混合能力的同时必须考虑横截面和前部运动。本研究的结果证明了(1)DEM可用于将土壤模拟到旋转散网相互作用,以分析不同的操作条件而不耗时,并且昂贵的现场测试只能执行一年中的一定时间和(2)数字图像处理可以用作量化和验证场实验模拟的方法。

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