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首页> 外文期刊>Agricultural Engineering International: CIGR Ejournal >Investigation of the Effect of Rake Angle on the Draft Requirement of Ripping in a Sandy Clay Soil through Field Experiments and Computer Modelling
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Investigation of the Effect of Rake Angle on the Draft Requirement of Ripping in a Sandy Clay Soil through Field Experiments and Computer Modelling

机译:通过田间试验和计算机建模研究前角对沙质黏土土翻浆草稿要求的影响

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摘要

In this study, the effect of rake angle of a ripper plough on the draft requirement in a sandy-clay soil was investigated; the study was based on field experiments, laboratory tests and numerical simulation. Field experiments were conducted at the University of Nairobi field station in Upper Kabete, Kenya located at 1o15’S and 36o44’E at an altitude of about 1940 meters above sea level. The soil at the location is a humic Nitisol belonging to the class of sandy-clay. Field experiments featured the Factorial Completely Randomized Block design to eliminate experimental error. The plot was sub-divided into four blocks to eliminate variation due to distance and slope; the treatments were randomly assigned to the blocks and replicated four times.The numerical model was developed using the principles of the discrete element method embedded in a commercial code. EDEM Academic? software was applied to model the draft requirement to ripping using ripper tines of rake angles; 30, 45, 60 and 75 degrees. The model was calibrated using the results of soil physical tests that included; moisture content, bulk density, sieve analysis, shear strength, cone index and angle of repose. The integrity of the model was validated statistically using empirical data from field tests; the statistical methods utilised included; measures of central tendency, the One Sample Kolmogorov-Smirnov test, analysis of variance, the student t-test and multi-linear regression. The validated model was applied to predict the effect of the rake angle on the draft requirement; the forces arising due to particle and boundary contact during simulation were calculated using an inbuilt contact constitutive relation and displayed using the model’s inbuilt query feature.Statistical analysis indicated that the rake angle significantly influenced the value of the draft requirement in the sandy-clay soil at the 95% level of confidence. The value of the draft requirement was found to decrease from the rake angle of 30 degrees to attain a minimum value at 45degrees then increased through the rake angle of 60degrees to attain a maximum at the rake angle of 75 degrees; the rake angle of 45 degrees was thus found to give the minimum amount of the draft requirement while the rake angle of 75 degrees was found to give the maximum amount of the draft requirement.
机译:在这项研究中,研究了松土犁耙前角对沙质土壤中吃水需求的影响。该研究基于现场实验,实验室测试和数值模拟。实地实验是在肯尼亚上卡贝特的内罗毕大学野外站进行的,该站位于南纬1o15和东经36o44,海拔约1940米。该位置的土壤是腐殖质尼索尔,属于沙质粘土。现场实验采用析因完全随机区组设计,以消除实验误差。该图被细分为四个区块,以消除由于距离和坡度而产生的变化;将处理随机分配到块中并重复四次。数值模型是使用嵌入在商业代码中的离散元素方法的原理开发的。 EDEM学术版?应用软件对前角撕裂齿的撕裂要求草稿进行建模。 30、45、60和75度。使用包括在内的土壤物理测试结果对模型进行了校准;水分含量,堆密度,筛分分析,剪切强度,锥度指数和休止角。使用来自现场测试的经验数据对模型的完整性进行了统计验证;使用的统计方法包括;集中趋势的度量,一次样本Kolmogorov-Smirnov检验,方差分析,学生t检验和多元线性回归。经过验证的模型被用来预测前角对吃水需求的影响。利用内建的接触本构关系计算出模拟过程中由于颗粒与边界接触而产生的力,并利用模型的内建查询特征进行显示。统计分析表明,前角明显地影响了沙质黏土的拔模要求值。 95%的置信度。发现吃水要求的值从30度前角减小到45度时达到最小值,然后通过60度前角增大而在75度前角达到最大值。因此,发现45度的前角给出了最小的吃水需求量,而发现了75度的前角给出了最大的吃水需求量。

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