Modeling of tillage operation parameters for draft and power requirement for three tillage implements in a loamy soil

P. Okoko, E. Ajav
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引用次数: 2

Abstract

Tillage is the basic operation in agriculture and its energy requirements represent a considerable portion of the energy utilized in crop production. The trials were achieved using five tractor speeds (3.6, 5.4, 7.2, 9.0 and 10.8 km/hr) and five tillage depths (10, 15, 20, 25 and 30 cm) to determine implement speed at different tillage depths for 3-bottom disc plough, spring tine cultivator and offset disc harrow on loamy soil. The design of the experiment used were two factors, five levels factorial of Central Composite Rotatable Design of Response Surface Method. Selected models were analyzed using ANOVA at ao. 05 and also validated. The high values of the coefficient of determination for all the selected models and the reasonable agreement between the predicted and actual values of draft and power requirement for all the tested implements show that the generated model equations can be used for predictive purposes for draft and power requirement.
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壤土中三种耕作工具牵伸和动力需求的耕作操作参数建模
耕作是农业的基本作业,其能源需求占作物生产所利用能源的相当一部分。试验采用5种拖拉机速度(3.6、5.4、7.2、9.0和10.8 km/hr)和5种耕作深度(10、15、20、25和30 cm),确定三底圆盘犁、春耕机和偏移式圆盘耙在壤土上不同耕作深度下的实施速度。试验设计采用的是二因子、五水平因子的响应面法中心复合旋转设计。选取的模型采用方差分析(ANOVA)进行分析。05和验证。所选模型的决定系数均较高,所有被测机具的吃水和功率需求预测值与实际值吻合较好,表明所生成的模型方程可用于吃水和功率需求的预测。
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