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Layer Mixing Performance of Different Blades of Reverse-rotational Rotary Tiller

机译:逆转旋转分蘖不同叶片的层混合性能

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The objective of this study was to elaborate on the layer mixing characteristics of the reverse-rotational rotary tillers. This paper describes the layer mixing performances of different tillage blades and compares their soil mixing characteristics, using both the numerical simulation model and actual field tillage tests. This test compares two types of blades. The first is the standard blade called "Sukui-zume" in Japanese, which is installed on marketed reverse-rotational rotary tillers. The other is a newly designed short scoop surface blade. This blade has an advantage over the standard blade with respect to the tillage resistance. The difference between these blades is the length of the arc of the blade scoop surface. The field tillage test and the numerical simulation model were conducted with both these blades. In the field experiment, small plastic spheres were used as the medium of soil layer mixing. In the numerical simulation, the throwing trajectory and the order of tilled soil were calculated by the soil mixing model of the backward throwing of tilled soil based on particle kinetics. The results show the differences between the soil mixing characteristics of the two types of blades. Both types of blades produce uniform soil mixing in all soil layers. However, the sort scoop surface blade produces a turning between the middle and bottom soil layers. The numerical simulation model appears to offer valid results with respect to the actual tillage tests except in the translation of the bottom layer soil.
机译:本研究的目的是详细说明反向旋转旋转分蘖的层混合特性。本文介绍了不同耕作叶片的层混合性能,并使用数值模拟模型和实际耕作试验进行了与其土壤混合特性进行了比较。该测试比较了两种类型的刀片。首先是日语中称为“Sukui-Zume”的标准刀片,安装在销售的反转旋转旋转分蘖上。另一个是一个新设计的短勺表面刀片。该刀片在标准刀片上具有相对于耕作抗性的优点。这些叶片之间的差异是刀片表面的弧形的长度。使用这些刀片进行现场耕作测试和数值模拟模型。在田间实验中,使用小塑料球作为土壤层混合的介质。在数值模拟中,通过基于粒子动力学的耕种土壤倒影的土壤混合模型计算抛出轨迹和耕地顺序。结果表明了两种叶片的土壤混合特性之间的差异。两种类型的叶片都在所有土层中产生均匀的土壤混合。然而,排序舀表面刀片产生中间和底层土壤层之间的转弯。除了在底层土壤的翻译中,数值模拟模型似乎为实际耕作试验提供了有效的结果。

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