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Design and Development of a Cassava Planter

机译:木薯播种机的设计与开发

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摘要

The manual planting of cassava demands a large quantity of human labor. It is a time-consuming, unpleasant, and arduous job. The labor shortage is one of the major constraints in manual cassava planting in Thailand. Therefore, a cassava planter suitable for use in local farms was developed. It was designed to plant stakes either on flat beds or in ridges and to apply fertilizer at the same time. The machine consists of the main frame, the cutting unit, the planting unit, the fertilizer unit, the ridger, and the soil levelers. A 57.4 kW tractor is used as a power source. Two feeders and one tractor driver are needed to operate the planter attached to a tractor. For field performance evaluation, three traveling speeds (1.7, 2.0 and 2.4 km/h) were used. It was observed that the average field capacity and field efficiency were 0.135 ha/h and 65.3%, respectively. Fuel consumption varied between 19.9 and 24.2 L/ha. The maximum draft requirement of the machine was 1.55 kN. It could plant the stakes at an average inclination of 67° (angle 1, altitude angle of stake in the longitudinal-vertical plane) and 88° (angle 2, altitude angle of stake in the lateral-vertical plane) depending on the forward speed. Field testing showed 89% proper standing of plants. The average missing hills were 3.9%, and average horizontal planting was 4.2% (but buried in the soil). No damaged stakes were observed. Average germination was 90%. The planting pattern and quality achieved by this planter were considered satisfactory. The machine had a break-even area of 24.8 ha/year when it was operated at 2.4 km/h speed. For a one-year payback period, the planting area required was 80.7 ha/year if the planter was operated at 2.4 km/h. The performance test and cost analysis indicated that the machine could be used economically
机译:手工种植木薯需要大量的人工。这是一项耗时,不愉快且艰巨的工作。劳动力短缺是泰国手工木薯种植的主要障碍之一。因此,开发了适合在当地农场使用的木薯种植机。它的设计目的是在平地或山脊上播种木桩,并同时施肥。该机器由主机架,切割单元,种植单元,施肥单元,起垄机和土壤整平机组成。使用57.4 kW拖拉机作为动力源。需要两个供料器和一个拖拉机驱动器来操作与拖拉机连接的播种机。为了进行现场性能评估,使用了三种行驶速度(1.7、2.0和2.4 km / h)。观察到平均场容量和场效率分别为0.135公顷/小时和65.3%。油耗在19.9和24.2 L / ha之间变化。机器的最大吃水要求为1.55 kN。取决于前进速度,它可以以67°(倾斜角度1,纵向垂直平面上的标高角度)和88°(倾斜角度,垂直平面上的标高角度)的平均倾斜度放置木桩。现场测试表明,植物有89%的正确位置。平均缺山为3.9%,平均水平种植为4.2%(但埋在土壤中)。没有观察到损坏的木桩。平均发芽率为90%。该播种机实现的播种模式和质量被认为令人满意。当机器以2.4 km / h的速度运行时,收支平衡面积为24.8公顷/年。对于一年的回收期,如果以2.4 km / h的速度播种,则播种面积为80.7公顷/年。性能测试和成本分析表明该机器可以经济地使用

著录项

  • 来源
    《Transactions of the ASABE》 |2009年第2期|p.393-399|共7页
  • 作者单位

    Jaturong Lungkapin, Lecturer, Department of Agricultural Engineering, Faculty of Engineering, Rajamangala University of Technology Thanyaburi, Bangkok, Thailand;

    Vilas M. Salokhe, ASABE Life Member Engineer, Professor, Agricultural Systems and Engineering, Asian Institute of Technology, Bangkok, Thailand;

    Roongruang Kalsirisilp, Associate Professor, Department of Agricultural Engineering, Faculty of Engineering, Rajamangala University of Technology Thanyaburi, Bangkok, Thailand;

    and Hiroshi Nakashima, Associate Professor, Faculty of Agriculture, Agricultural Systems Engineering Laboratory, Kyoto University, Kyoto, Japan. Corresponding author: Vilas M. Salokhe, Agricultural Systems and Engineering, Asian Institute of Technology, P.O. Box 4, Klong Luang, Pathumthani 12120, Bangkok, Thailand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cassava; Cutting unit; Planter; Planting unit; Stakes;

    机译:木薯;切割单元;播种机;种植单位;赌注;

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