Field performance analysis of a tractor-drawn turmeric rhizome planter

C. Muogbo, A. Gbabo, N. Nwakuba
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引用次数: 5

Abstract

A field performance analysis of a developed prototype tractor-drawn turmeric planter is presented. The experiment was randomized in a factorial design of three planter levels of rhizome lengths (30, 45 and 60 mm) and operational speeds of 8, 10, and 12 kmh -1 . An average mass of 3 kg of wholesome turmeric rhizomes were introduced into the hopper of the planter and planted in 90 m 2 of experimental plot. During field evaluation of the machine, the effective field capacity, field efficiency, missing index, multiple index and planting depth were considered; whereas laboratory tests were conducted to evaluate the planter’s seed rate, percentage rhizome bruise wheel slippage and fuel consumption. Results obtained show that the maximum seed rate was 0.283 th -1 . The maximum percent bruised turmeric rhizome was found to be 30.08%. The mean effective field capacity varied between 0.63 0.96 hah -1 , at operational speeds of 8 and 12 kmh -1 , respectively and 45 mm rhizome length. The mean field efficiency was obtained to be 65.8%. The maximum wheel slippage of 4.37% and fuel consumption of 3.8 lha -1 were obtained at the machine speeds of 8 kmh -1 and 12 kmh -1 , respectively; whereas the minimum wheel slippage of 3.14% and fuel consumption of 2.2 lha -1 were obtained at the machine speeds of 12 kmh -1 and 8 kmh -1 , respectively for the range of the studied turmeric rhizome length. The highest and lowest percentage turmeric rhizome miss index of 35% were recorded for turmeric rhizome length of 30 mm at a speed of 10 kmh -1 and 8 kmh -1 , respectively. An average planting depth of 68 mm was obtained. The numerical optimization approach was adopted to obtain an optimal operational parameters of 12 kmh -1 speed and 45 mm turmeric rhizome grading size with an overall desirability index of 0.73. An economic evaluation was calculated using the principle of payback period which was obtained to be very small (1.64 years) compared to the life of the planter of 17 years. Prospects for future works were suggested.
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牵引式姜黄根茎种植机的田间性能分析
介绍了一种新型拖拉机牵引型姜黄种植样机的田间性能分析。试验采用随机因子设计,根茎长度为30、45和60 mm,种植速度为8、10和12 km / h -1。将平均质量为3公斤的健康姜黄根茎引入播种机的料斗中,种植在90平方米的试验田中。在田间评价时,考虑了有效田容量、田效率、缺失指数、多重指数和种植深度;而实验室试验则对播种机的播种率、根茎擦伤率、轮滑率和燃料消耗进行了评估。结果表明,种子率最高可达0.283 th -1。姜黄根茎的最大伤损率为30.08%。在运行速度为8和12 km / h -1和根茎长度为45 mm时,平均有效田间容量变化在0.63 ~ 0.96 hah -1之间。平均田间效率为65.8%。车速为8 km / h -1和12 km / h -1时,最大轮滑为4.37%,油耗为3.8 lha -1;在研究的姜黄根茎长度范围内,当转速为12 km / h -1和8 km / h -1时,轮滑最小为3.14%,油耗为2.2 lha -1。在10 km / h -1和8 km / h -1速度下,姜黄根茎长度为30 mm时,脱靶率最高为35%,脱靶率最低。平均种植深度为68毫米。采用数值优化方法,得到最佳操作参数为12 km / h -1速度和45 mm姜黄分级粒度,总体理想指数为0.73。利用投资回收期原则进行经济评价,与种植机17年的寿命相比,获得的投资回收期非常短(1.64年)。并对今后的工作提出了展望。
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