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首页> 外文期刊>Agricultural Engineering International: CIGR Ejournal >Effect of Soil Type and Operational Speed on Performance of Some Selected Agricultural Field Machinery in South East Nigeria
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Effect of Soil Type and Operational Speed on Performance of Some Selected Agricultural Field Machinery in South East Nigeria

机译:土壤型和运营速度对尼日利亚东南部一些选定农业局机械性能的影响

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Abstract: A research was conducted to examine the effect of soil type and operational speed on the performance of some selected agricultural field machineries in South- East Nigeria. Results revealed that the disc plough had maximum field efficiency of 88.11% at a working speed of 6kmhr -1 in clay-loam soil, while in sandy-clay soil; it recorded maximum field efficiency of 87.98% under the same operational speed (6kmhr -1 ) and in loamy-sandy soil it obtained maximum field efficiency of 87.55% at the speed of 5kmhr -1 . The harrow had maximum field efficiency of 98.54% at operational speed of 9kmhr -1 in sandy-clay soil; in clay-loam soil at a working speed of 8kmhr -1 , it recorded maximum field efficiencies of 87.98%, and 87.19% respectively. Results further indicated that the ridger had maximum field efficiencies of 89.09%, 87.96% and 87.95% respectively, in sandy-clay, clay-loam and loamy-sandy soil under operational speed of 9kmhr -1 . At this same working speed, the rotovator obtained maximum field efficiencies of 89.81%, 89.40% and 87.11% in clay-loam, sandy-clay and loamy-sandy soil respectively. On the other hand, the planter recorded its maximum field efficiency of 89.69% in sandy-clay soil at speed of 5kmhr -1 , while in clay-loam soil, it had maximum efficiency of 89.30% at speed of 6kmhr -1 and in loamy-sandy soil, and it achieved a field efficiency of 88.99% under working speed of 7kmhr -1 . The harrow, ridger and rotovator attained maximum field efficiency at higher operational speeds (8 – 9kmhr -1 ) as compared to plough and planter that achieved their maximum field efficiencies at lower operational speeds (5 – 7kmhr -1 ). The lower operational speed of the plough was attributed to the higher tractive and draft force required in its operation, to initially break up and turn over the compacted soil which is associated with slow operational speed than other tillage implements; while that of the planter was attributed to the high precision required in its operation for proper metering, placement and covering of the seeds to avoid damages, which could only be achieved in a moderately slow working speed. Finally, the average efficiencies for all the implements were highest in sandy-clay soil, followed by clay-loam soil and least was obtained in loamy-sandy soil. The variation in the performances of the various implements could be attributed to the differences in soil physical and mechanical properties and/or demographic factors that exist among different soil types in different agro-ecological areas of South-East Nigeria.
机译:摘要:进行了研究,以研究土壤型和运营速度对尼日利亚东南部一些选定农业局机械性能的影响。结果表明,在粘土土壤中,圆盘犁在6kmHR -1的工作速度下的现场效率为88.11%,而在沙质粘土土壤中;它在相同的运营速度(6kmHR -1)和壤对砂土下录制了87.98%的最大现场效率,以5kmHR -1的速度获得了87.55%的最大现场效率。 Harrow在沙质粘土土壤中以9kmHR -1的运行速度最大的现场效率为98.54%;在粘土 - 壤土以8kMHR -1的工作速度下,它分别记录了87.98%的最大现场效率和87.19%。结果进一步表明,在砂岩,粘土和壤土和植物速度下,分别在9kmHR -1的运行速度下,脊柱的最大场效率分别为89.09%,87.96%和87.95%。在相同的工作速度下,旋转器分别获得粘土 - 壤土,沙质粘土和壤土砂土的最大场效率为89.81%,89.40%和87.11%。另一方面,播种机在5kMHR -1的速度下在沙质粘土土壤中记录了最大现场效率89.69%,而在粘土 - 壤土土壤中,它的最高效率为6kmhr -1和植物的速度为89.30% - 在7kMHR -1的工作速度下实现了88.99%的现场效率。与犁和播种器相比,耙,骑手和旋转器以较高的操作速度(8 - 9kmhr -1)以较低的运行速度(5 - 7kmhr -1)实现最大现场效率的最大现场效率。犁的较低运行速度归因于其操作中所需的较高的牵引力和牵伸力,最初分解并转过压实的土壤,与其他耕作装置有关的速度慢。虽然播种机的虽然该播种机的操作所需的高精度归因于适当的计量,放置和覆盖种子以避免损坏,但是只能以中等的工作速度实现。最后,砂岩土壤中所有工具的平均效率最高,其次是粘土 - 壤土土壤,在壤土土壤中获得最少。各种工具的性能的变化可归因于东南尼日利亚东南部不同农业生态地区不同土壤类型存在的土壤物理和机械性能和/或人口因子的差异。

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