大豆穗齿脱粒机机械作物参数模型

T. A. Ilori, T. Dauda, Adewumi I.O
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摘要

对脱粒机进行定期改造的目的是提高大豆的加工效率。本研究是在尼日利亚奥约州伊巴丹联邦农业学院的工程研讨会上进行的,目的是解构脱粒机的参数-输出关系,并为这种关系建立一个模型。以未脱粒大豆CGX14x1448为试验材料,对车间生产的脱粒机进行了性能评价。对机器产量的汇总统计表明,凹间隙未脱粒大豆占16.98%,机械损坏种子占8.625%,吹散种子占23.403kg,高损失种子占44.241kg。平均清洗效率(94.175)和脱粒效率(83.022)均较高。然而,滚筒速度的变化趋势与凹间隙和含水率的变化趋势相反。未脱粒率为83.212%,机械损伤率为16.792%。脱粒效率(44.108)和清洗效率(23.321)均较低。汽缸转速与机器产量的关系表现出吹种率、破损率和籽粒损失率呈增加趋势。凹间隙脱粒效率可以用3种最简洁的模型(x -逆模型、指数模型和简单线性模型)进行预测。圆筒速度-脱粒效率模型的最佳模型具有较高的校正系数(R2)。这些是0.9997的xy逆和0.9998的二次0.993指数模型的估计方差为0.00047(二次),0.000的逆xy和0.000191(指数模型)。该模型的实际应用在于对脱粒机参数与产量关系的测量的专用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Machine Crop Parameters’ Model of Spike - Tooth Thresher for Soybean
The goal of regular modification of threshing machine is to increase soybean processing efficiency. This study was carried out to deconstruct the thresher’s parameter - output relationship and to evolve a model for such relationship at the Engineering workshop of the Federal College of Agriculture, Ibadan, Oyo State Nigeria. Unthreshed soybeans, CGX14x1448 were used to evaluate the performance of a modified spike tooth thresher fabricated at the Workshop. The summary statistics of the machine output showed that concave clearance had percentage unthreshed soybean of 16.98%, percentage mechanically damaged seed of 8.625%, blown seed of 23.403kg and high seed loss of 44.241kg. Both the mean cleaning efficiency (94.175) and threshing efficiency (83.022) were very high. The trend of the cylinder speed however contrasts with those of concave clearance and moisture content. The percentage unthreshed (83.212%), percentage mechanical damage (16.792%) were in contrast to each other. Similarly, the threshing (44.108) and cleaning (23.321) efficiency were low. The relationships between cylinder speed and machine output showed an increasing trends for blown seed, percentage damaged seed and seed loss. Concave clearance - threshing efficiency can be predicted using 3 most parsimonious models (xy-inverse, exponential and simple linear model). High adjusted coefficients of determinations (R2) were obtained for the best model of cylinder speed - threshing efficiency model. These were 0.9997 for the xy inverse and 0.9998 for quadratic 0.993 for exponential model with estimation variance of 0.00047 (quadratic), 0.000 for inverse xy and 0.000191 (exponential model). The practical application of the models is in the specificity of the measurement of the relationship between thresher’s parameters and output.
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