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Pneumatic conveying characteristics of some agricultural seeds

机译:一些农业种子的气力输送特性

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In this research, a positive low pressure pneumatic conveyor was designed and manufactured and conveying characteristics of the seeds of wheat (Triticum durum), barley (Hordeum vulgare), sunflower (Helianthus annuusl) and lentil {Lens culinaris) were determined. In addition, the mechanical damage, germination rate, and vigour index of the seeds were also investigated experimentally. Wheat had the highest sphericity (55.06%), while barley had the lowest sphericity (46.10%). The volumes of wheat, barley, sunflower, and lentil were 35.76 mm~3, 38.37 mm~3, 71.29 mm~3, and 39.76 mm~3, respectively. The one thousand seed mass values of wheat, barley, sunflower, and lentil were found as 47.38 g, 38.18 g, 57.80 g, and 56.54 g, respectively. The bulk and true densities for wheat, barley, sunflower, and lentil were obtained as 815-1325 kg/m~3, 684-995 kg/m~3, 427-711 kg/m~3, and 777-1422 kg/m~3, respectively. The maximum porosity was obtained as 45.36% for lentil, while the lowest (31.25%) was obtained for barley. The projection areas of wheat, barley, sunflower, and lentil were found 14.70 mm~2, 25.10 mm~2, 61.49 mm~2, and 27.70 mm~2, respectively. The terminal velocities for wheat, barley, sunflower, and lentil varied from 9.86 to 10.27 m/s, 7.44 to 8.25 m/s, 6.13 to 6.61 m/s, and 6.99 to 7.72 m/s, respectively. The drag coefficients of wheat, barley, sunflower, and lentil varied within the 0.490-0.532, 0.359-0.441, 0.345-0.401, and 0.549-0.670, respectively. When air alone was blown, the pressure drop and the power requirement increased with the air velocity. The highest pressure drop and power requirement were obtained from wheat conveying, while the lower pressure drop and power requirement were on sunflower. The pressure drop and the power required to convey all seeds through pipe line for all seeds rose with air velocity and conveying capacity. The danger of mechanical damage for all seeds increased with increasing air velocity. The lowest mechanical damage was found for wheat, while the highest was for lentil. Germination and vigour index decreased when the conveying velocity increased. The maximum loss of germination was obtained for sunflower, while the minimum loss of germination was for wheat. But a higher loss of vigour index occurred in wheat, while sunflower had the minimum vigour index loss.
机译:在这项研究中,设计并制造出一种正向低压气动输送机,并确定了小麦(Triticum durum),大麦(Hordeum vulgare),向日葵(Helianthus annuusl)和扁豆(Lens culinaris)的种子的输送特性。此外,还通过实验研究了种子的机械损伤,发芽率和活力指数。小麦的球形度最高(55.06%),而大麦的球形度最低(46.10%)。小麦,大麦,向日葵和小扁豆的体积分别为35.76mm〜3、38.37mm〜3、71.29mm〜3和39.76mm〜3。发现小麦,大麦,向日葵和小扁豆的千种子质量值分别为47.38 g,38.18 g,57.80 g和56.54 g。小麦,大麦,向日葵和小扁豆的体积和真实密度分别为815-1325 kg / m〜3、684-995 kg / m〜3、427-711 kg / m〜3和777-1422 kg / m m〜3小扁豆的最大孔隙率为45.36%,而大麦的最小孔隙率为31.25%。小麦,大麦,向日葵和小扁豆的投影面积分别为14.70mm〜2、25.10mm〜2、61.49mm〜2和27.70mm〜2。小麦,大麦,向日葵和小扁豆的终末速度分别为9.86至10.27 m / s,7.44至8.25 m / s,6.13至6.61 m / s和6.99至7.72 m / s。小麦,大麦,向日葵和小扁豆的阻力系数分别在0.490-0.532、0.359-0.441、0.345-0.401和0.549-0.670之间变化。当单独吹入空气时,压降和功率需求随风速增加。小麦输送的压降和功率需求最高,而向日葵的压降和功率需求较低。通过管道输送所有种子所需的压降和所需功率随空气速度和输送能力的增加而上升。随着风速的增加,所有种子遭受机械损坏的危险也随之增加。发现小麦的机械损伤最低,而扁豆的机械损伤最高。随着输送速度的增加,发芽和活力指数降低。向日葵获得最大的发芽损失,而小麦获得最小的发芽损失。但是小麦的活力指数损失较高,而向日葵的活力指数损失最小。

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