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Theoretical background of calculation of the parameters of the device for grain cleaning from ergot sclerotia

机译:麦格特菌麦格特罗斯谷物清洗装置参数计算理论背景

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摘要

Abstract A grain pile delivered from the combine harvesters to the postharvest handling stations contains, besides the full-value grain, foreign materials, including the poisonous ergot sclerotia. The use of air-sieveseparating machines and other devices does not provide any positive results during cleaning of the grain material from the ergot due to the similarity of its properties and properties of the cleaned crop. The grains of the main cereal crops (wheat, barley, rye, oats) has specific gravity of (1.2–1.5) × 103 kg/m3 and that of ergot sclerotia is (0.9–1.15) × 103 kg/m3. Cleaning of the grain from the ergot sclerotia is possible in saline solution. The estimation of the height of location of the charging hopper as to the level of the saline solution was made to develop the device for cleaning the grain material by the specific gravity using the wet method. It is stated that, taking into account the geometrical dimensions (l kernel = 8.0 × 10–3 m3 and r kernel = 1.0 × 10–3 m) of the grain of the main grain crops upon the saline solution density ρr = 1.15 × 103 kg/m3 corresponding to the maximum density value ρs of the ergot sclerotia, the coefficient of the solution surface tension σ = 0.0816 n/m and the coefficient of the hydrodynamic resistance c = 0.9, the height h of location of the hopper as to the surface of the saline solution makes from 21.35 × 10–3 m for the grain with the density ρz = 1.5 × 103 kg/m3 to 34.01 × 10–3 for the grain with the density ρz = 1.2 × 103 kg/m3.]]>
机译:<![cdata [<标题>抽象 ara>除了全价谷物,外国材料外,从组合收割机提供的谷物桩,包括毒液,包括毒麦格特菌群。由于其性质和清洁作物的性质的相似性,使用空气裂纹的机器和其他器件在清洁晶粒材料期间,在清洁晶粒材料期间不提供任何阳性结果。主要谷物作物(小麦,大麦,黑麦,燕麦)的粒子具有(1.2-1.5)×10 <上标> 3 kg / m <上标> 3 以及ergot的比重巩膜是(0.9-1.15)×10 <上标> 3 kg / m <上标> 3 。在盐酸溶液中可以清除来自Ergot Sclerotia的谷物。使充电料斗的位置高度估计到盐水溶液的水平的水平,通过使用湿法制造用于通过比重清洁晶粒材料的装置。据指出,考虑到几何尺寸(<重点型=“斜体”> l <下标> kernel = 8.0×10 <上标> -3 m 3 和<重点类型=“斜体”> R <下标>谷物主要谷物作物谷物的谷物 = 1.0×10 <上标> -3 m)在盐水溶液密度ρR= 1.15×10 <上标> 3 kg / m <上标> 3 对应于ergot sclerotia的最大密度值ρ<下标> s 。溶液表面张力系数σ= 0.0816 n / m以及流体动力学的系数c = 0.9,料斗的位置H位于盐水溶液表面的料斗的位置为21.35×10-3m的晶粒密度ρz= 1.5×103 kg / m3为谷物的密度ρz= 1.2×103 kg / m3。]>

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