Analytical studies of the technological parameters of the curved channel of the pneumatic separator

S. Stepanenko
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Abstract

Purpose. Establishment of the laws governing the movement of particles in the air flow with an uneven distribution of flow velocity and the action of additional forces arising from this. Methods. Theoretical studies are based on the basic principles of theoretical mechanics, in particular dynamics, as well as the theory of differential equations of the first and second order Results. A mathematical description is obtained of the movement of particles of the grain mixture in the chamber of a gravity-air separator during the action of air flows of variable speed, as well as the trajectory of particles with different sizes. With certain assumptions, the obtained patterns of change in the velocity of a material particle (point) from coordinates. Conclusions 1.Based on theoretical studies, taking into account deflecting forces, the possibility of separating particles of grain material into fractions by aerodynamic properties in vertical channels and with a lower discharge is determined. 2.The use of air flow as a separating carrier can significantly increase the value of the splitting of the trajectories and the criterion for the separation of grain into fractions. 3.Created simplified mathematical models of the movement of the components of the grain material in air separators with vertical channels, which allow us to determine the rational modes of operation of new technical means. Keywords: air flow, variable air speed, trajectory, stability of forces, fractions, fractionation process, grain mixture, air separator, pneumatic circular flow.
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气动分离器弯曲通道工艺参数的分析研究
目的。建立流速分布不均匀的气流中粒子运动的规律以及由此产生的附加力的作用。理论研究是基于理论力学的基本原理,特别是动力学,以及一阶和二阶微分方程的理论。给出了在变速气流作用下,颗粒在重力-空气分离机腔内的运动和不同粒径颗粒的运动轨迹的数学描述。在一定的假设下,从坐标得到了物质粒子(点)的速度变化规律。在理论研究的基础上,在考虑偏转力的情况下,确定了在低流量条件下,利用垂直通道的气动特性将颗粒物料分离成小颗粒的可能性。利用气流作为分离载体,可以显著提高轨迹分裂值和颗粒分馏判据。建立了颗粒物料在垂直通道空气分离器中各组分运动的简化数学模型,使我们能够确定新技术手段的合理操作方式。关键词:气流,变风速,轨迹,力稳定性,馏分,分馏过程,颗粒混合物,空气分离器,气动循环流。
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