人工形成气流速度分布的颗粒材料成分运动的科学基础

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
S. Stepanenko, B. Kotov, A. Spirin, V. Kucheruk
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引用次数: 2

摘要

本文通过对气流通道中粮食物料的分离进行研究,利用人工产生的横截面通道内的风速分布,确定合理的供料形式和参数,以及粮食物料分段分离的选择。从理论上研究了象鼻虫的运动规律,并以固体颗粒在气流中运动的动力学数学模型的形式建立了象鼻虫的运动规律,由于考虑了侧向力的作用,材料的浓度,以及使用幂律和人为形成的空气分布指数律,使得象鼻虫的运动轨迹差异(分裂)增加了20%。在Mathcad软件环境中求解具有初始条件的非线性微分方程组,以颗粒在气流中的运动轨迹的形式进行求解。它允许计算它们的轨迹,它们的风阻系数不同,并确定气体重力和气体惯性分离器参数的合理值。利用得到的依赖关系来开发空气分离器,有助于确定颗粒进入气流的初始速度和进入气流的方向,以及确定底部卸料时物料在空气通道中的运动轨迹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scientific foundations of the movement of components of grain material with an artificially formed distribution of air velocity
The article examines the study of the separation of grain materials in pneumatic channels with an artificially generated distribution of air velocity in the cross-section channel to determine the rational form and parameters of the material supply and options for grain material separation into fractions. The regularities of the weevil movement were theoretically investigated and established in the form of mathematical models of the dynamics of the movement of a solid particle in airflow, which differ from the known ones by taking into account the action of lateral forces, the concentration of the material, and the use of a power-law and an artificially formed exponential law of air distribution facilitated to increase the differences (splitting) trajectories of caryopses by 20 %. The solution of the system of nonlinear differential equations with initial conditions is performed in the Mathcad software environment in the form of trajectories of the grain in the air flow. It allows calculating their trajectories, which differ in windage coefficients and determine the rational values of the parameters of pneumo-gravity and pneumo-inertia separators. Using the obtained dependencies for the development of air separators contributes to determine the initial speed of entry and the direction of entry of the kernels into the airflow, as well as to determine the trajectories of material movement in the air channels with the bottom unloading of material.
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