Effect of Dynamic Bridging on Homogeneous Grain Movement in a Microwave Processing Zone

This article describes the influence of dynamic bridging in the unloading of a hopper at a processing plant on the grain flow homogeneity in a convective-microwave zone. In accordance with calculation methods for unloading hoppers, the parameters of the hopper unit and those of the outlet hole insur...

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Bibliographic Details
Main Authors: Alexey A. Vasilyev, Alexey N. Vasilyev, Dmitry Budnikov, Vadim Bolshev, Michal Jasinski, Zbigniew Leonowicz, Radomir Gono, Lukasz Jasinski
Format: Article
Language:English
Published: MDPI AG 2021-10-01
Series:Agronomy
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Online Access:https://www.mdpi.com/2073-4395/11/10/2014
Description
Summary:This article describes the influence of dynamic bridging in the unloading of a hopper at a processing plant on the grain flow homogeneity in a convective-microwave zone. In accordance with calculation methods for unloading hoppers, the parameters of the hopper unit and those of the outlet hole insuring that grain flows without static bridging formation is defined. It was found that moisture content fluctuations do not affect the process of grain transport. The equation for dynamic bridging rise depending on its position on the vertical axis of the unloading hopper has been deduced that enables the definition of the inhomogeneity of grain flow from its outlet hole. Calculations show that a certain inhomogeneity occurred between the right and the left parts of the unloading hopper in relation to its vertical axis in the course of grain discharging. This effect underlies the inhomogeneity of grain processing and reduction of its effectiveness in convective-microwave zones. An experimental model of unloading the hopper has been manufactured in order to perform investigational studies. The results of studies have completely confirmed the hypotheses. It has been found that dynamic bridge formation in unloading of the hopper results in the inhomogeneity of grain flow in convective-microwave zone.
ISSN:2073-4395