Modelling particle movement in conical guide of seeder pneumatic pipe

In the course of the study, methods for ensuring the centeringof particlesofbulkmaterialintheairflowmovinginthepneumaticductofthe seeder were investigated. To solve this problem, it is proposed to use a conical confusor. The aim of the study was to obtain the functional dependences of the movement o...

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Main Authors: Zaitsev Vladimir, Kravtsov Artem, Konovalovi Vladimir
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/35/e3sconf_interagromash2020_12019.pdf
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spelling doaj-c4f8852920544237a49c80cf8869508e2021-04-02T10:32:11ZengEDP SciencesE3S Web of Conferences2267-12422020-01-011751201910.1051/e3sconf/202017512019e3sconf_interagromash2020_12019Modelling particle movement in conical guide of seeder pneumatic pipeZaitsev Vladimir0Kravtsov Artem1Konovalovi Vladimir2Penza State Technological UniversityPenza State Technological UniversityPenza State Technological UniversityIn the course of the study, methods for ensuring the centeringof particlesofbulkmaterialintheairflowmovinginthepneumaticductofthe seeder were investigated. To solve this problem, it is proposed to use a conical confusor. The aim of the study was to obtain the functional dependences of the movement of particles in a conical airflow guide (confusor) for the conditions of transportation of the sown particles on the basis of force analysis and to identify the nature of the movement of the sownparticlesinataperingairflow.Duringthestudy,todescribethemotion of particles in a vertical tapering pipe, a system of expressions was substantiated. The developed mathematical model of particle motion in a conical air flow, implemented in the MathCAD mathematical package, allowscalculatingboththeparticletrajectoryandthevelocityparametersof the air flow and the particles to be sown. The digital calculation results in the MathCAD program are in good agreement with the finite element calculations. The magnitude of the error in air velocity is less than 1%. The differences in the velocities of the transported particles in the calculation options do not exceed 7%. The installation of a conical guide helps tofocus the flow of particles in the central part of the narrowed air line. In this case, part of the particles in the central part of the guide will retain the initial longitudinaltrajectory.Theangleattheapexoftheconeandtheparameters of the particles affect the speed and angle of the tangent contact of the particle with theguide.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/35/e3sconf_interagromash2020_12019.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Zaitsev Vladimir
Kravtsov Artem
Konovalovi Vladimir
spellingShingle Zaitsev Vladimir
Kravtsov Artem
Konovalovi Vladimir
Modelling particle movement in conical guide of seeder pneumatic pipe
E3S Web of Conferences
author_facet Zaitsev Vladimir
Kravtsov Artem
Konovalovi Vladimir
author_sort Zaitsev Vladimir
title Modelling particle movement in conical guide of seeder pneumatic pipe
title_short Modelling particle movement in conical guide of seeder pneumatic pipe
title_full Modelling particle movement in conical guide of seeder pneumatic pipe
title_fullStr Modelling particle movement in conical guide of seeder pneumatic pipe
title_full_unstemmed Modelling particle movement in conical guide of seeder pneumatic pipe
title_sort modelling particle movement in conical guide of seeder pneumatic pipe
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description In the course of the study, methods for ensuring the centeringof particlesofbulkmaterialintheairflowmovinginthepneumaticductofthe seeder were investigated. To solve this problem, it is proposed to use a conical confusor. The aim of the study was to obtain the functional dependences of the movement of particles in a conical airflow guide (confusor) for the conditions of transportation of the sown particles on the basis of force analysis and to identify the nature of the movement of the sownparticlesinataperingairflow.Duringthestudy,todescribethemotion of particles in a vertical tapering pipe, a system of expressions was substantiated. The developed mathematical model of particle motion in a conical air flow, implemented in the MathCAD mathematical package, allowscalculatingboththeparticletrajectoryandthevelocityparametersof the air flow and the particles to be sown. The digital calculation results in the MathCAD program are in good agreement with the finite element calculations. The magnitude of the error in air velocity is less than 1%. The differences in the velocities of the transported particles in the calculation options do not exceed 7%. The installation of a conical guide helps tofocus the flow of particles in the central part of the narrowed air line. In this case, part of the particles in the central part of the guide will retain the initial longitudinaltrajectory.Theangleattheapexoftheconeandtheparameters of the particles affect the speed and angle of the tangent contact of the particle with theguide.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/35/e3sconf_interagromash2020_12019.pdf
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