Calculation of the movement trajectory of the grain mass in the field stripper

The work is devoted to the study of the dynamics of the grain mass in a field stripper for grain separation. At the first stage, a model of the movement of the air mass in the considered installation is built and based on a mathematical model that takes into account the turbulence of the movement of...

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Main Authors: Matrosov Andrey, Nizhnik Daria, Panfilov Ivan, Pakhomov Viktor, Serebryanaya Irina, Soloviev Arkady, Rudoy Dmitriy
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/2020/70/e3sconf_itse2020_08015.pdf
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spelling doaj-c33faaa3c12c4fde9726009703d8a5a82021-04-02T20:26:08ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012100801510.1051/e3sconf/202021008015e3sconf_itse2020_08015Calculation of the movement trajectory of the grain mass in the field stripperMatrosov Andrey0Nizhnik Daria1Panfilov Ivan2Pakhomov ViktorSerebryanaya Irina3Soloviev Arkady4Rudoy Dmitriy5Don State Technical UniversityDon State Technical UniversityDon State Technical UniversityDon State Technical UniversityDon State Technical UniversityDon State Technical UniversityThe work is devoted to the study of the dynamics of the grain mass in a field stripper for grain separation. At the first stage, a model of the movement of the air mass in the considered installation is built and based on a mathematical model that takes into account the turbulence of the movement of the air mass, using the method of finite volumes in the ANSYS package, the field of velocities and pressures is calculated. At the second stage, the movement of a fragment of the grain mass in this flow is considered, its trajectory is built taking into account the interaction with the upper deck of the installation. The performed calculations allow us to choose rational geometric and kinematic parameters at which no stagnant zones appear in the chamber, the grain mass interacts with the upper one, which contributes to the release of grain in the installation chamber.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/70/e3sconf_itse2020_08015.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Matrosov Andrey
Nizhnik Daria
Panfilov Ivan
Pakhomov Viktor
Serebryanaya Irina
Soloviev Arkady
Rudoy Dmitriy
spellingShingle Matrosov Andrey
Nizhnik Daria
Panfilov Ivan
Pakhomov Viktor
Serebryanaya Irina
Soloviev Arkady
Rudoy Dmitriy
Calculation of the movement trajectory of the grain mass in the field stripper
E3S Web of Conferences
author_facet Matrosov Andrey
Nizhnik Daria
Panfilov Ivan
Pakhomov Viktor
Serebryanaya Irina
Soloviev Arkady
Rudoy Dmitriy
author_sort Matrosov Andrey
title Calculation of the movement trajectory of the grain mass in the field stripper
title_short Calculation of the movement trajectory of the grain mass in the field stripper
title_full Calculation of the movement trajectory of the grain mass in the field stripper
title_fullStr Calculation of the movement trajectory of the grain mass in the field stripper
title_full_unstemmed Calculation of the movement trajectory of the grain mass in the field stripper
title_sort calculation of the movement trajectory of the grain mass in the field stripper
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description The work is devoted to the study of the dynamics of the grain mass in a field stripper for grain separation. At the first stage, a model of the movement of the air mass in the considered installation is built and based on a mathematical model that takes into account the turbulence of the movement of the air mass, using the method of finite volumes in the ANSYS package, the field of velocities and pressures is calculated. At the second stage, the movement of a fragment of the grain mass in this flow is considered, its trajectory is built taking into account the interaction with the upper deck of the installation. The performed calculations allow us to choose rational geometric and kinematic parameters at which no stagnant zones appear in the chamber, the grain mass interacts with the upper one, which contributes to the release of grain in the installation chamber.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/70/e3sconf_itse2020_08015.pdf
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