Soil tillage energy efficiency increase

Tillage energy efficiency increase is one of the important tasks in improving the profitability and sustainability of agricultural production. The paper proposes to increase cultivation energy efficiency due to the use of traction-drive tilling implement with active working bodies, not creating a hi...

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Main Authors: Petrov Alexander, Saveliev Yuri, Ishkin Pavel, Petrov Mikhail
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:BIO Web of Conferences
Online Access:https://www.bio-conferences.org/articles/bioconf/full_html/2020/01/bioconf_fies2020_00177/bioconf_fies2020_00177.html
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spelling doaj-1120e13983664113a30d28a66c681f4c2021-04-02T16:01:22ZengEDP SciencesBIO Web of Conferences2117-44582020-01-01170017710.1051/bioconf/20201700177bioconf_fies2020_00177Soil tillage energy efficiency increasePetrov AlexanderSaveliev YuriIshkin PavelPetrov MikhailTillage energy efficiency increase is one of the important tasks in improving the profitability and sustainability of agricultural production. The paper proposes to increase cultivation energy efficiency due to the use of traction-drive tilling implement with active working bodies, not creating a high traction resistance and not requiring a large towing weight of aggregated tractor. The analysis of the energy efficiency of soil cultivation using traction-driven tilling implements with active working bodies has been carried out, and theoretical dependences of the coefficient of efficiency of a traction-driven machine-tractor unit has been obtained. The possibility of increasing the efficiency of the unit by reducing slipping of the tractor wheels and losses on rolling of the unit has been determined, which has been achieved by transferring part of the power through the power take-off shaft (PTO) of tractor to the drive working bodies of tilling implement, which compensate for traction resistance of the implement and create a pushing force, reducing the resistance to rolling.https://www.bio-conferences.org/articles/bioconf/full_html/2020/01/bioconf_fies2020_00177/bioconf_fies2020_00177.html
collection DOAJ
language English
format Article
sources DOAJ
author Petrov Alexander
Saveliev Yuri
Ishkin Pavel
Petrov Mikhail
spellingShingle Petrov Alexander
Saveliev Yuri
Ishkin Pavel
Petrov Mikhail
Soil tillage energy efficiency increase
BIO Web of Conferences
author_facet Petrov Alexander
Saveliev Yuri
Ishkin Pavel
Petrov Mikhail
author_sort Petrov Alexander
title Soil tillage energy efficiency increase
title_short Soil tillage energy efficiency increase
title_full Soil tillage energy efficiency increase
title_fullStr Soil tillage energy efficiency increase
title_full_unstemmed Soil tillage energy efficiency increase
title_sort soil tillage energy efficiency increase
publisher EDP Sciences
series BIO Web of Conferences
issn 2117-4458
publishDate 2020-01-01
description Tillage energy efficiency increase is one of the important tasks in improving the profitability and sustainability of agricultural production. The paper proposes to increase cultivation energy efficiency due to the use of traction-drive tilling implement with active working bodies, not creating a high traction resistance and not requiring a large towing weight of aggregated tractor. The analysis of the energy efficiency of soil cultivation using traction-driven tilling implements with active working bodies has been carried out, and theoretical dependences of the coefficient of efficiency of a traction-driven machine-tractor unit has been obtained. The possibility of increasing the efficiency of the unit by reducing slipping of the tractor wheels and losses on rolling of the unit has been determined, which has been achieved by transferring part of the power through the power take-off shaft (PTO) of tractor to the drive working bodies of tilling implement, which compensate for traction resistance of the implement and create a pushing force, reducing the resistance to rolling.
url https://www.bio-conferences.org/articles/bioconf/full_html/2020/01/bioconf_fies2020_00177/bioconf_fies2020_00177.html
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