Investigation of fuel consumption of non-scheduled trains thermal traction

This article deals with the calculation of fuel consumption of trains with unpredicted scheduling (non-scheduled trains). The need for such investigation was stimulated by the fact that because of many operational and technical reasons when trains lag behind their original schedule and further train...

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Main Authors: M. Juraška, T. Magyla
Format: Article
Language:English
Published: Vilnius Gediminas Technical University 2004-10-01
Series:Transport
Subjects:
Online Access:http://www.transport.vgtu.lt/upload/tif_zur/2004-5-juraska_magyla.pdf
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spelling doaj-996649b987fc438b857ce45eacef9b4b2021-07-02T01:36:06ZengVilnius Gediminas Technical UniversityTransport1648-41421648-34802004-10-01195230235Investigation of fuel consumption of non-scheduled trains thermal tractionM. JuraškaT. MagylaThis article deals with the calculation of fuel consumption of trains with unpredicted scheduling (non-scheduled trains). The need for such investigation was stimulated by the fact that because of many operational and technical reasons when trains lag behind their original schedule and further train routing becomes unscheduled and unpredicted, quite considerable amount of fuel is lost for unexpected train stopping and speeding to reach the previous original running speed. Theoretical approach is presented in this article with the estimation of train-track interaction and resistance factors. The object of this research has typical characteristics of an ordinary train with a thermal locomotive 2TЭ10M which weights 276 tons and 50 wagons, each of them weighting 40 t. Calculated results are presented for different running scenarios.http://www.transport.vgtu.lt/upload/tif_zur/2004-5-juraska_magyla.pdfthermal tractionfuel consumptionnon-scheduled train trafficrelative resistancetrain-track interactionwear
collection DOAJ
language English
format Article
sources DOAJ
author M. Juraška
T. Magyla
spellingShingle M. Juraška
T. Magyla
Investigation of fuel consumption of non-scheduled trains thermal traction
Transport
thermal traction
fuel consumption
non-scheduled train traffic
relative resistance
train-track interaction
wear
author_facet M. Juraška
T. Magyla
author_sort M. Juraška
title Investigation of fuel consumption of non-scheduled trains thermal traction
title_short Investigation of fuel consumption of non-scheduled trains thermal traction
title_full Investigation of fuel consumption of non-scheduled trains thermal traction
title_fullStr Investigation of fuel consumption of non-scheduled trains thermal traction
title_full_unstemmed Investigation of fuel consumption of non-scheduled trains thermal traction
title_sort investigation of fuel consumption of non-scheduled trains thermal traction
publisher Vilnius Gediminas Technical University
series Transport
issn 1648-4142
1648-3480
publishDate 2004-10-01
description This article deals with the calculation of fuel consumption of trains with unpredicted scheduling (non-scheduled trains). The need for such investigation was stimulated by the fact that because of many operational and technical reasons when trains lag behind their original schedule and further train routing becomes unscheduled and unpredicted, quite considerable amount of fuel is lost for unexpected train stopping and speeding to reach the previous original running speed. Theoretical approach is presented in this article with the estimation of train-track interaction and resistance factors. The object of this research has typical characteristics of an ordinary train with a thermal locomotive 2TЭ10M which weights 276 tons and 50 wagons, each of them weighting 40 t. Calculated results are presented for different running scenarios.
topic thermal traction
fuel consumption
non-scheduled train traffic
relative resistance
train-track interaction
wear
url http://www.transport.vgtu.lt/upload/tif_zur/2004-5-juraska_magyla.pdf
work_keys_str_mv AT mjuraska investigationoffuelconsumptionofnonscheduledtrainsthermaltraction
AT tmagyla investigationoffuelconsumptionofnonscheduledtrainsthermaltraction
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