Cargando…

Real-world exhaust temperature and engine load distributions of on-road heavy-duty diesel vehicles in various vocations

Real-world vehicle and engine activity data were collected from 90 heavy-duty vehicles in California, United States, most of which have engine model year 2010 or newer and are equipped with selective catalytic reduction (SCR). The 90 vehicles represent 19 different groups defined by a combination of...

Descripción completa

Detalles Bibliográficos
Autores principales: Boriboonsomsin, Kanok, Durbin, Thomas, Scora, George, Johnson, Kent, Sandez, Daniel, Vu, Alexander, Jiang, Yu, Burnette, Andrew, Yoon, Seungju, Collins, John, Dai, Zhen, Fulper, Carl, Kishan, Sandeep, Sabisch, Michael, Jackson, Doug
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5997961/
https://www.ncbi.nlm.nih.gov/pubmed/29900329
http://dx.doi.org/10.1016/j.dib.2018.04.044
_version_ 1783331154648104960
author Boriboonsomsin, Kanok
Durbin, Thomas
Scora, George
Johnson, Kent
Sandez, Daniel
Vu, Alexander
Jiang, Yu
Burnette, Andrew
Yoon, Seungju
Collins, John
Dai, Zhen
Fulper, Carl
Kishan, Sandeep
Sabisch, Michael
Jackson, Doug
author_facet Boriboonsomsin, Kanok
Durbin, Thomas
Scora, George
Johnson, Kent
Sandez, Daniel
Vu, Alexander
Jiang, Yu
Burnette, Andrew
Yoon, Seungju
Collins, John
Dai, Zhen
Fulper, Carl
Kishan, Sandeep
Sabisch, Michael
Jackson, Doug
author_sort Boriboonsomsin, Kanok
collection PubMed
description Real-world vehicle and engine activity data were collected from 90 heavy-duty vehicles in California, United States, most of which have engine model year 2010 or newer and are equipped with selective catalytic reduction (SCR). The 90 vehicles represent 19 different groups defined by a combination of vocational use and geographic region. The data were collected using advanced data loggers that recorded vehicle speed, position (latitude and longitude), and more than 170 engine and aftertreatment parameters (including engine load and exhaust temperature) at the frequency of one Hz. This article presents plots of real-world exhaust temperature and engine load distributions for the 19 vehicle groups. In each plot, both frequency distribution and cumulative frequency distribution are shown. These distributions are generated using the aggregated data from all vehicle samples in each group.
format Online
Article
Text
id pubmed-5997961
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-59979612018-06-13 Real-world exhaust temperature and engine load distributions of on-road heavy-duty diesel vehicles in various vocations Boriboonsomsin, Kanok Durbin, Thomas Scora, George Johnson, Kent Sandez, Daniel Vu, Alexander Jiang, Yu Burnette, Andrew Yoon, Seungju Collins, John Dai, Zhen Fulper, Carl Kishan, Sandeep Sabisch, Michael Jackson, Doug Data Brief Engineering    Real-world vehicle and engine activity data were collected from 90 heavy-duty vehicles in California, United States, most of which have engine model year 2010 or newer and are equipped with selective catalytic reduction (SCR). The 90 vehicles represent 19 different groups defined by a combination of vocational use and geographic region. The data were collected using advanced data loggers that recorded vehicle speed, position (latitude and longitude), and more than 170 engine and aftertreatment parameters (including engine load and exhaust temperature) at the frequency of one Hz. This article presents plots of real-world exhaust temperature and engine load distributions for the 19 vehicle groups. In each plot, both frequency distribution and cumulative frequency distribution are shown. These distributions are generated using the aggregated data from all vehicle samples in each group. Elsevier 2018-04-18 /pmc/articles/PMC5997961/ /pubmed/29900329 http://dx.doi.org/10.1016/j.dib.2018.04.044 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Engineering   
Boriboonsomsin, Kanok
Durbin, Thomas
Scora, George
Johnson, Kent
Sandez, Daniel
Vu, Alexander
Jiang, Yu
Burnette, Andrew
Yoon, Seungju
Collins, John
Dai, Zhen
Fulper, Carl
Kishan, Sandeep
Sabisch, Michael
Jackson, Doug
Real-world exhaust temperature and engine load distributions of on-road heavy-duty diesel vehicles in various vocations
title Real-world exhaust temperature and engine load distributions of on-road heavy-duty diesel vehicles in various vocations
title_full Real-world exhaust temperature and engine load distributions of on-road heavy-duty diesel vehicles in various vocations
title_fullStr Real-world exhaust temperature and engine load distributions of on-road heavy-duty diesel vehicles in various vocations
title_full_unstemmed Real-world exhaust temperature and engine load distributions of on-road heavy-duty diesel vehicles in various vocations
title_short Real-world exhaust temperature and engine load distributions of on-road heavy-duty diesel vehicles in various vocations
title_sort real-world exhaust temperature and engine load distributions of on-road heavy-duty diesel vehicles in various vocations
topic Engineering   
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5997961/
https://www.ncbi.nlm.nih.gov/pubmed/29900329
http://dx.doi.org/10.1016/j.dib.2018.04.044
work_keys_str_mv AT boriboonsomsinkanok realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT durbinthomas realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT scorageorge realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT johnsonkent realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT sandezdaniel realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT vualexander realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT jiangyu realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT burnetteandrew realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT yoonseungju realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT collinsjohn realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT daizhen realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT fulpercarl realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT kishansandeep realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT sabischmichael realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations
AT jacksondoug realworldexhausttemperatureandengineloaddistributionsofonroadheavydutydieselvehiclesinvariousvocations