Study on GPF regeneration factors and extreme environmental regeneration methods

In order to cope with the increasingly stringent environmental pollution control target, DI gasoline engines must use particulate filters. In order to ensure that GPF will not block or burn during the process of capturing particulate, the gasoline particulate filter (GPF) needs to be controlled base...

Full description

Bibliographic Details
Main Authors: Chen Long, Long Yongsheng, Tuo Hanyun, Xu Rui
Format: Article
Language:English
Published: EDP Sciences 2021-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/44/e3sconf_vesep2020_01001.pdf
id doaj-498b57e1071a42778f7099916e009981
record_format Article
spelling doaj-498b57e1071a42778f7099916e0099812021-06-15T07:34:28ZengEDP SciencesE3S Web of Conferences2267-12422021-01-012680100110.1051/e3sconf/202126801001e3sconf_vesep2020_01001Study on GPF regeneration factors and extreme environmental regeneration methodsChen LongLong YongshengTuo HanyunXu RuiIn order to cope with the increasingly stringent environmental pollution control target, DI gasoline engines must use particulate filters. In order to ensure that GPF will not block or burn during the process of capturing particulate, the gasoline particulate filter (GPF) needs to be controlled based on current soot mass in real time. The loading capacity controls the regeneration of GPF, and the influencing factors of the regeneration efficiency are highly related to the GPF inner temperature, the amount of oxygen, and the soot loading of the GPF carrier. This paper analyzes the weight of the influencing factors of each consumption rate through mathematical methods, and from real test, it can be seen that there is difficult on regeneration of accumulated soot in low-temperature environments on under floor GPF. In this paper, in the test and inspection of low temperature environment, considering the drivability, the regeneration control scheme is clarified by optimizing the active control, and at the same time, the driving mode of extreme conditions is also required.https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/44/e3sconf_vesep2020_01001.pdfsoot dissipation modelhigh quality regenerationcombustion efficiency
collection DOAJ
language English
format Article
sources DOAJ
author Chen Long
Long Yongsheng
Tuo Hanyun
Xu Rui
spellingShingle Chen Long
Long Yongsheng
Tuo Hanyun
Xu Rui
Study on GPF regeneration factors and extreme environmental regeneration methods
E3S Web of Conferences
soot dissipation model
high quality regeneration
combustion efficiency
author_facet Chen Long
Long Yongsheng
Tuo Hanyun
Xu Rui
author_sort Chen Long
title Study on GPF regeneration factors and extreme environmental regeneration methods
title_short Study on GPF regeneration factors and extreme environmental regeneration methods
title_full Study on GPF regeneration factors and extreme environmental regeneration methods
title_fullStr Study on GPF regeneration factors and extreme environmental regeneration methods
title_full_unstemmed Study on GPF regeneration factors and extreme environmental regeneration methods
title_sort study on gpf regeneration factors and extreme environmental regeneration methods
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2021-01-01
description In order to cope with the increasingly stringent environmental pollution control target, DI gasoline engines must use particulate filters. In order to ensure that GPF will not block or burn during the process of capturing particulate, the gasoline particulate filter (GPF) needs to be controlled based on current soot mass in real time. The loading capacity controls the regeneration of GPF, and the influencing factors of the regeneration efficiency are highly related to the GPF inner temperature, the amount of oxygen, and the soot loading of the GPF carrier. This paper analyzes the weight of the influencing factors of each consumption rate through mathematical methods, and from real test, it can be seen that there is difficult on regeneration of accumulated soot in low-temperature environments on under floor GPF. In this paper, in the test and inspection of low temperature environment, considering the drivability, the regeneration control scheme is clarified by optimizing the active control, and at the same time, the driving mode of extreme conditions is also required.
topic soot dissipation model
high quality regeneration
combustion efficiency
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2021/44/e3sconf_vesep2020_01001.pdf
work_keys_str_mv AT chenlong studyongpfregenerationfactorsandextremeenvironmentalregenerationmethods
AT longyongsheng studyongpfregenerationfactorsandextremeenvironmentalregenerationmethods
AT tuohanyun studyongpfregenerationfactorsandextremeenvironmentalregenerationmethods
AT xurui studyongpfregenerationfactorsandextremeenvironmentalregenerationmethods
_version_ 1721376822637101056