Effect of Various Supercharger Boost Pressure to in-Cylinder Pressure and Heat Release Rate Characteristics of Direct Injection Diesel Engine at Various Engine Rotation

The diesel engines are superior in terms of power efficiency and fuel economy compared to gasoline engines. In order to optimize the performance of direct injection diesel engine, the effect of various intake pressure (boost pressure) from supercharging direct injection diesel engine was studied at...

Full description

Bibliographic Details
Main Authors: Anggono Willyanto, Ikoma Wataru, Chen Haoyu, Liu Zhiyuan, Ichiyanagi Mitsuhisa, Suzuki Takashi
Format: Article
Language:English
Published: EDP Sciences 2019-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/56/e3sconf_ic-amme2018_01036.pdf
_version_ 1818954496319946752
author Anggono Willyanto
Ikoma Wataru
Chen Haoyu
Liu Zhiyuan
Ichiyanagi Mitsuhisa
Suzuki Takashi
author_facet Anggono Willyanto
Ikoma Wataru
Chen Haoyu
Liu Zhiyuan
Ichiyanagi Mitsuhisa
Suzuki Takashi
author_sort Anggono Willyanto
collection DOAJ
description The diesel engines are superior in terms of power efficiency and fuel economy compared to gasoline engines. In order to optimize the performance of direct injection diesel engine, the effect of various intake pressure (boost pressure) from supercharging direct injection diesel engine was studied at various engine rotation. A single cylinder direct injection diesel engine was used in this experiment. The bore diameter of the engine used was set to 85 mm, the stroke length was set to 96.9 mm, and the compression ratio was set to 16.3. The variation of engine rotation started from 800 rpm to 2 000 rpm with 400 rpm increment. The variation of boost pressure is bounded from 0 kPa boost pressure (naturally aspirated) to the maximum of 60 kPa boost pressure with 20 kPa boost pressure increment. The performance of the engine is evaluated in terms of in-cylinder pressure and heat release rate as the most important performance characteristics of the diesel engine. The in-cylinder pressure and heat release rate of direct injection diesel engine are increased with the elevation of boost pressure at various engine rotation. The raise of engine rotation resulted in the decrease of maximum in-cylinder pressure and heat release rate.
first_indexed 2024-12-20T10:23:05Z
format Article
id doaj.art-225d71e72b074fd3a19330fcdb86d086
institution Directory Open Access Journal
issn 2267-1242
language English
last_indexed 2024-12-20T10:23:05Z
publishDate 2019-01-01
publisher EDP Sciences
record_format Article
series E3S Web of Conferences
spelling doaj.art-225d71e72b074fd3a19330fcdb86d0862022-12-21T19:43:53ZengEDP SciencesE3S Web of Conferences2267-12422019-01-011300103610.1051/e3sconf/201913001036e3sconf_ic-amme2018_01036Effect of Various Supercharger Boost Pressure to in-Cylinder Pressure and Heat Release Rate Characteristics of Direct Injection Diesel Engine at Various Engine RotationAnggono WillyantoIkoma WataruChen HaoyuLiu ZhiyuanIchiyanagi MitsuhisaSuzuki TakashiThe diesel engines are superior in terms of power efficiency and fuel economy compared to gasoline engines. In order to optimize the performance of direct injection diesel engine, the effect of various intake pressure (boost pressure) from supercharging direct injection diesel engine was studied at various engine rotation. A single cylinder direct injection diesel engine was used in this experiment. The bore diameter of the engine used was set to 85 mm, the stroke length was set to 96.9 mm, and the compression ratio was set to 16.3. The variation of engine rotation started from 800 rpm to 2 000 rpm with 400 rpm increment. The variation of boost pressure is bounded from 0 kPa boost pressure (naturally aspirated) to the maximum of 60 kPa boost pressure with 20 kPa boost pressure increment. The performance of the engine is evaluated in terms of in-cylinder pressure and heat release rate as the most important performance characteristics of the diesel engine. The in-cylinder pressure and heat release rate of direct injection diesel engine are increased with the elevation of boost pressure at various engine rotation. The raise of engine rotation resulted in the decrease of maximum in-cylinder pressure and heat release rate.https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/56/e3sconf_ic-amme2018_01036.pdfdiesel engineefficiencyengine performaceinjectionstrategy
spellingShingle Anggono Willyanto
Ikoma Wataru
Chen Haoyu
Liu Zhiyuan
Ichiyanagi Mitsuhisa
Suzuki Takashi
Effect of Various Supercharger Boost Pressure to in-Cylinder Pressure and Heat Release Rate Characteristics of Direct Injection Diesel Engine at Various Engine Rotation
E3S Web of Conferences
diesel engine
efficiency
engine performace
injection
strategy
title Effect of Various Supercharger Boost Pressure to in-Cylinder Pressure and Heat Release Rate Characteristics of Direct Injection Diesel Engine at Various Engine Rotation
title_full Effect of Various Supercharger Boost Pressure to in-Cylinder Pressure and Heat Release Rate Characteristics of Direct Injection Diesel Engine at Various Engine Rotation
title_fullStr Effect of Various Supercharger Boost Pressure to in-Cylinder Pressure and Heat Release Rate Characteristics of Direct Injection Diesel Engine at Various Engine Rotation
title_full_unstemmed Effect of Various Supercharger Boost Pressure to in-Cylinder Pressure and Heat Release Rate Characteristics of Direct Injection Diesel Engine at Various Engine Rotation
title_short Effect of Various Supercharger Boost Pressure to in-Cylinder Pressure and Heat Release Rate Characteristics of Direct Injection Diesel Engine at Various Engine Rotation
title_sort effect of various supercharger boost pressure to in cylinder pressure and heat release rate characteristics of direct injection diesel engine at various engine rotation
topic diesel engine
efficiency
engine performace
injection
strategy
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2019/56/e3sconf_ic-amme2018_01036.pdf
work_keys_str_mv AT anggonowillyanto effectofvarioussuperchargerboostpressuretoincylinderpressureandheatreleaseratecharacteristicsofdirectinjectiondieselengineatvariousenginerotation
AT ikomawataru effectofvarioussuperchargerboostpressuretoincylinderpressureandheatreleaseratecharacteristicsofdirectinjectiondieselengineatvariousenginerotation
AT chenhaoyu effectofvarioussuperchargerboostpressuretoincylinderpressureandheatreleaseratecharacteristicsofdirectinjectiondieselengineatvariousenginerotation
AT liuzhiyuan effectofvarioussuperchargerboostpressuretoincylinderpressureandheatreleaseratecharacteristicsofdirectinjectiondieselengineatvariousenginerotation
AT ichiyanagimitsuhisa effectofvarioussuperchargerboostpressuretoincylinderpressureandheatreleaseratecharacteristicsofdirectinjectiondieselengineatvariousenginerotation
AT suzukitakashi effectofvarioussuperchargerboostpressuretoincylinderpressureandheatreleaseratecharacteristicsofdirectinjectiondieselengineatvariousenginerotation