Injection Characteristics of Gasohol using a Common Rail Injection System
The worldwide emission regulations for compression ignition (CI) engines have become more stringent driven by global warming issues and public health concerns. A promising solution to decrease greenhouse gas and emissions from CI engines is gasohol considered as a fuel-replacing diesel. The objectiv...
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Format: | Article |
Language: | English |
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Mahasarakham University
2019-06-01
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Series: | Research & Knowledge |
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Online Access: | https://stej.msu.ac.th/wp-content/uploads/2019/08/RK5-1-%E0%B8%AB%E0%B8%99%E0%B9%89%E0%B8%B2-20-25.pdf |
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author | Ronnachart Munsin Ichkan Nattsirapong Nawee Nuntapap Jerawich Narkpakdee Ob Nilapai Prathan Srichai Nattaporn Chaiyat |
author_facet | Ronnachart Munsin Ichkan Nattsirapong Nawee Nuntapap Jerawich Narkpakdee Ob Nilapai Prathan Srichai Nattaporn Chaiyat |
author_sort | Ronnachart Munsin |
collection | DOAJ |
description | The worldwide emission regulations for compression ignition (CI) engines have become more stringent driven by global warming issues and public health concerns. A promising solution to decrease greenhouse gas and emissions from CI engines is gasohol considered as a fuel-replacing diesel. The objective of this study is to study effect of gasohol on fuel injection characteristics of a common rail injection system used in CI engines. Gasohol E85, containing 85% ethanol and 15% gasoline, is tested and conventional diesel is a reference fuel. An injection measurement device based on Zeuch method was used for investigating the injection characteristics including injected amount and discharge coeffi cient. Gasohol were injected with both single and double injection strategies at a constant injection pressure of 450 bar into a back-pressure of 40 bar. The fi ndings of this study clearly show that injection characteristics of gasohol were signifi cantly differed from those of diesel, due to physical properties changed. At the same injection conditions, injected fuel rate are different. |
first_indexed | 2024-12-10T05:11:05Z |
format | Article |
id | doaj.art-a1cefdc9a03a4c5995d033d8f5ca15fd |
institution | Directory Open Access Journal |
issn | 2408-204X 2630-0400 |
language | English |
last_indexed | 2024-12-10T05:11:05Z |
publishDate | 2019-06-01 |
publisher | Mahasarakham University |
record_format | Article |
series | Research & Knowledge |
spelling | doaj.art-a1cefdc9a03a4c5995d033d8f5ca15fd2022-12-22T02:01:06ZengMahasarakham UniversityResearch & Knowledge2408-204X2630-04002019-06-0151162110.14456/randk.2019.4Injection Characteristics of Gasohol using a Common Rail Injection SystemRonnachart Munsin0Ichkan Nattsirapong1Nawee Nuntapap2Jerawich Narkpakdee3Ob Nilapai4Prathan Srichai5Nattaporn Chaiyat6College of Integrated Science and Technology, Rajamangala University of Technology Lanna, 98 Papong, Doisaket, Chiangmai, 50220, ThailandDepartment of Mechanical Engineering, Faculty of Engineering, Rajamangala University of Technology Lanna, 128 Huaykaew Rd., Chiangmai, 50300, ThailandDepartment of Mechanical Engineering, Faculty of Engineering, Rajamangala University of Technology Lanna, 128 Huaykaew Rd., Chiangmai, 50300, ThailandDepartment of Mechanical Engineering, Faculty of Engineering, Rajamangala University of Technology Lanna, 128 Huaykaew Rd., Chiangmai, 50300, ThailandAutomotive Technology and Alternative Energy Research Group (ATAE), Faculty of Engineering at Sriracha, Kasetsart University, 199 Sukhumvit Rd., Chonburi, 20230, ThailandDepartment of Mechanical Engineering, Faculty of Engineering, Princess of Naradhiwas University, Naradhiwas, 96000, ThailandThermal Design and Technology Laboratory (TDeT Lab), School of Renewable Energy, Maejo University, Nonghan, Sansai, Chiangmai, 50290, ThailandThe worldwide emission regulations for compression ignition (CI) engines have become more stringent driven by global warming issues and public health concerns. A promising solution to decrease greenhouse gas and emissions from CI engines is gasohol considered as a fuel-replacing diesel. The objective of this study is to study effect of gasohol on fuel injection characteristics of a common rail injection system used in CI engines. Gasohol E85, containing 85% ethanol and 15% gasoline, is tested and conventional diesel is a reference fuel. An injection measurement device based on Zeuch method was used for investigating the injection characteristics including injected amount and discharge coeffi cient. Gasohol were injected with both single and double injection strategies at a constant injection pressure of 450 bar into a back-pressure of 40 bar. The fi ndings of this study clearly show that injection characteristics of gasohol were signifi cantly differed from those of diesel, due to physical properties changed. At the same injection conditions, injected fuel rate are different.https://stej.msu.ac.th/wp-content/uploads/2019/08/RK5-1-%E0%B8%AB%E0%B8%99%E0%B9%89%E0%B8%B2-20-25.pdfgasoholfuel injection characteristicscommon rail injection system. |
spellingShingle | Ronnachart Munsin Ichkan Nattsirapong Nawee Nuntapap Jerawich Narkpakdee Ob Nilapai Prathan Srichai Nattaporn Chaiyat Injection Characteristics of Gasohol using a Common Rail Injection System Research & Knowledge gasohol fuel injection characteristics common rail injection system. |
title | Injection Characteristics of Gasohol using a Common Rail Injection System |
title_full | Injection Characteristics of Gasohol using a Common Rail Injection System |
title_fullStr | Injection Characteristics of Gasohol using a Common Rail Injection System |
title_full_unstemmed | Injection Characteristics of Gasohol using a Common Rail Injection System |
title_short | Injection Characteristics of Gasohol using a Common Rail Injection System |
title_sort | injection characteristics of gasohol using a common rail injection system |
topic | gasohol fuel injection characteristics common rail injection system. |
url | https://stej.msu.ac.th/wp-content/uploads/2019/08/RK5-1-%E0%B8%AB%E0%B8%99%E0%B9%89%E0%B8%B2-20-25.pdf |
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