Diesel Spray: Development of Spray in Diesel Engine

Research and development in the internal combustion engine (ICE) has been growing progressively. Issues such as air pollution, fuel cost, and market competitiveness have driven the automotive industry to develop and manufacture automobiles that meet new regulation and customers� needs. The diesel...

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Main Authors: Djamari, D.W., Idris, M., Paristiawan, P.A., Abbas, M.M., Samuel, O.D., Soudagar, M.E.M., Herawan, S.G., Chandran, D., Yusuf, A.A., Panchal, H., Veza, I.
Format: Article
Published: 2022
Online Access:http://scholars.utp.edu.my/id/eprint/33991/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85143783061&doi=10.3390%2fsu142315902&partnerID=40&md5=42a4e85513d86034b3f9a7e40c22d998
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spelling oai:scholars.utp.edu.my:339912022-12-28T07:44:15Z http://scholars.utp.edu.my/id/eprint/33991/ Diesel Spray: Development of Spray in Diesel Engine Djamari, D.W. Idris, M. Paristiawan, P.A. Abbas, M.M. Samuel, O.D. Soudagar, M.E.M. Herawan, S.G. Chandran, D. Yusuf, A.A. Panchal, H. Veza, I. Research and development in the internal combustion engine (ICE) has been growing progressively. Issues such as air pollution, fuel cost, and market competitiveness have driven the automotive industry to develop and manufacture automobiles that meet new regulation and customers� needs. The diesel engine has some advantages over the gasoline or spark ignition engine, including higher engine efficiency, greater power output, as well as reliability. Since the early stage of the diesel engine�s development phase, the quest to obtain better atomization, proper fuel supply, and accurate timing control, have triggered numerous innovations. In the last two decades, owing to the development of optical technology, the visualization of spray atomization has been made possible using visual diagnostics techniques. This advancement has greatly improved research in spray evolution. Yet, a more comprehensive understanding related to these aspects has not yet been agreed upon. Diesel spray, in particular, is considered a complicated phenomenon to observe because of its high-speed, high pressure, as well as its high temperature working condition. Nevertheless, several mechanisms have been successfully explained using fundamental studies, providing several suggestions in the area, such as liquid atomization and two-phase spray flow. There are still many aspects that have not yet been agreed upon. This paper comprehensively reviews the current status of theoretical diesel spray and modelling, including some important numerical and experimental aspects. © 2022 by the authors. 2022 Article NonPeerReviewed Djamari, D.W. and Idris, M. and Paristiawan, P.A. and Abbas, M.M. and Samuel, O.D. and Soudagar, M.E.M. and Herawan, S.G. and Chandran, D. and Yusuf, A.A. and Panchal, H. and Veza, I. (2022) Diesel Spray: Development of Spray in Diesel Engine. Sustainability (Switzerland), 14 (23). https://www.scopus.com/inward/record.uri?eid=2-s2.0-85143783061&doi=10.3390%2fsu142315902&partnerID=40&md5=42a4e85513d86034b3f9a7e40c22d998 10.3390/su142315902 10.3390/su142315902 10.3390/su142315902
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description Research and development in the internal combustion engine (ICE) has been growing progressively. Issues such as air pollution, fuel cost, and market competitiveness have driven the automotive industry to develop and manufacture automobiles that meet new regulation and customers� needs. The diesel engine has some advantages over the gasoline or spark ignition engine, including higher engine efficiency, greater power output, as well as reliability. Since the early stage of the diesel engine�s development phase, the quest to obtain better atomization, proper fuel supply, and accurate timing control, have triggered numerous innovations. In the last two decades, owing to the development of optical technology, the visualization of spray atomization has been made possible using visual diagnostics techniques. This advancement has greatly improved research in spray evolution. Yet, a more comprehensive understanding related to these aspects has not yet been agreed upon. Diesel spray, in particular, is considered a complicated phenomenon to observe because of its high-speed, high pressure, as well as its high temperature working condition. Nevertheless, several mechanisms have been successfully explained using fundamental studies, providing several suggestions in the area, such as liquid atomization and two-phase spray flow. There are still many aspects that have not yet been agreed upon. This paper comprehensively reviews the current status of theoretical diesel spray and modelling, including some important numerical and experimental aspects. © 2022 by the authors.
format Article
author Djamari, D.W.
Idris, M.
Paristiawan, P.A.
Abbas, M.M.
Samuel, O.D.
Soudagar, M.E.M.
Herawan, S.G.
Chandran, D.
Yusuf, A.A.
Panchal, H.
Veza, I.
spellingShingle Djamari, D.W.
Idris, M.
Paristiawan, P.A.
Abbas, M.M.
Samuel, O.D.
Soudagar, M.E.M.
Herawan, S.G.
Chandran, D.
Yusuf, A.A.
Panchal, H.
Veza, I.
Diesel Spray: Development of Spray in Diesel Engine
author_facet Djamari, D.W.
Idris, M.
Paristiawan, P.A.
Abbas, M.M.
Samuel, O.D.
Soudagar, M.E.M.
Herawan, S.G.
Chandran, D.
Yusuf, A.A.
Panchal, H.
Veza, I.
author_sort Djamari, D.W.
title Diesel Spray: Development of Spray in Diesel Engine
title_short Diesel Spray: Development of Spray in Diesel Engine
title_full Diesel Spray: Development of Spray in Diesel Engine
title_fullStr Diesel Spray: Development of Spray in Diesel Engine
title_full_unstemmed Diesel Spray: Development of Spray in Diesel Engine
title_sort diesel spray: development of spray in diesel engine
publishDate 2022
url http://scholars.utp.edu.my/id/eprint/33991/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85143783061&doi=10.3390%2fsu142315902&partnerID=40&md5=42a4e85513d86034b3f9a7e40c22d998
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score 13.214268