Effect of boost pressure on the in-cylinder tumble- motion of GDI engine under steady-state conditions using Stereoscopic-PIV

This paper experimentally investigates the effect of boost pressure on the in-cylinder flow field under steadystate conditions using stereoscopic particle image velocimetry (Stereo-PIV) through increasing the pressure difference across the intake valves. The FEV steady-state flow bench was modified...

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Main Authors: El Adawy, M., Heikal, M.R., Aziz, A.R.A., Munir, S., Siddiqui, M.I.
Format: Article
Published: Isfahan University of Technology 2018
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85046799302&doi=10.18869%2facadpub.jafm.73.246.28506&partnerID=40&md5=741b4b6a1dca612141ae137f7b9b0505
http://eprints.utp.edu.my/21342/
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spelling my.utp.eprints.213422018-09-25T06:37:44Z Effect of boost pressure on the in-cylinder tumble- motion of GDI engine under steady-state conditions using Stereoscopic-PIV El Adawy, M. Heikal, M.R. Aziz, A.R.A. Munir, S. Siddiqui, M.I. This paper experimentally investigates the effect of boost pressure on the in-cylinder flow field under steadystate conditions using stereoscopic particle image velocimetry (Stereo-PIV) through increasing the pressure difference across the intake valves. The FEV steady-state flow bench was modified to provide an optical access into the cylinder region. The stereoscopic PIV measurements were carried out at various pressure differences viz., 300, 450, and 600 mmH2O across the intake valves of Gasoline Direct Injection (GDI) head for the mid cylinder vertical tumble-plane. Ensemble average velocity vectors were used to characterize the tumble flow structure and for the calculation of tumble ratio and average turbulent kinetic energy. Moreover, the Proper Orthogonal Decomposition (POD) technique was conducted on the PIV measured velocity vector maps to identify the most energetic structures generated at different valve lifts and pressure differences. The results of stereoscopic PIV measurements showed that the overall in-cylinder flow structures were mainly dependent on the valve lift irrespective of the applied pressure difference. However, the level of the turbulence kinetic energy increased as the boost pressure increased. © 2018, Isfahan University of Technology. Isfahan University of Technology 2018 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-85046799302&doi=10.18869%2facadpub.jafm.73.246.28506&partnerID=40&md5=741b4b6a1dca612141ae137f7b9b0505 El Adawy, M. and Heikal, M.R. and Aziz, A.R.A. and Munir, S. and Siddiqui, M.I. (2018) Effect of boost pressure on the in-cylinder tumble- motion of GDI engine under steady-state conditions using Stereoscopic-PIV. Journal of Applied Fluid Mechanics, 11 (3). pp. 733-742. http://eprints.utp.edu.my/21342/
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 This paper experimentally investigates the effect of boost pressure on the in-cylinder flow field under steadystate conditions using stereoscopic particle image velocimetry (Stereo-PIV) through increasing the pressure difference across the intake valves. The FEV steady-state flow bench was modified to provide an optical access into the cylinder region. The stereoscopic PIV measurements were carried out at various pressure differences viz., 300, 450, and 600 mmH2O across the intake valves of Gasoline Direct Injection (GDI) head for the mid cylinder vertical tumble-plane. Ensemble average velocity vectors were used to characterize the tumble flow structure and for the calculation of tumble ratio and average turbulent kinetic energy. Moreover, the Proper Orthogonal Decomposition (POD) technique was conducted on the PIV measured velocity vector maps to identify the most energetic structures generated at different valve lifts and pressure differences. The results of stereoscopic PIV measurements showed that the overall in-cylinder flow structures were mainly dependent on the valve lift irrespective of the applied pressure difference. However, the level of the turbulence kinetic energy increased as the boost pressure increased. © 2018, Isfahan University of Technology.
format Article
author El Adawy, M.
Heikal, M.R.
Aziz, A.R.A.
Munir, S.
Siddiqui, M.I.
spellingShingle El Adawy, M.
Heikal, M.R.
Aziz, A.R.A.
Munir, S.
Siddiqui, M.I.
Effect of boost pressure on the in-cylinder tumble- motion of GDI engine under steady-state conditions using Stereoscopic-PIV
author_facet El Adawy, M.
Heikal, M.R.
Aziz, A.R.A.
Munir, S.
Siddiqui, M.I.
author_sort El Adawy, M.
title Effect of boost pressure on the in-cylinder tumble- motion of GDI engine under steady-state conditions using Stereoscopic-PIV
title_short Effect of boost pressure on the in-cylinder tumble- motion of GDI engine under steady-state conditions using Stereoscopic-PIV
title_full Effect of boost pressure on the in-cylinder tumble- motion of GDI engine under steady-state conditions using Stereoscopic-PIV
title_fullStr Effect of boost pressure on the in-cylinder tumble- motion of GDI engine under steady-state conditions using Stereoscopic-PIV
title_full_unstemmed Effect of boost pressure on the in-cylinder tumble- motion of GDI engine under steady-state conditions using Stereoscopic-PIV
title_sort effect of boost pressure on the in-cylinder tumble- motion of gdi engine under steady-state conditions using stereoscopic-piv
publisher Isfahan University of Technology
publishDate 2018
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85046799302&doi=10.18869%2facadpub.jafm.73.246.28506&partnerID=40&md5=741b4b6a1dca612141ae137f7b9b0505
http://eprints.utp.edu.my/21342/
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score 13.160551