• 72 Citations
20152018
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Personal profile

Research profile

M. Izadi Najafabadi obtained his BSc degree in Mechanical Engineering from Amirkabir University of  Technology, Tehran, in 2010 and his MSc degree from University Putra Malaysia, Kuala Lumpur, in 2014. He is currently PhD candidate at Eindhoven University of Technology in the field of Internal Combustion Engines and application of laser diagnostic techniques.

Education/Academic qualification

Universiti Putra Malaysia

Sep 2011Mar 2014

Amirkabir University of Technology

Aug 2005Sep 2010

Fingerprint Dive into the research topics where Mohammad Izadi Najafabadi is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 2 Similar Profiles
Ignition Engineering & Materials Science
Engine cylinders Engineering & Materials Science
Engines Engineering & Materials Science
Gasoline Engineering & Materials Science
Soot Engineering & Materials Science
Chemiluminescence Engineering & Materials Science
Naphthas Engineering & Materials Science
Velocity measurement Engineering & Materials Science

Network Recent external collaboration on country level. Dive into details by clicking on the dots.

Research Output 2015 2018

1 Citation (Scopus)

Combustion stratification study of partially premixed combustion using Fourier transform analysis of OH* chemiluminescence images

Izadi Najafabadi, M., Somers, B., Johansson, B. & Dam, N., 1 Dec 2018, In : International Journal of Engine Research. 19, 10, p. 1024-1035

Research output: Contribution to journalArticleAcademicpeer-review

Open Access
File
Chemiluminescence
Fourier transforms
Imaging techniques
Fourier analysis
Controllability
8 Citations (Scopus)

Analysis of transition from HCCI to CI via PPC with low octane gasoline fuels using optical diagnostics and soot particle analysis

An, Y., Vallinayagam, R., Vedharaj, S., Masurier, J-B., Dawood, A., Izadi Najafabadi, M., Somers, B. & Johansson, B., 8 Oct 2017, In : SAE Technical Papers. 12 p., 2017-01-2403

Research output: Contribution to journalArticleAcademicpeer-review

Soot
Gasoline
Ignition
Engine cylinders
Engines
8 Citations (Scopus)

Combustion homogeneity and emission analysis during the transition from CI to HCCI for FACE I gasoline

Vedharaj, S., Vallinayagam, R., An, Y., Izadi Najafabadi, M., Somers, B., Chang, J. & Johansson, B., 8 Oct 2017, In : SAE Technical Papers. 10 p., 2017-01-2263

Research output: Contribution to journalArticleAcademicpeer-review

Gasoline
Soot
Engines
Computer aided design
Air intakes
14 Citations (Scopus)

Combustion stratification for naphtha from CI combustion to PPC

Vallinayagam, R., Vedharaj, S., An, Y., Dawood, A., Izadi Najafabadi, M., Somers, L. M. T. & Johansson, B. H., 28 Mar 2017, In : SAE Technical Papers. 12 p., 2017-01-0745

Research output: Contribution to journalArticleAcademicpeer-review

Naphthas
Fuel injection
Dilution
Air intakes
Engine cylinders
4 Citations (Scopus)

Compression ignition of light naphtha and its multicomponent surrogate under partially premixed conditions

Vallinayagam, R., Vedharaj, S., An, Y., Dawood, A., Izadi Najafabadi, M., Somers, B., Chang, J., Sarathy, M. & Johansson, B., 4 Sep 2017, In : SAE Technical Papers. 2017, 10 p., 2017-24-0078

Research output: Contribution to journalArticleAcademicpeer-review

Naphthas
Ignition
Compaction
Engine cylinders
Engines

Activities 2015 2017

  • 2 Visiting an external academic institution

ETH Zurich

Mohammad Izadi Najafabadi (Visiting researcher)
15 May 201715 Aug 2017

Activity: Visiting an external institution typesVisiting an external academic institutionScientific

Lund University

Mohammad Izadi Najafabadi (Visiting researcher)
May 2015Jul 2015

Activity: Visiting an external institution typesVisiting an external academic institutionScientific

Student theses

Chemiluminescene and spectroscopy study of partially premixed combustion in a light-duty optical engine

Author: Egelmeers, L., 2 Jun 2016

Supervisor: Somers, L. (Supervisor 1), Dam, N. (Supervisor 2) & Izadi Najafabadi, M. (Supervisor 2)

Student thesis: Master