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Maryam Akram
Maryam Akram
Research and Advanced Engineering, Ford Motor Company
Verified email at umich.edu
Title
Cited by
Cited by
Year
The comparative study of single and two-phase models for magnetite nanofluid forced convection in a tube
P Hanafizadeh, M Ashjaee, M Goharkhah, K Montazeri, M Akram
International Communications in Heat and Mass Transfer 65, 58-70, 2015
342015
A numerical approach to elucidate the combustion and emission characteristics of n-dodecane under hydrogen enrichment
MZ Akram, F Ma, MW Akram
Energy Conversion and Management 255, 115294, 2022
132022
Flow of a Casson fluid through a locally-constricted porous channel: a numerical study
H Amlimohamadi, M Akram, K Sadeghy
Korea-Australia Rheology Journal 28, 129-137, 2016
132016
A priori analysis of reduced description of dynamical systems using approximate inertial manifolds
M Akram, M Hassanaly, V Raman
Journal of Computational Physics 409, 109344, 2020
92020
An approximate inertial manifold (AIM) based closure for turbulent flows
M Akram, M Hassanaly, V Raman
AIP Advances 12 (7), 2022
72022
Reduced Description of Dynamical Systems by Approximate Inertial Manifolds
M Akram, M Hassanaly, V Raman
AIAA Scitech 2019 Forum, 2009, 2019
72019
Using approximate inertial manifold approach to model turbulent non-premixed combustion
M Akram, V Raman
Physics of Fluids 33 (3), 2021
52021
CO2 and H2 effects on lean limits and combustion characteristics of ethanol flame
MZ Akram, F Ma, U Sultan, MW Akram, T Rashid
SAE Technical Paper, 2022
32022
Enhancing Dynamical System Modeling through Interpretable Machine Learning Augmentations: A Case Study in Cathodic Electrophoretic Deposition
C Jacobsen, J Dong, M Khalloufi, X Huan, K Duraisamy, M Akram, W Liu
arXiv preprint arXiv:2401.08414, 2024
12024
NH 3 and H 2 Impact on Combustion and Emission Characteristics of iC 8 H 18 Flame under Premixed and Diffusion Conditions
MZ Akram, H Rashid, Y Deng, M Aziz, Q Zhu, MW Akram
SAE Technical Paper, 2024
2024
Variational Bayesian Optimal Experimental Design with Normalizing Flows
J Dong, C Jacobsen, M Khalloufi, M Akram, W Liu, K Duraisamy, X Huan
arXiv preprint arXiv:2404.13056, 2024
2024
Effects of Premixed and Diffusion Conditions on the Iso-Octane/ammonia and Iso-Octane/ethanol Flames
MZ Akram, Y Deng, MW Akram, M Faisal, Q Jia
Combustion Science and Technology, 1-26, 2023
2023
Combustion Characteristics of Iso-Octane/Hydrogen Flames under T and P Effects up to near Flammability Limits
MZ Akram, M Aziz, F Ma, Y Deng, MW Akram, A Akhtar
SAE Technical Paper, 2023
2023
CO2 and H2 effects on lean limits and combustion characteristics of ethanol flame
F Ma, U Sultan, M Akram, T Rashid
The 26th Small Powertrains and Energy Systems Technology Conference, 2022
2022
Publisher's Note:“Using approximate inertial manifold approach to model turbulent non-premixed combustion”[Phys. Fluids 33, 035125 (2021)]
M Akram, V Raman
Physics of Fluids 33 (5), 2021
2021
Prediction of Turbulent Non-premixed Combustion by Approximate Inertial Manifolds
M Akram, V Raman
AIAA Scitech 2020 Forum, 0821, 2020
2020
Reduced order description of diffusion flames with inertial manifold theory
M Akram, V Raman
APS Division of Fluid Dynamics Meeting Abstracts, A06. 002, 2019
2019
The Use of Approximate Inertial Manifolds for Chaotic Systems including Turbulent Flows
M Akram, M Hassanaly, V Raman
Bulletin of the American Physical Society 63, 2018
2018
PLEASE CITE THIS ARTICLE AS DOI: 10.1063/5.0039402
M Akram, V Raman
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