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Dive into the research topics where Sandeep Munshi is active.

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Featured researches published by Sandeep Munshi.


International Journal of Engine Research | 2018

Large-eddy simulation of direct injection natural gas combustion in a heavy-duty truck engine using modified conditional moment closure model with low-dimensional manifold method

Jian Huang; Gordon McTaggart-Cowan; Sandeep Munshi

This article describes the application of a modified first-order conditional moment closure model used in conjunction with the trajectory-generated low-dimensional manifold method in large-eddy simulation of pilot ignited high-pressure direct injection natural gas combustion in a heavy-duty diesel engine. The article starts with a review of the intrinsic low-dimensional manifold method for reducing detailed chemistry and various formulations for the construction of such manifolds. It is followed by a brief review of the conditional moment closure method for modelling the interaction between turbulence and combustion chemistry. The high computational cost associated with the direct implementation of the basic conditional moment closure model was discussed. The article then describes the formulation of a modified approach to solve the conditional moment closure equation, whose reaction source terms for the conditional mass fractions for species were obtained by projecting the turbulent perturbation onto the reaction manifold. The main model assumptions were explained and the resulting limitations were discussed. A numerical experiment was conducted to examine the validity the model assumptions. The model was then implemented in a combustion computational fluid dynamics solver developed on an open-source computational fluid dynamics platform. Non-reactive jet simulations were first conducted and the results were compared to the experimental measurement from a high-pressure visualization chamber to verify that the jet penetration under engine relevant conditions was correctly predicted. The model was then used to simulate natural gas combustion in a heavy-duty diesel engine equipped with a high-pressure direct injection system. The simulation results were compared with the experimental measurement from a research engine to verify the accuracy of the model for both the combustion rate and engine-out emissions.


Archive | 2001

Method and apparatus for gaseous fuel introduction and controlling combustion in an internal combustion engine

Richard Ancimer; Sandeep Munshi; Patric Ouellette; Konstantin Tanin; David A. Ruthmansdorfer


Archive | 2004

Method and apparatus for controlling combustion quality of a gaseous-fuelled internal combustion engine

Richard Ancimer; Konstantin Tanin; Tim Frazier; Sandeep Munshi


Spring Fuels & Lubricants Meeting & Exhibition | 2002

Direct Injection of Natural Gas in a Heavy-Duty Diesel Engine

James Harrington; Sandeep Munshi; Costi Nedelcu; Patric Ouellette; Jeff Thompson; Stewart Whitfield


Archive | 2013

GASEOUS-FUELLED STOICHIOMETRIC COMPRESSION IGNITION INTERNAL COMBUSTION ENGINE

Sandeep Munshi; Alan Welch; Gordon McTaggart-Cowan


Archive | 2005

EXHAUST GAS RECIRCULATION METHODS AND APPARATUS FOR REDUCING NOx EMISSIONS FROM INTERNAL COMBUSTION ENGINES

Philip G. Hill; Mark E. Dunn; Sandeep Munshi


Archive | 2009

Fuel injection valve and method for co-injecting a liquid and a gaseous fuel into the combustion chamber of an internal combustion engine

David Mumford; Sandeep Munshi


Powertrains, Fuels and Lubricants Meeting | 2008

Challenges in Developing Hydrogen Direct Injection Technology for Internal Combustion Engines

Alan Welch; David Mumford; Sandeep Munshi; Jim Holbery; Brad Alan Boyer; Matthew Younkins; Howard Jung


Archive | 2006

Method for injecting gaseous fuels into an internal combustion engine at high pressures

Sandeep Munshi


SAE International journal of engines | 2015

Direct Injection of Natural Gas at up to 600 Bar in a Pilot-Ignited Heavy-Duty Engine

Gordon McTaggart-Cowan; Ken Mann; Jian Huang; Ashish Singh; Bronson Patychuk; Zheng Xiong Zheng; Sandeep Munshi

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