Articles

type: Journal
Title DOI Date
Numerical simulation of laminar premixed CH4/air flame by flamelet-generated manifolds A sensitivity analysis on the effects of progress variables 10.1016/j.jtice.2015.10.014
CFD SIMULATION OF FORCED CONVECTIVE HEAT TRANSFER BY TETRAKAIDECAHEDRON MODEL IN METAL FOAMS #
Microtomography-based numerical simulation of fluid flow and heat transfer in open cell metal foams #
A droplet deformation and breakup model based on virtual work principle 10.1063/1.4913809
3D NUMERICAL INVESTIGATION OF FLUID FLOW THROUGH OPEN-CELL METAL FOAMS USING MICRO-TOMOGRAPHY IMAGES #
The effects of kinetic parameters on combustion characteristics in a sinetring bed #
TWO-DIMENSIONAL AXISYMMETRIC MODELING of combustion in an iron ore sintering bed #
Analysis of entropy generation in a hydrogen-enriched turbulent non-premixed flame #
Investigating energy consumption and quality of rough rice drying process using a grain heat pump dryer #
Investigating the effect of viscosity and nonlocal effects on the stability of SWCNT conveying flowing fluid using nonlinear shell model #
Laminar Flamelet Modeling of a Turbulent CH4/H2/N2 jet diffusion flame using artificial neural networks #
type: Conference
Title Date
COMPARISON OF FLUID FLOW BEHAVIOR IN A FIXED BED OF CERAMIC FOAM SPHERES WITH A MONOLITHIC CERAMIC FOAM
A Sensitivity Analysis on Choosing H 2 O as a Progress Variable in CH4/Air Premixed Combustion Using FGM
Modeling of droplet dynamics in Bag breakup regime for use in Lagrangian droplet tracking codes
Modeling of Droplet Dynamics in Secondary Breakup Process
A new robust algorithm for particle tracking on unstructured grids
A comparison between the performance of two extended mechanisms in predicting pollutants of a methane-air jet diffusion flame
A comparison between Blasco-Chorda and Haselbacher-Najjar algorithms in computation of particle tracking in a flow field
A Compsrison between the performances of two detailed chemical mechanisms in hydrocarbon flames
A comparison between the performance of two detailed chemical mechanisms in hydrocarbon flames