most citedLarge Eddy Simulation of MILD combustion using PDF based turbulence-chemistry interaction models

27 citations · 95 across the 5 of their papers we have counts for

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5 papers

physics.flu-dyn202126 cited

Investigation of NOx in piloted stabilized methane-air diffusion flames using Finite-rate and Infinitely-fast chemistry based combustion models

Rohit Saini, Swetha Prakash, Ashoke De +1

The present work reports on the numerical investigation of NOx in three turbulent piloted diffusion flames of different levels of extinction. The study involves two-dimensional axi…

physics.flu-dyn202111 cited

Numerical investigation of MILD combustion using Multi-Environment Eulerian Probability Density Function modeling

Akshay Dongre, Ashoke De, Rakesh Yadav

In the present paper, the flames imitating Moderate and Intense Low Oxygen Dilution (MILD) combustion are studied using the Probability Density Function (PDF) modeling approach. Tw…

physics.flu-dyn20218 cited

Numerical Investigation of Soot Formation in Turbulent Diffusion Flame with Strong Turbulence Chemistry Interaction

B. Manedhar Reddy, Ashoke De, Rakesh Yadav

The present work is aimed at examining the ability of different models in predicting soot formation in Delft flame III, which is a non-premixed pilot stabilized natural gas flame.…

physics.flu-dyn202123 cited

Effect of Precursors and Radiation on Soot Formation in Turbulent Diffusion Flame

Manedhar Reddy B, Ashoke De, Rakesh Yadav

Soot formation in Delft flame III, a pilot stabilized turbulent diffusion flame burning natural gas/air, is investigated using ANSYS FLUENT by considering two different approaches…

physics.flu-dyn202127 cited

Large Eddy Simulation of MILD combustion using PDF based turbulence-chemistry interaction models

Rohit Bhaya, Ashoke De, Rakesh Yadav

The present work reports on LES of turbulent reacting flow of the Delft-Jet-in-Hot-Coflow (DJHC) burner, emulating MILD combustion, with transported PDF based combustion models usi…