activity
20142020
most citedTurbulent Particle Pair Diffusion, Locality Versus Non-locality: Numerical Simulations

1 citations · 4 across the 9 of their papers we have counts for

collaborators

9 papers

physics.flu-dyn2020★ 1 cited

Objective quantification of Particle Pair Diffusion in Homogeneous Isotropic Turbulence

Nadeem A. Malik, Fazle Hussain

Turbulence consists of interacting flow structures covering a wide range of length and time scales. A long-standing question looms over pair diffusion of particles in close proximi…

physics.flu-dyn2020

A Comparison of Turbulence Generated by 3DS Sparse Grids With Different Blockage Ratios and Different Co-Frame Arrangements

M. Syed Usama, Nadeem A. Malik

A new type of grid turbulence generator, the 3D sparse grid (3DS), is a co-planar arrangement of co-frames each containing a different length scale of grid elements [Malik, N. A. U…

physics.flu-dyn2016★ 1 cited

A realistic transport model with pressure dependent parameters for gas flow in tight porous media with application to determining shale rock properties

Iftikhar Ali, Nadeem A. Malik

Shale gas recovery has seen a major boom in recent years due to the increasing global energy demands; but the extraction technologies are very expensive. It is therefore important…

physics.flu-dyn2016

A numerical study of the the response of transient inhomogeneous flames to pressure fluctuations and negative stretch in contracting hydrogen/air flames

Nadeem A. Malik, Theodosios Korakianitis, Terese Lovas

Transient premixed hydrogen/air flames contracting through inhomogeneous fuel distributions and subjected to stretch and pressure oscillations are investigated numerically using an…

physics.flu-dyn2015★ 1 cited

Residual sweeping effect in turbulent particle pair diffusion in a Lagrangian diffusion model

Nadeem A. Malik

Thomson, D. J. \& Devenish, B. J. [{\em J.~Fluid Mech.} 526, 277 (2005)] and others have suggested that sweeping effects make Lagrangian properties in Kinematic Simulations (KS), F…

math.GM2014

Approximate solutions of a time-fractional diffusion equation with a source term using the variational iteration method

Iftikhar Ali, Bilal Chanane, Nadeem A. Malik

We consider a time fractional differential equation of order , , $$ \frac{\partial c(x,t)}{\partial t}={}^C_0\mathcal{D}_t^α[(Ac)(x,t)]+q(x,t) ,\quad x > 0, t > 0, \quad…