A two‐phase model for flow of blood in narrow tubes with increased effective viscosity near the wall M Sharan, AS Popel Biorheology 38 (5-6), 415-428, 2001 | 362 | 2001 |
Application of the multiquadric method for numerical solution of elliptic partial differential equations M Sharan, EJ Kansa, S Gupta Applied Mathematics and Computation 84 (2-3), 275-302, 1997 | 215 | 1997 |
A mathematical model for the atmospheric dispersion in low winds with eddy diffusivities as linear functions of downwind distance. Atmospheric Environment, 30, 1137-45(1996). M Sharan, MP Singh, AK Yadav Atmospheric Environment 30, 1137-45, 1996 | 154 | 1996 |
A mathematical model for the dispersion of air pollutants in low wind conditions M Sharan, AK Yadav, MP Singh, P Agarwal, S Nigam Atmospheric Environment 30 (8), 1209-1220, 1996 | 137 | 1996 |
Visibility and incidence of respiratory diseases during the 1998 haze episode in Brunei Darussalam AK Yadav, K Kumar, M Hj Awg Kasim, MP Singh, SK Parida, M Sharan Air quality, 265-277, 2003 | 122 | 2003 |
A compartmental model for oxygen transport in brain microcirculation M Sharan, MD Jones, RC Koehler, RJ Traystman, AS Popel Annals of biomedical engineering 17, 13-38, 1989 | 111 | 1989 |
Simulation of diffusion experiments under light wind, stable conditions by a variable K-theory model M Sharan, A kumar Yadav Atmospheric Environment 32 (20), 3481-3492, 1998 | 86 | 1998 |
Experimental and theoretical studies of oxygen gradients in rat pial microvessels M Sharan, EP Vovenko, A Vadapalli, AS Popel, RN Pittman Journal of Cerebral Blood Flow & Metabolism 28 (9), 1597-1604, 2008 | 66 | 2008 |
A two-dimensional analytical model for the dispersion of air-pollutants in the atmosphere with a capping inversion M Sharan, M Modani Atmospheric environment 40 (19), 3479-3489, 2006 | 65 | 2006 |
Mathematical modeling of diffusion and transport of pollutants in the atmospheric boundary layer M Sharan, SG Gopalakrishnan Pure and Applied Geophysics 160, 357-394, 2003 | 64 | 2003 |
Least square data assimilation for identification of the point source emissions M Sharan, SK Singh, JP Issartel Pure and applied geophysics 169, 483-497, 2012 | 63 | 2012 |
An inversion technique for the retrieval of single-point emissions from atmospheric concentration measurements M Sharan, JP Issartel, SK Singh, P Kumar Proceedings of the Royal Society A: Mathematical, Physical and Engineering …, 2009 | 57 | 2009 |
A mathematical model of countercurrent exchange of oxygen between paired arterioles and venules M Sharan, AS Popel Mathematical biosciences 91 (1), 17-34, 1988 | 57 | 1988 |
An analytical model for dispersion of pollutants from a continuous source in the atmospheric boundary layer P Kumar, M Sharan Proceedings of the Royal Society A: Mathematical, Physical and Engineering …, 2010 | 53 | 2010 |
An inversion technique to retrieve the source of a tracer with an application to synthetic satellite measurements JP Issartel, M Sharan, M Modani Proceedings of the Royal Society A: Mathematical, Physical and Engineering …, 2007 | 50 | 2007 |
A compartmental model for oxygen transport in brain microcirculation in the presence of blood substitutes M Sharan, AS Popel Journal of theoretical Biology 216 (4), 479-500, 2002 | 50 | 2002 |
Inverse modelling methods for identifying unknown releases in emergency scenarios: an overview SK Singh, M Sharan, JP Issartel International Journal of Environment and Pollution 57 (1-2), 68-91, 2015 | 49 | 2015 |
Statistical evaluation of sigma schemes for estimating dispersion in low wind conditions AK Yadav, M Sharan Atmospheric Environment 30 (14), 2595-2606, 1996 | 46 | 1996 |
Study of radiative and turbulent processes in the stable boundary layer under weak wind conditions SG Gopalakrishnan, M Sharan, RT McNider, MP Singh Journal of the atmospheric sciences 55 (6), 954-960, 1998 | 45 | 1998 |
An analytical model for crosswind integrated concentrations released from a continuous source in a finite atmospheric boundary layer M Sharan, P Kumar Atmospheric Environment 43 (14), 2268-2277, 2009 | 42 | 2009 |