Amplitude equation and heat transport for Rayleigh–Bénard convection in Newtonian liquids with nanoparticles PG Siddheshwar, N Meenakshi International Journal of Applied and Computational Mathematics 3, 271-292, 2017 | 79 | 2017 |
Comparison of the effects of three types of time-periodic body force on linear and non-linear stability of convection in nanoliquids PG Siddheshwar, N Meenakshi European Journal of Mechanics-B/Fluids 77, 221-229, 2019 | 21 | 2019 |
A theoretical study of enhanced heat transfer in nanoliquids with volumetric heat source N Meenakshi, PG Siddheshwar Journal of Applied mathematics and Computing 57, 703-728, 2018 | 16 | 2018 |
Flow and heat transfer in a Newtonian nanoliquid due to a curved stretching sheet PG Siddheshwar, M Nerolu, I Pažanin Zeitschrift für Naturforschung A 72 (9), 833-842, 2017 | 10 | 2017 |
Controlling Rayleigh–Bénard Magnetoconvection in Newtonian Nanoliquids by Rotational, Gravitational and Temperature Modulations: A Comparative Study M Nerolu, PG Siddheshwar Arabian Journal for Science and Engineering 47 (6), 7837-7857, 2022 | 4 | 2022 |
Effects of suction and freestream velocity on a hydromagnetic stagnation-point flow and heat transport in a Newtonian fluid toward a stretching sheet PG Siddheshwar, N Meenakshi Journal of Heat Transfer 138 (9), 094501, 2016 | 4 | 2016 |
Exact Solution of Boundary Layer Flow Due to a Quadratically Shrinking Sheet M Narayana, M Nerolu SASTech-Technical Journal of RUAS 17 (1), 21-24, 2018 | 1 | 2018 |
STUDY OF HEAT TRANSPORT IN NEWTONIAN WATER-BASED NANOLIQUIDS USING SINGLE-PHASE MODEL AND GINZBURG-LANDAU APPROACH PG Siddheshwar, N Meenakshi, Y Kakimoto, A Nakayama VIJNANA BHARATHI, 85, 2016 | | 2016 |
Circulation in the presence of suspended particles-Lorenz model N Meenakshi, PG Siddheshwar | | |