1 |
Transient natural convective heat transfer in a trapezoidal cavity filled with non-Newtonian nanofluid with sinusoidal boundary conditions on both sidewalls Alsabery AI, Chamkha AJ, Saleh H, Hashim I Powder Technology, 308, 214, 2017 |
2 |
Heatline visualization of conjugate natural convection in a square cavity filled with nanofluid with sinusoidal temperature variations on both horizontal walls Alsabery AI, Chamkha AJ, Saleh H, Hashim I International Journal of Heat and Mass Transfer, 100, 835, 2016 |
3 |
Heatline visualization of natural convection in a trapezoidal cavity partly filled with nanofluid porous layer and partly with non-Newtonian fluid layer Alsabery AI, Chamkha AJ, Hussain SH, Saleh H, Hashim I Advanced Powder Technology, 26(4), 1230, 2015 |
4 |
Natural convection in an enclosure containing a sinusoidally heated cylindrical source Roslan R, Saleh H, Hashim I, Bataineh AS International Journal of Heat and Mass Transfer, 70, 119, 2014 |
5 |
Effect of Conduction in Bottom Wall on Benard Convection in a Porous Enclosure with Localized Heating and Lateral Cooling Alhashash A, Saleh H, Hashim I Transport in Porous Media, 96(2), 305, 2013 |
6 |
Conjugate Natural Convection in a Porous Enclosure Sandwiched by Finite Walls Under the Influence of Non-uniform Heat Generation and Radiation Alhashash A, Saleh H, Hashim I Transport in Porous Media, 99(3), 453, 2013 |
7 |
Assessment of different methods used to estimate Weibull distribution parameters for wind speed in Zafarana wind farm, Suez Gulf, Egypt Saleh H, Aly AA, Abdel-Hady S Energy, 44(1), 710, 2012 |
8 |
Visualization and analysis of surface tension and cooling effects on differentially heated cavity using heatline concept Saleh H, Arbin N, Roslan R, Hashim I International Journal of Heat and Mass Transfer, 55(21-22), 6000, 2012 |
9 |
Effect of rotating cylinder on heat transfer in a square enclosure filled with nanofluids Roslan R, Saleh H, Hashim I International Journal of Heat and Mass Transfer, 55(23-24), 7247, 2012 |
10 |
Removal of natural organic matter from potential drinking water sources by combined coagulation and adsorption using carbon nanomaterials Joseph L, Flora JRV, Park YG, Badawy M, Saleh H, Yoon Y Separation and Purification Technology, 95, 64, 2012 |