作者: Rakesh Kumar , Ravinder Kumar , Tanya Sharma , Mohsen Sheikholeslami
DOI: 10.1007/S12190-020-01412-W
关键词: Mechanics 、 Heat transfer 、 Sink (geography) 、 Flow field 、 Porosity 、 Homotopy 、 Source sink 、 Nanofluid 、 Boundary layer 、 Mathematics
摘要: The primary target of present research is to examine the application OHAM (optimal homotopy asymptotic method) for a nanofluid transport through Darcy Forchheimer space toward stagnation region by comparing stretching and straining forces. porous matrix suspended with nanofluid, flow field under inconsistent heat source/sink influence. solutions guiding boundary layer equations report that pattern velocity profiles are inverted strength. Straightforward relation number transfer has also been observed when forces dominate novelty article lies in vector form presentation comparative analysis