作者: Dulal Pal , Debranjan Chatterjee , Kuppalapalle Vajravelu
DOI: 10.1016/J.JPPR.2020.03.003
关键词:
摘要: Abstract The objective of the present work is to analyze flow, heat and mass transfer characteristics in a thin nanofluid film over heated stretched sheet presence non-uniform source/sink thermal radiation. Similarity variables are used transform partial differential equations into system ordinary equations. resulting nonlinear then solved numerically by using Runge-Kutta-Fehlberg integration scheme with shooting technique. effects unsteadiness parameter, radiation, parameter on flow fields analyzed. It found that an increase velocity temperature gradient profiles. However, radiation affects nanoparticle but reversed true concentration gradient. Furthermore, increasing values there