CH. Amanullaa,b,*
, N. Nagendraa
, M. Suryanarayana Reddyb
Frontiers in Heat and Mass Transfer, Vol.9, pp. 1-9, 2017, DOI:10.5098/hmt.9.22
Abstract In this article, the combined theoretical and computational study of the magneto hydrodynamic heat transfer in an electro-conductive polymer on the
external surface of a vertical truncated cone under radial magnetic field is presented. Thermal and velocity (hydrodynamic) slip are considered at the
vertical truncated cone surface via modified boundary conditions. The Williamson viscoelastic model is employed which is representative of certain
industrial polymers. The governing partial differential equations (PDEs) are transformed into highly nonlinear, coupled, multi-degree non-similar
partial differential equations consisting of the momentum and energy equations via appropriate non-similarity transformations. These transformed
conservation More >