Convection heat transfer from a heated elliptical porous cylinder in the
incompressible and laminar cross-flow is studied numerically. The effects of Darcy
number (𝟏𝟎−𝟔 ≤ 𝑫𝒂 ≤ 𝟏𝟎−𝟐), aspect ratio (𝟎. 𝟐 ≤ 𝑨𝑹 ≤ 𝟓), Prandtl number
(𝟎. 𝟕 ≤ 𝑷𝒓 ≤ 𝟕𝟎), Reynolds number (𝟏𝟎 ≤ 𝑹𝒆 ≤ 𝟒𝟎), on the average Nusselt
number (Nu) as well as the lift and the drag coefficients are investigated. Two types
of thermal boundary conditions for porous cylinder are investigated: uniformly
distributed heat source and constant temperature. It is concluded that the aspect
ratio of the elliptical cylinder has a great influence on the heat transfer and fluid
flow characteristics of this problem. Results show that increasing the Darcy
number increases the Nusselt number and decreases the drag coefficient of the
porous cylinder. Moreover, values of Da smaller than 𝟏𝟎−𝟒 resemble the fluid flow
and heat transfer characteristics of the impermeable solid cy