AbstractThe aim of the present numerical investigation is to understand the effect of aspect ratio and partially thermally active zones on convective flow and heat transfer in a rectangular porous enclosure. Five different heating and cooling zones are considered along the vertical walls while the remaining portions of the sidewalls and top and bottom of the enclosure are adiabatic. The Brinkman–Forchheimer extended Darcy model is used in the study. The governing equations are solved by the finite volume method with the SIMPLE algorithm. The computations are carried out for a wide range of parameters and the results are presented graphically. The results reveal that the location of heating and cooling zones has a significant influence on th...
Steady, laminar, natural convection flow in porous square enclosure with inclination angle is consid...
Steady, laminar, natural convection flow in a square enclosure with partially active vertical wall i...
Steady, laminar, natural convection flow in a square enclosure with partially active vertical wall i...
AbstractThe aim of the present numerical investigation is to understand the effect of aspect ratio a...
The objective of this research is the study the influence of aspect ratio A1 of fluid portion compar...
The present study analyzes natural convective flow and heat transfer in a wavy cavity saturated with...
The heat transfer process takes place in numerous applications through the natural convection of flu...
In this work, the laminar natural convection in high aspect ratio three-dimensional enclosures has b...
In the present paper, the effect of heating sources on the rate of heat transfer is studied by incre...
In this work, the laminar natural convection in high aspect ratio three-dimensional enclosures has b...
In this work, the laminar natural convection in high aspect ratio three-dimensional enclosures has b...
In this study, heat transfer in a tall, rectangular permeable cavity with active thermal walls is in...
This numerical study quantifies the natural convective heat transfer occurring in an elongated recta...
Steady, laminar, natural convection flow in porous square enclosure with inclination angle is consid...
The analysis of conjugate natural convection heat transfer in a square inclined enclosure filled wit...
Steady, laminar, natural convection flow in porous square enclosure with inclination angle is consid...
Steady, laminar, natural convection flow in a square enclosure with partially active vertical wall i...
Steady, laminar, natural convection flow in a square enclosure with partially active vertical wall i...
AbstractThe aim of the present numerical investigation is to understand the effect of aspect ratio a...
The objective of this research is the study the influence of aspect ratio A1 of fluid portion compar...
The present study analyzes natural convective flow and heat transfer in a wavy cavity saturated with...
The heat transfer process takes place in numerous applications through the natural convection of flu...
In this work, the laminar natural convection in high aspect ratio three-dimensional enclosures has b...
In the present paper, the effect of heating sources on the rate of heat transfer is studied by incre...
In this work, the laminar natural convection in high aspect ratio three-dimensional enclosures has b...
In this work, the laminar natural convection in high aspect ratio three-dimensional enclosures has b...
In this study, heat transfer in a tall, rectangular permeable cavity with active thermal walls is in...
This numerical study quantifies the natural convective heat transfer occurring in an elongated recta...
Steady, laminar, natural convection flow in porous square enclosure with inclination angle is consid...
The analysis of conjugate natural convection heat transfer in a square inclined enclosure filled wit...
Steady, laminar, natural convection flow in porous square enclosure with inclination angle is consid...
Steady, laminar, natural convection flow in a square enclosure with partially active vertical wall i...
Steady, laminar, natural convection flow in a square enclosure with partially active vertical wall i...