This paper presents an investigation on cooling effect and flow structure of the spherical dimple configuration during air flow on the Aluminium surface. It is prominently known that applying dimples profile causes an enhancement in heat transfer over a plain surface. A three level of Box-Behnken response surface methodology was performed to find the correlation between the input and output variables. A total of 17 different combinations of these inputs were performed throughout the experiment. The variable inputs to be investigated namely: dimple diameter of 10 - 14 mm, dimple orientation angle of 60°- 90°, and airflow velocity of 16 - 18 m/s to observe the response on the cooling time. The Aluminium block was heated to 60°C and cooled dow...
One of the most effective passive techniques for heat transfer enhancement in heat exchanger devices...
Purpose: The purpose of this paper is to study the effects of dimple geometries and arrangements on ...
The development of new heat exchanger patterns is ever changing. Companies are constantly pushing in...
Dimple profile plays a crucial role in enhancement of cooling process of various engineering applica...
In the car manufacturing industry,countless inventions, improvements,and modifications are continuou...
AbstractIn the present study, heat transfer analysis of dimpled surfaces of external flow was invest...
An investigation was conducted to determine whether dimples on a heat sink fin can increase heat tra...
AbstractFlat surface with ellipsoidal dimple of external flow was investigated in this study.10 type...
Nowadays, to improve or to increase efficiency of heat transfer medium to another task is very diffi...
An investigation was conducted to examine the effect of a row of cylindrical surface dimples in redu...
Good heat transfer performance with a moderate pressure drop penalty contributes to the gas turbine ...
In this paper, a numerical simulation is carried out to analyse the heat transfer performance of cop...
The significant increase in heat fluxes rejected from electronic equipment and other small devices h...
Purpose - The dimple is adopted into a double wall cooling structure which is widely used in hot gas...
This study presents an investigation of the heat transfer augmentation for the purpose of obtaining ...
One of the most effective passive techniques for heat transfer enhancement in heat exchanger devices...
Purpose: The purpose of this paper is to study the effects of dimple geometries and arrangements on ...
The development of new heat exchanger patterns is ever changing. Companies are constantly pushing in...
Dimple profile plays a crucial role in enhancement of cooling process of various engineering applica...
In the car manufacturing industry,countless inventions, improvements,and modifications are continuou...
AbstractIn the present study, heat transfer analysis of dimpled surfaces of external flow was invest...
An investigation was conducted to determine whether dimples on a heat sink fin can increase heat tra...
AbstractFlat surface with ellipsoidal dimple of external flow was investigated in this study.10 type...
Nowadays, to improve or to increase efficiency of heat transfer medium to another task is very diffi...
An investigation was conducted to examine the effect of a row of cylindrical surface dimples in redu...
Good heat transfer performance with a moderate pressure drop penalty contributes to the gas turbine ...
In this paper, a numerical simulation is carried out to analyse the heat transfer performance of cop...
The significant increase in heat fluxes rejected from electronic equipment and other small devices h...
Purpose - The dimple is adopted into a double wall cooling structure which is widely used in hot gas...
This study presents an investigation of the heat transfer augmentation for the purpose of obtaining ...
One of the most effective passive techniques for heat transfer enhancement in heat exchanger devices...
Purpose: The purpose of this paper is to study the effects of dimple geometries and arrangements on ...
The development of new heat exchanger patterns is ever changing. Companies are constantly pushing in...