Turbulent heat transfer characteristics of three-dimensional and rectangular perforated fins, including perforation like channels along the length of the fins, are investigated. Both dimensions and numbers of perforations are changed at the highest porosity in the study of Shaeri and Yaghoubi [7] to determine the effects of perforation sizes on the heat transfer characteristics of the perforated fins. Results show that at a specific porosity, a fin with a higher number of perforations enhances the heat transfer rate more efficiently. Also, total drag is not only remarkably lower in perforated fins compared with a solid fin, but also becomes smaller by decreasing the number of perforations
In this study heat transfer performances of extended surfaces (fins) having square, circular, hexago...
Multi-tube multi-fin heat exchangers are extensively used in various industries. In the current work...
Finning or perforations are frequently used in heat exchange devices to increase the heat exchange b...
Turbulent heat transfer characteristics of three-dimensional and rectangular perforated fins, includi...
Shaeri and Yaghoubi [25] reported the highest heat transfer rate in a laminar flow for a perforated ...
Shaeri and Yaghoubi [25] reported the highest heat transfer rate in a laminar flow for a perforated ...
AbstractMicro heat sinks are adopted in electronics cooling together with different technologies to ...
22-27In the present paper we have investigated the enhancement of the heat transfer using fins with ...
The present paper reports a numerical study to investigate the heat transfer enhancement over horizo...
Basically, extended surface fins are used to increase the heat transfer rate from the surface. Howev...
AbstractEnhancement of heat removal and reduction of fin size become a major concern in designing he...
Multi-tube multi-fin heat exchangers are extensively used in various industries. In the current work...
Multi-tube multi-fin heat exchangers are extensively used in various industries. In the current work...
Nine fins with inline arrangement and eight fins in staggered arrangement with each fin having the d...
Multi-tube multi-fin heat exchangers are extensively used in various industries. In the current work...
In this study heat transfer performances of extended surfaces (fins) having square, circular, hexago...
Multi-tube multi-fin heat exchangers are extensively used in various industries. In the current work...
Finning or perforations are frequently used in heat exchange devices to increase the heat exchange b...
Turbulent heat transfer characteristics of three-dimensional and rectangular perforated fins, includi...
Shaeri and Yaghoubi [25] reported the highest heat transfer rate in a laminar flow for a perforated ...
Shaeri and Yaghoubi [25] reported the highest heat transfer rate in a laminar flow for a perforated ...
AbstractMicro heat sinks are adopted in electronics cooling together with different technologies to ...
22-27In the present paper we have investigated the enhancement of the heat transfer using fins with ...
The present paper reports a numerical study to investigate the heat transfer enhancement over horizo...
Basically, extended surface fins are used to increase the heat transfer rate from the surface. Howev...
AbstractEnhancement of heat removal and reduction of fin size become a major concern in designing he...
Multi-tube multi-fin heat exchangers are extensively used in various industries. In the current work...
Multi-tube multi-fin heat exchangers are extensively used in various industries. In the current work...
Nine fins with inline arrangement and eight fins in staggered arrangement with each fin having the d...
Multi-tube multi-fin heat exchangers are extensively used in various industries. In the current work...
In this study heat transfer performances of extended surfaces (fins) having square, circular, hexago...
Multi-tube multi-fin heat exchangers are extensively used in various industries. In the current work...
Finning or perforations are frequently used in heat exchange devices to increase the heat exchange b...