THE TURBULENT SWIRLING FLOW AND HEAT TRANSFER IN DIFFUSERS
AHMED MOHAMED HASSAN EL-SHAZLY;
Abstract
ABSTRACT
swirl decay is computed and found to be dependent on the wall roughness, the swirl intensity at the diffuser inlet and the diffuser angle. Increasing the surface roughness makes the swirl decay faster along the conical diffusers compared to the s
swirl decay is computed and found to be dependent on the wall roughness, the swirl intensity at the diffuser inlet and the diffuser angle. Increasing the surface roughness makes the swirl decay faster along the conical diffusers compared to the s
Other data
| Title | THE TURBULENT SWIRLING FLOW AND HEAT TRANSFER IN DIFFUSERS | Authors | AHMED MOHAMED HASSAN EL-SHAZLY | Keywords | THE TURBULENT SWIRLING FLOW AND HEAT TRANSFER IN DIFFUSERS | Issue Date | 2007 | Description | ABSTRACT swirl decay is computed and found to be dependent on the wall roughness, the swirl intensity at the diffuser inlet and the diffuser angle. Increasing the surface roughness makes the swirl decay faster along the conical diffusers compared to the s |
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