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| Content Provider | The American Society of Mechanical Engineers (ASME) Digital Collection |
|---|---|
| Author | Elangovan, R. Kuohsing, E. Hung |
| Copyright Year | 2007 |
| Abstract | A numerical procedure for estimating the heating energy requirements for thermal anti-icing system design and analysis is presented. The leading edge geometry of an airfoil, exposed to atmospheric cloud containing a known sub-cooled water droplet size distribution, is analyzed and the surface temperature distribution required for anti-icing the airfoil surface is presented. The airfoil geometry flow field, computed using a compressible potential flow code, was utilized in the droplet trajectory code to calculate the local water collection efficiency. The collection efficiency and the surface velocity at the boundary layer edge are utilized in the thermal energy transfer rate calculation at the airfoil surface. |
| Sponsorship | Heat Transfer Division |
| Starting Page | 959 |
| Ending Page | 967 |
| Page Count | 9 |
| File Format | |
| ISBN | 0791842746 |
| DOI | 10.1115/HT2007-32080 |
| e-ISBN | 0791838013 |
| Volume Number | ASME/JSME 2007 Thermal Engineering Heat Transfer Summer Conference, Volume 1 |
| Conference Proceedings | ASME/JSME 2007 Thermal Engineering Heat Transfer Summer Conference collocated with the ASME 2007 InterPACK Conference |
| Language | English |
| Publisher Date | 2007-07-08 |
| Publisher Place | Vancouver, British Columbia, Canada |
| Access Restriction | Subscribed |
| Subject Keyword | Geometry Water Design Temperature distribution Heating Drops Trajectories (physics) Airfoils Flow (dynamics) Boundary layers Heat transfer |
| Content Type | Text |
| Resource Type | Article |
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