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| Content Provider | The American Society of Mechanical Engineers (ASME) Digital Collection |
|---|---|
| Author | Annapragada, S. Ravi Jayathi, Y. Murthy Suresh, V. Garimella |
| Copyright Year | 2008 |
| Abstract | A computational methodology is proposed to describe the fluid transport in compressed open-celled metallic foams. Various unit-cell foam geometries are numerically deformed under uniaxial loads using a finite element method. An algorithm is developed and implemented to deform the fluid domain mesh inside the unit-cell foam based on the deformed solid unit-cell geometry. Direct simulations of the fluid transport in these deformed meshes are then performed over a range of Reynolds numbers used in practical applications. The model is validated against available experimental results and correlations. A corrected model is proposed for the permeability of compressed foams as a function of strain for flows transverse to the direction of compression. The thermal conductivity of fluid-saturated foams is also computed. Compression of foams increases the conductivity transverse to the direction of compression and decreases the conductivity parallel to it. |
| Sponsorship | Heat Transfer Division |
| Starting Page | 475 |
| Ending Page | 484 |
| Page Count | 10 |
| File Format | |
| ISBN | 9780791848470 |
| DOI | 10.1115/HT2008-56375 |
| e-ISBN | 0791838323 |
| Volume Number | Heat Transfer: Volume 1 |
| Conference Proceedings | ASME 2008 Heat Transfer Summer Conference collocated with the Fluids Engineering, Energy Sustainability, and 3rd Energy Nanotechnology Conferences |
| Language | English |
| Publisher Date | 2008-08-10 |
| Publisher Place | Jacksonville, Florida, USA |
| Access Restriction | Subscribed |
| Subject Keyword | Metal foams Compression Reynolds number Permeability Finite element methods Flow (dynamics) Stress Geometry Foams (chemistry) Fluids Algorithms Simulation Thermal conductivity Engineering simulation |
| Content Type | Text |
| Resource Type | Article |
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