Download Cellular and Porous Materials: Thermal Properties Simulation by Andreas Öchsner, Graeme E. Murch, Marcelo J. S. de Lemos PDF

By Andreas Öchsner, Graeme E. Murch, Marcelo J. S. de Lemos

Delivering the reader with a fantastic knowing of the basics in addition to an knowledge of contemporary advances in homes and functions of mobile and porous fabrics, this instruction manual and prepared reference covers all vital analytical and numerical tools for characterizing and predicting thermal homes. In so doing it without delay addresses the detailed features of foam-like and hole-riddled fabrics, combining theoretical and experimental elements for characterization reasons.

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Additional info for Cellular and Porous Materials: Thermal Properties Simulation and Prediction

Example text

These structures are manufactured by investment casting and therefore exhibit a well-defined, reproducible geometry (periodic 3D truss structure). However, this manufacturing technology is only able to produce open-celled structures. Further limitations are high costs and anisotropic properties caused by the microstructure orientation. Metallic hollow-sphere structures (MHSS) are a new group of cellular metals characterized by easily reproducible geometry and therefore consistent mechanical and physical properties.

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B. Ingham and I. Pop ), Elsevier Science, Amsterdam, pp. 1–33. S. (2004) Turbulent heat and mass transfer in porous media. inEmerging Technologies and Techniques in Porous Media (ed. B. Ingham , A. Bejan ,E. Mamut andI. Pop ), Kluwer Academic, Dordrecht, vol. 134, pp. 157–168. S. A. (2002) Modeling turbulence in porous media. inTransport Phenomena in Porous Media II (ed. B. Ingham and I. Pop), Pergamon Press, Amsterdam, pp. 198–230. C. (1967) Flow of viscoelastic fluids through porous media. , 13, 1066–1071.

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