Download Emerging Topics in Heat and Mass Transfer in Porous Media: by Peter Vadasz PDF

By Peter Vadasz

The first actual significant reference textual content in this subject, this publication offers a special number of articles reviewing the state-of-the-art within the box. It offers specific emphasis to rising applied sciences, from bioengineering and bio-tissues to nanotechnology. the mixing of the various issues is gifted through a mixture of theoretical and utilized method to supply a self-contained significant reference that's beautiful to either the scientist and the engineer.

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Extra resources for Emerging Topics in Heat and Mass Transfer in Porous Media: From Bioengineering and Microelectronics to Nanotechnology (Theory and Applications of Transport ... Applications of Transport in Porous Media)

Example text

Wiley, New York. Bejan A, Dincer I, Lorente S, Miguel AF, Reis AH (2004) Porous and complex flow structures in modern technologies. Springer, New York. Chester M (1963) Phys. Rev. 131: 2013–2015. Dai W, Nassar R (1999) Numer. Meth. Part. Di. E. 15: 697–708. Fournier D. Boccara AC (1989) Physica A 157: 587–592. Glatzmaier GC, Ramirez WF (1988) Chem. Eng Sci 43: 3157–3169. Guyer RA, Krumhansi JA (1966) Phys. Rev. 148: 766–778. Hays-Stang KJ, Haji-Sheikh A (1999) Int J Heat Mass Transfer 42: 455–465.

The non-equilibrium phenomenon is an interesting issue during a rapid heating or a cooling process. This phenomenon occurs in various engineering applications such as nuclear devices, Fichot et al. (2006), fuel cells, Damm and Fedorov (2006), electronic systems, Lage et al. (1996), micro devices, Jiang et al. (2001), and others. Generally, a classical approach is used to determine the materials temperature in the presence of Local Thermal Equilibrium (LTE). In the absence of LTE, the single energy equation needs to be replaced with two energy equations, one for the solid and another for the fluid.

Heat Mass Tran. 48: 2673–2683. Vad´asz P (2005a) J. Heat Tran. 127: 307–314. Vad´asz P (2005b) Int. J. Heat Mass Tran. 48: 2822–2828. Dual-Phase-Lagging and Porous-Medium Heat Conduction Processes 37 Vad´asz P (2005c) Transport Porous Med. 59: 341–355. Vad´asz P (2006a) Int. J. Heat Mass Tran. 49: 4886–4892. Vad´asz P (2006b) J. Heat Tran. 128: 465–477. Vad´asz P (2007) Int. J. Heat Mass Tran. 50, 4131–4140. Wang LQ (1994) Int. J. Heat Mass Tran. 37: 2627–2634. Wang LQ (2000a) Int. J. Heat Mass Tran.

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