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    5. REFERNCIA BIBLIOGRFICA

    NAKAYAMA, A., Pc Aided numerical heat transfer and convective flow , CRCPress, 1995, 298 p.

    BEJAN, A.,Transferncia de Calor, Edgard Blcher Ltda, 1996.CAPS, R., HEINEMANN, U., RICKE, J., Thermal conductivity of polyimidefoams. Int. Journal Heat Mass Transfer. Vol. 40, No. 2. PP 269-280, 1997.

    MILOS, F.S., MARSCHALL, J., The calculation of anisotropic extinctioncoefficients for radiation diffusion in rigid fibrous ceramic insulations.Published by Elsevier Science Ltd. Printed in Great Britain, Vol. 40, No. 3, pp.627~34, 1997.

    RAPTIS, A., Radiation and free convection flow through a porous medium. Int.

    Comm. Heat Mass Transfer, VoL. 25. No. 2, pp. 289-295, 1998.

    YIH, K.A., Radiation effect on natural convection over a vertical cylinderembedded in porous media. Int. Comm. Heat Mass Transfer, Vol. 26, No. 2, pp.259-267, 1999.

    JUNQUEIRA, S.L.M., LAGE, J.L., The fluid effect on the effective attenuationcoefficient of a fully saturated porous medium under laser radiation.Experimental Heat Transfer, 12:157-174, 1999.

    KASHIAP, R., Fiber Bragg Gratings. Academic Press 1999.SACADURA, J.F., BAILLIS D., Thermal radiation properties of dispersed media:theoretical prediction and experimental characterization. Journal of QuantitativeSpectroscopy & Radiative Transfer 67 (2000) 327}363

    SULLINS, A., DARYABEIGI, K., Effective thermal conductivity of high porosityopen cell Nickel foam. 35th AIAA Thermophysics Conference 11-14 June 2001 /Anaheim, CA.

    ROSSINI, F.R, Soldas em chapas grossas de ao de baixo carbono utilizando

    laser de CO2. Dissertao (Mestrado) Universidade Estadual de Campinas,Faculdade de Engenharia Mecnica. Campinas, SP:[s,n], 2002.

    BEJAN, A., KRAUS, A., Heat transfer handbook, John Wiley & Sons, Inc. 2003.

    MAJUMDAR J. D., MANNA I., Laser processing of materials. Sadhana Vol. 28,Parts 3 & 4, June/August 2003, pp. 495562.

    KALINOWSKI, HJ., FABRIS, JL., MULLER,M., Jos Lus Fabris, Mrcia Mller

    Desenvolvimento de sensores com redes foto refrativas em fibra tica para osetor do petrleo. 2o CONGRESSO BRASILEIRO DE P&D EM PETRLEO & GS

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    CARDOZO DA SILVA J.C., MARTELLI C., DIESEL B.W., FABRIS J.L.,KALINOWSKI H.J., GOOTHOFF N., CANNING J., Termmetro de AltaTemperatura(0-400) baseado em Redes de Bragg em Fibra tica paraAplicao no setor de Petrleo. III Seminrio Nacional de Controle e Automao.

    2003, Salvador.

    KLEMBA, F., Sensores ticos a fibra aplicados rea de petrleo. Dissertao(Mestrado) UTFPR. Programa de Ps-Graduao em Engenharia Eltrica eInformtica Industrial. Curitiba, 2005. Bibliografia: p. 65-7

    MARTELLI C., CARDOZO DA SILVA J. C., NOVAES P. J. N., KALINOWSKI H. J.Sistema de Leitura de Redes de Bragg para Medidas Estticas e Dinmicas .Revista de Fsica Aplicada, vol 17 no. 1, Maro, 2004.

    LAWRENCE, J. An analysis of the beam interaction characteristics of selectedlasers with an alpha alumina bioceramic. Published by Optics and Laser inEngineering, Vol 41 (2004) 504-514.

    GROSS U., TRAN S., Radiation effects on transient hot-wire measurementsin absorbing and emitting porous media. International Journal of Heat and MassTransfer 47 (2004) 32793290

    KOC A., 3-D analysis of temperature distribution in the material during pulsedlaser and material interaction. Heat and Mass Transfer 40 (2004) 697706

    ZHAO, C.Y., LU, T.J., HODSON, H.P. Natural convection in metal foams withopen cells. International Journal of Heat and Mass Transfer 48 (2005) 24522463.

    NIELD D., BEJAN A., Convection in Porous Media 3 Edio- 2006. SpringerScience+Business Media, Inc., USA),

    BADRUDDIN, I. A.,ZAINAL, Z.A., P.A. NARAYANA, A. SEETHARAMU, K.N. Heattransfer by radiation and natural convection through a vertical annulusembedded in porous medium. International Communications in Heat and MassTransfer 33 (2006) 500507.

    PATERNO A. S. Anlise e implementao com aplicaes na instrumentaode processos petroqumicos. Tese de doutorado. UTFPR. 2006, Curitiba.

    BERROCAL, E., SEDARKSY, D., PACIARONI, M., MEGLINSKI, I., LINNE, M.,Laser light scattering in turbid media Part I: Experimental and simulatedresults for the spatial intensity distribution . 20 August 2007 / Vol. 15, No. 17 /OPTICS EXPRESS 10649.

    TALEB T., ABDELBAKI A., ZRIKEM Z., Numerical simulation of coupled heattransfers by conduction, natural convection and radiation in hollow structuresheated from below or above. International Journal of Thermal Sciences 47 (2008)

    378387

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    WANG, M., PAN N., Modeling and prediction of the effective thermalconductivity of random open-cell porous foams. International Journal of Heatand Mass Transfer 51 (2008) 13251331.

    PATYK R. L., POSSETI G. R. C., LOURENO I. J., MARTINI M. M. J., MAZUR W.,

    KALINOWSKI H. J. Determinao do Perfil de Escrita para Redes de Bragg emFibra tica. 13 SBMO Simpsio Brasileiro de Microondas e Optoeletrnica e o 8CBMag Congresso Brasileiro de Eletromagnetismo. 2008, Florianpolis.

    CHAKRABORTY S., DUA R., A novel modeling and simulation technique ofphotothermal interactions between lasers and living biological tissuesundergoing multiple changes in phase. Computers in Biology and Medicine,Article in Press.