000 04564nam a22003735i 4500
001 301732
003 MX-SnUAN
005 20170705134255.0
007 cr nn 008mamaa
008 150903s2011 gw | o |||| 0|eng d
020 _a9783642125812
_99783642125812
024 7 _a10.1007/9783642125812
_2doi
035 _avtls000354941
039 9 _a201509030948
_bVLOAD
_c201405060342
_dVLOAD
_y201402191030
_zstaff
040 _aMX-SnUAN
_bspa
_cMX-SnUAN
_erda
050 4 _aTJ265
100 1 _aShang, Deyi.
_eautor
_9339703
245 1 0 _aTheory of Heat Transfer with Forced Convection Film Flows /
_cby Deyi Shang.
264 1 _aBerlin, Heidelberg :
_bSpringer Berlin Heidelberg,
_c2011.
300 _axxii, 346 páginas
_brecurso en línea.
336 _atexto
_btxt
_2rdacontent
337 _acomputadora
_bc
_2rdamedia
338 _arecurso en línea
_bcr
_2rdacarrier
347 _aarchivo de texto
_bPDF
_2rda
490 0 _aHeat and Mass Transfer,
_x1860-4846
500 _aSpringer eBooks
505 0 _aIntroduction -- Basic conservation equations for laminar forced convection -- Falkner-Skan type transformation for laminar forced convection -- New similarity analysis and transformation method for laminar forced convection -- Heat transfer on laminar forced convection without consideration of viscous thermal dissipation -- Heat transfer on laminar forced convection with consideration of viscous thermal dissipation -- Heat transfer on laminar forced convection with consideration of variable thermophysical properties -- Complete similarity mathematical models on laminar forced film condensation of pure vapor -- Velocity and temperature fields on laminar forced film condensation of pure vapor -- Heat and mass transfer on laminar forced film condensation of pure vapor -- Complete similarity mathematical models on laminar forced film condensation of vapor-gas mixture -- Velocity and temperature fields on laminar forced film condensation of vapor-gas mixture -- Heat and mass transfer on laminar forced film condensation of vapor-gas mixture.
520 _aDeveloping a new treatment of ‘Free Convection Film Flows and Heat Transfer’ began in Shang’s first monograph and is continued in this monograph. The current book displays the recent developments of laminar forced convection and forced film condensation. It is aimed at revealing the true features of heat and mass transfer with forced convection film flows to model the deposition of thin layers. The novel mathematical similarity theory model is developed to simulate temperature- and concentration- dependent physical processes. The following topics are covered in this book: 1. Mathematical methods - advanced similarity analysis method to replace the traditional Falkner-Skan type transformation - a novel system of similarity analysis and transformation models to overcome the difficult issues of forced convection and forced film flows - heat and mass transfer equations based on the advanced similarity analysis models and equations formulated with rigorous key numerical solutions 2. Modeling the influence of physical factors - effect of thermal dissipation on forced convection heat transfer - a system of models of temperature and concentration-dependent variable physical properties based on the advanced temperature-parameter model and rigorous analysis model on vapor-gas mixture physical properties for the rigorous and convenient description of the governing differential equations - an available approach to satisfy interfacial matching conditions for rigorous and reliable solutions - a system of numerical results on velocity, temperature and concentration fields, as well as, key solutions on heat and mass transfer - the effect of non-condensable gas on heat and mass transfer for forced film condensation. This way it is realized to conveniently and reliably predict heat and mass transfer for convection and film flows and to resolve a series of current difficult issues of heat and mass transfer with forced convection film flows. Professionals in this fields as well as graduate students will find this a valuable book for their work.
590 _aPara consulta fuera de la UANL se requiere clave de acceso remoto.
710 2 _aSpringerLink (Servicio en línea)
_9299170
776 0 8 _iEdición impresa:
_z9783642125805
856 4 0 _uhttp://remoto.dgb.uanl.mx/login?url=http://dx.doi.org/10.1007/978-3-642-12581-2
_zConectar a Springer E-Books (Para consulta externa se requiere previa autentificación en Biblioteca Digital UANL)
942 _c14
999 _c301732
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