LEADER 01245nam--2200397---450- 001 990005837720203316 005 20130509114655.0 010 $a978-88-10-23113-5 035 $a000583772 035 $aUSA01000583772 035 $a(ALEPH)000583772USA01 035 $a000583772 100 $a20130503d2012----km-y0itay50------ba 101 0 $aita$cfre 102 $aIT 105 $a||||||||001yy 200 1 $aConcordanza tematica del Nuovo Testamento$fa cura di Olivier Odelain, Raymond Séguineau 205 $aNuova ed 210 $aBologna$cEDB$d2012 215 $aXIV, 1505 p.$d21 cm 225 2 $aDizionari e concordanze 410 0$12001$aDizionari e concordanze 454 0$12001$aConcordance thématique du Nouveau Testament$922314 606 0 $aBibbia. Nuovo Testamento. Meditazioni$2BNCF 676 $a225.3 702 1$aODELAIN,$bOlivier 710 02$aSÉGUINEAU,$bRaymond$0616836 801 0$aIT$bsalbc$gISBD 912 $a990005837720203316 951 $aII.2. 5973$b240083 L.M.$cII.2.$d00319610 959 $aBK 969 $aUMA 979 $aPASSARO$b90$c20130503$lUSA01$h1006 979 $aPASSARO$b90$c20130509$lUSA01$h1146 996 $aConcordance thématique du Nouveau Testament$922314 997 $aUNISA LEADER 06516nam 22008052 450 001 9910464960403321 005 20151005020622.0 010 $a1-107-23354-2 010 $a1-68015-991-7 010 $a1-107-33627-9 010 $a1-139-01659-8 010 $a1-107-33295-8 010 $a1-107-33227-3 010 $a1-107-33461-6 010 $a1-299-40321-2 010 $a1-107-33544-2 035 $a(CKB)3460000000128972 035 $a(EBL)1139558 035 $a(OCoLC)839386877 035 $a(SSID)ssj0000834720 035 $a(PQKBManifestationID)11509350 035 $a(PQKBTitleCode)TC0000834720 035 $a(PQKBWorkID)10982045 035 $a(PQKB)11487524 035 $a(UkCbUP)CR9781139016599 035 $a(MiAaPQ)EBC1139558 035 $a(PPN)196309751 035 $a(Au-PeEL)EBL1139558 035 $a(CaPaEBR)ebr10687773 035 $a(CaONFJC)MIL471571 035 $a(EXLCZ)993460000000128972 100 $a20110215d2013|||| uy| 0 101 0 $aeng 135 $aur||||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aComputational models for polydisperse particulate and multiphase systems /$fDaniele L. Marchisio, Rodney O. Fox$b[electronic resource] 210 1$aCambridge :$cCambridge University Press,$d2013. 215 $a1 online resource (xxxviii, 508 pages) $cdigital, PDF file(s) 225 1 $aCambridge series in chemical engineering 300 $aTitle from publisher's bibliographic system (viewed on 05 Oct 2015). 311 $a0-521-85848-8 311 $a1-107-32651-6 327 $a""Cover""; ""Contents""; ""Preface""; ""Notation""; ""1 Introduction""; ""1.1 Disperse multiphase flows""; ""1.2 Two example systems""; ""1.2.1 The population-balance equation for fine particles""; ""1.2.2 The kinetic equation for gas--particle flow""; ""1.3 The mesoscale modeling approach""; ""1.3.1 Relation to microscale models""; ""1.3.2 Number-density functions""; ""1.3.3 The kinetic equation for the disperse phase""; ""1.3.4 Closure at the mesoscale level""; ""1.3.5 Relation to macroscale models""; ""1.4 Closure methods for moment-transport equations""; ""1.4.1 Hydrodynamic models"" 327 $a""1.4.2 Moment methods""""1.5 A road map to Chapters 2--8""; ""2 Mesoscale description of polydisperse systems""; ""2.1 Number-density functions (NDF)""; ""2.1.1 Length-based NDF""; ""2.1.2 Volume-based NDF""; ""2.1.3 Mass-based NDF""; ""2.1.4 Velocity-based NDF""; ""2.2 The NDF transport equation""; ""2.2.1 The population-balance equation (PBE)""; ""2.2.2 The generalized population-balance equation (GPBE)""; ""2.2.3 The closure problem""; ""2.3 Moment-transport equations""; ""2.3.1 Moment-transport equations for a PBE""; ""2.3.2 Moment-transport equations for a GPBE"" 327 $a""2.4 Flow regimes for the PBE""""2.4.1 Laminar PBE""; ""2.4.2 Turbulent PBE""; ""2.5 The moment-closure problem""; ""3 Quadrature-based moment methods""; ""3.1 Univariate distributions""; ""3.1.1 Gaussian quadrature""; ""3.1.2 The product--difference (PD) algorithm""; ""3.1.3 The Wheeler algorithm""; ""3.1.4 Consistency of a moment set""; ""3.2 Multivariate distributions""; ""3.2.1 Brute-force QMOM""; ""3.2.2 Tensor-product QMOM""; ""3.2.3 Conditional QMOM""; ""3.3 The extended quadrature method of moments (EQMOM)""; ""3.3.1 Relationship to orthogonal polynomials"" 327 $a""3.3.2 Univariate EQMOM""""3.3.3 Evaluation of integrals with the EQMOM""; ""3.3.4 Multivariate EQMOM""; ""3.4 The direct quadrature method of moments (DQMOM)""; ""4 The generalized population-balance equation""; ""4.1 Particle-based definition of the NDF""; ""4.1.1 Definition of the NDF for granular systems""; ""4.1.2 NDF estimation methods""; ""4.1.3 Definition of the NDF for fluid--particle systems""; ""4.2 From the multi-particle--fluid joint PDF to the GPBE""; ""4.2.1 The transport equation for the multi-particle joint PDF"" 327 $a""4.2.2 The transport equation for the single-particle joint PDF""""4.2.3 The transport equation for the NDF""; ""4.2.4 The closure problem""; ""4.3 Moment-transport equations""; ""4.3.1 A few words about phase-space integration""; ""4.3.2 Disperse-phase number transport""; ""4.3.3 Disperse-phase volume transport""; ""4.3.4 Fluid-phase volume transport""; ""4.3.5 Disperse-phase mass transport""; ""4.3.6 Fluid-phase mass transport""; ""4.3.7 Disperse-phase momentum transport""; ""4.3.8 Fluid-phase momentum transport""; ""4.3.9 Higher-order moment transport"" 327 $a""4.4 Moment closures for the GPBE"" 330 $aProviding a clear description of the theory of polydisperse multiphase flows, with emphasis on the mesoscale modelling approach and its relationship with microscale and macroscale models, this all-inclusive introduction is ideal whether you are working in industry or academia. Theory is linked to practice through discussions of key real-world cases (particle/droplet/bubble coalescence, break-up, nucleation, advection and diffusion and physical- and phase-space), providing valuable experience in simulating systems that can be applied to your own applications. Practical cases of QMOM, DQMOM, CQMOM, EQMOM and ECQMOM are also discussed and compared, as are realizable finite-volume methods. This provides the tools you need to use quadrature-based moment methods, choose from the many available options, and design high-order numerical methods that guarantee realizable moment sets. In addition to the numerous practical examples, MATLAB scripts for several algorithms are also provided, so you can apply the methods described to practical problems straight away. 410 0$aCambridge series in chemical engineering. 517 3 $aComputational Models for Polydisperse Particulate & Multiphase Systems 606 $aMultiphase flow$xMathematical models 606 $aChemical reactions$xMathematical models 606 $aTransport theory 606 $aDispersion$xMathematical models 615 0$aMultiphase flow$xMathematical models. 615 0$aChemical reactions$xMathematical models. 615 0$aTransport theory. 615 0$aDispersion$xMathematical models. 676 $a532/.56 700 $aMarchisio$b Daniele L.$01034360 702 $aFox$b Rodney O.$f1959- 801 0$bUkCbUP 801 1$bUkCbUP 906 $aBOOK 912 $a9910464960403321 996 $aComputational models for polydisperse particulate and multiphase systems$92453439 997 $aUNINA LEADER 00926nam0-2200301 --450 001 9910570500203321 005 20220609102911.0 010 $a978-88-222-6491-6 100 $a20220609d2017----kmuy0itay5050 ba 101 $aita 102 $aIT 105 $aa a 001yy 200 1 $aRaffaele De Vico$ei giardini e le architetture romane dal 1908 al 1962$fUlrike Gawlik$gcontributi di Massimo De Vico Fallani e Simone Quilici 210 $aFirenze$cLeo S. 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