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151217s2016 ne ob 001 0 eng d |
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|a 968064310
|a 969048699
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|a 9780124077379
|q electronic bk.
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|a 0124077374
|q electronic bk.
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|z 9780124077096
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|a 0124077099
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|a 9780124077096
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|a (OCoLC)932463971
|z (OCoLC)968064310
|z (OCoLC)969048699
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|a TA350
|b .Z43 2016
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|a 620.1001/1
|2 23
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|a Zhang, Qun,
|e author.
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|a Multiphysics modeling :
|b numerical methods and engineering applications /
|c Qun Zhang and Song Cen.
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|a Amsterdam :
|b Elsevier Ltd.,
|c 2016.
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|c �2016
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|a 1 online resource.
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|a text
|b txt
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|a online resource
|b cr
|2 rdacarrier
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|a text file
|2 rda
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|a Elsevier and Tsinghua University Press computational mechanics series
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|a Online resource; title from PDF title page (EBSCO, viewed January 19, 2016).
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|a Includes bibliographical references and index.
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|a Cover; Title Page; Copyright Page; Contents; Preface; Acknowledgments; 1 -- The physics models; 1.1 -- Heat flow fundamentals; 1.1.1 -- Basic equations; 1.1.2 -- Boundary conditions; 1.1.3 -- Weak forms of the thermal equation; 1.1.4 -- The shape functions for FEM; 1.1.5 -- Formulations in matrix form; 1.1.6 -- The nonlinearity in thermal analysis; 1.1.6.1 -- Material properties; 1.1.6.2 -- Convection term from computational fluid dynamics (CFD) coupling; 1.1.7 -- Stabilization method for convection-dominant transport equations; 1.1.8 -- Penalty-based thermal contact
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|a 1.1.8.1 -- The matrix equation for thermal contact1.2 -- Fluid dynamics; 1.2.1 -- Basic equations for fluid flow; 1.2.2 -- Boundary and initial conditions for fluid flow; 1.2.3 -- The constitutive equation for fluid flow; 1.2.4 -- The weak forms; 1.2.4.1 -- Galerkin formulation for N-S equations; 1.2.4.1.1 -- The shape functions; 1.2.5 -- Finite element equations; 1.2.6 -- The nonlinearity and numerical challenging in CFD; 1.2.7 -- The stabilization methods; 1.2.7.1 -- SUPG and PSPG methods; 1.2.7.2 -- Discontinuity capturing operator (Tezduyard, 2012)
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|a 1.2.7.3 -- Underrelaxation method and solution capping1.2.8 -- Turbulence model in CFD; 1.2.8.1 -- k-Epsilon turbulence model; 1.2.8.1.1 -- Basic equations for the k-epsilon model; 1.2.8.1.2 -- Equations in weak form; 1.2.8.1.3 -- Boundary conditions; 1.2.8.1.4 -- Equations in matrix form; 1.2.8.2 -- Wilcox k-omega turbulence model; 1.2.8.2.1 -- Basic equations for k-omega model; 1.2.8.2.2 -- Boundary conditions; 1.2.8.2.3 -- Weak forms of k-omega model; 1.2.8.2.4 -- Equations in matrix form; 1.2.8.3 -- Procedure for solving the k-epsilon/k-omega turbulence model; 1.2.8.4 -- Large eddy simulation
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|a 1.2.9 -- The general transport equations1.2.9.1 -- The governing equation of the transport equation; 1.2.9.2 -- The weak form of advection diffusion equation; 1.2.9.3 -- The SUPG stabilization for the advection-dominated advection-diffusion equation; 1.2.9.3.1 -- Central differencing approach; 1.2.9.3.2 -- Upwind method for convection-dominant transport equations (first-order accuracy); 1.2.9.4 -- Discontinuity capturing operator for the advection-diffusion equation; 1.3 -- Structural mechanics; 1.3.1 -- Governing equations for structure analysis; 1.3.2 -- The equation in matrix form
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|a 1.3.5.1 -- Basic equations for thin shell structure
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|a Multiphysics Modeling: Numerical Methods and Engineering Applications: Tsinghua University Press Computational Mechanics Series describes the basic principles and methods for multiphysics modeling, covering related areas of physics such as structure mechanics, fluid dynamics, heat transfer, electromagnetic field, and noise. The book provides the latest information on basic numerical methods, also considering coupled problems spanning fluid-solid interaction, thermal-stress coupling, fluid-solid-thermal coupling, electromagnetic solid thermal fluid coupling, and structure-noise coupling. Users will find a comprehensive book that covers background theory, algorithms, key technologies, and applications for each coupling method. Presents a wealth of multiphysics modeling methods, issues, and worked examples in a single volume Provides a go-to resource for coupling and multiphysics problems Covers the multiphysics details not touched upon in broader numerical methods references, including load transfer between physics, element level strong coupling, and interface strong coupling, amongst others Discusses practical applications throughout and tackles real-life multiphysics problems across areas such as automotive, aerospace, and biomedical engineering.
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|a Mechanics, Applied
|x Simulation methods.
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650 |
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|a Mechanics, Applied
|x Mathematical models.
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650 |
|
6 |
|a M�ecanique appliqu�ee
|0 (CaQQLa)201-0058410
|x M�ethodes de simulation.
|0 (CaQQLa)201-0379084
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650 |
|
6 |
|a M�ecanique appliqu�ee
|0 (CaQQLa)201-0058410
|x Mod�eles math�ematiques.
|0 (CaQQLa)201-0379082
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650 |
|
7 |
|a TECHNOLOGY & ENGINEERING / Engineering (General)
|2 bisacsh
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|a TECHNOLOGY & ENGINEERING / Reference
|2 bisacsh
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650 |
|
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|a Mechanics, Applied
|x Mathematical models
|2 fast
|0 (OCoLC)fst01013493
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655 |
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4 |
|a Engineering.
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700 |
1 |
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|a Cen, Song,
|e author.
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776 |
0 |
8 |
|i Print version:
|a Zhang, Qun.
|t Multiphysics modeling : numerical methods and engineering applications.
|d London, England : Academic Press, c2016
|h x, 424 pages
|k m
|z 9780124077096
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810 |
2 |
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|a Elsevier and Tsinghua University Press.
|t Computational mechanics series.
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856 |
4 |
0 |
|u https://sciencedirect.uam.elogim.com/science/book/9780124077096
|z Texto completo
|