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Thermal Analysis with SOLIDWORKS Simulation 2018 and Flow Simulation 2018 [Pehme köide]

  • Formaat: Paperback / softback, 302 pages, kõrgus x laius: 280x210 mm, kaal: 734 g
  • Ilmumisaeg: 30-Apr-2018
  • Kirjastus: SDC Publications
  • ISBN-10: 1630571652
  • ISBN-13: 9781630571658
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  • Formaat: Paperback / softback, 302 pages, kõrgus x laius: 280x210 mm, kaal: 734 g
  • Ilmumisaeg: 30-Apr-2018
  • Kirjastus: SDC Publications
  • ISBN-10: 1630571652
  • ISBN-13: 9781630571658
Teised raamatud teemal:
About the Author i
Acknowledgements i
Table of contents
ii
Before You Start
1
Notes on hands-on exercises and functionality of Simulation
Prerequisites
Selected terminology
1 Introduction
5(16)
Heat transfer by conduction
Heat transfer by convection
Heat transfer by radiation
Thermal boundary conditions
Analogies between thermal and structural analysis
Thermal elements: solids and shells
Scalar and vector entities, presenting results
Steady state thermal analysis
Transient thermal analysis
Linear thermal analysis
Nonlinear thermal analysis
2 Hollow plate
21(12)
Heat transfer by conduction
Heat transfer by convection
Different ways of presenting results of thermal analysis
Convergence analysis in thermal problems
Solid elements in heat transfer problems
Shell elements in heat transfer problems
3 L bracket
33(8)
Heat transfer by conduction
Use of 2D models
Singularities in thermal problems
4 Thermal analysis of a round bar
41(16)
Heat transfer by conduction
Thermal conductivity
Heat transfer by convection
Convection boundary conditions
Thermal resistance
Prescribed temperature boundary conditions
Heat power
Heat flux
5 Floor heating duct --- part 1
57(18)
Heat transfer by conduction
Prescribed temperature boundary conditions
Heat power
Heat flux
Heat flux singularities
Analogies between structural and thermal analysis
6 Floor heating duct --- part 2
75(10)
Heat transfer by convection
Free and forced convection
Convection coefficient
Ambient (bulk) temperature
7 Hot plate
85(16)
Transient thermal analysis
Conductive heat transfer
Convective heat transfer
Heat power
Thermostat
Thermal inertia
8 Thermal and thermal stress analysis of a coffee mug
101(12)
Transient thermal analysis
Thermal stress analysis
Thermal symmetry boundary conditions
Structural symmetry boundary conditions
Use of soft springs
9 Thermal buckling analysis of a link
113(10)
Buckling caused by thermal effects
Interpretation of Buckling Load Factor
10 Thermal analysis of a heat sink
123(16)
Analysis of an assembly
Thermal contact conditions
Steady state thermal analysis
Transient thermal analysis
Thermal resistance layer
Thermal symmetry boundary conditions
11 Radiative power of a black body
139(12)
Heat transfer by radiation
Emissivity
Black body
Radiating heat out to space
Transient thermal analysis
Heat power
Heat energy
12 Radiation of a hemisphere
151(8)
Heat transfer by radiation
Emissivity
Radiating heat out to space
View factors
Heat power
13 Radiation between two bodies
159(12)
Heat transfer by radiation
Emissivity
Radiating heat out to space
View factors
Heat power
Closed system
Open system
14 Heat transfer with internal fluid flow
171(46)
Introduction to Flow Simulation
Using Flow Simulation for finding convection coefficients in internal fluid flow
Interfacing between Flow Simulation and Thermal analysis
Interfacing between Flow Simulation and structural (Static) analysis
15 Heat transfer with external fluid flow
217(16)
Using Flow Simulation for finding convection coefficients in external fluid flow
Interfacing between Flow Simulation and Thermal analysis
16 Radiative Heat Transfer
233(20)
Radiative heat transfer problem analyzed with Thermal Study in Simulation
Radiative heat transfer problem analyzed with Flow Simulation
17 NAFEMS Benchmarks
253(18)
Importance of benchmarks
One dimensional heat transfer with radiation
One dimensional transient heat transfer
Two dimensional heat transfer with convection
18 Summary and miscellaneous topics
271(19)
Summary of exercises in chapters 1-13
Nonlinear transient problems
Advanced options of thermal study
Closing remarks
271(19)
19 Glossary of terms
290(3)
20 References
293(2)
21 List of exercises
295