Viscous Flow Applications: Topics in Boundary Element Research, cartea 5
Editat de Carlos A. Brebbiaen Limba Engleză Paperback – 8 dec 2011
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Specificații
ISBN-13: 9783642836855
ISBN-10: 3642836852
Pagini: 204
Ilustrații: XI, 183 p.
Dimensiuni: 170 x 242 x 11 mm
Greutate: 0.33 kg
Ediția:Softcover reprint of the original 1st ed. 1989
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Topics in Boundary Element Research
Locul publicării:Berlin, Heidelberg, Germany
ISBN-10: 3642836852
Pagini: 204
Ilustrații: XI, 183 p.
Dimensiuni: 170 x 242 x 11 mm
Greutate: 0.33 kg
Ediția:Softcover reprint of the original 1st ed. 1989
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Topics in Boundary Element Research
Locul publicării:Berlin, Heidelberg, Germany
Public țintă
ResearchCuprins
1 A Brief Review of Previous Work on Viscous Flow Simulation.- 1.1 Introduction.- 1.2 Review of Work on Boundary Elements.- References.- 2 Boundary Element Formulation for Viscous Compressible Flow.- 2.1 Introduction.- 2.2 Proposed Approach.- 2.3 Statement of the Problems—Governing Equations for Compressible Fluid Flow.- 2.4 State of the Art in Boundary Elements for Fluids.- References.- 3 A Generalized Formulation for Unsteady Viscous Flow Problems.- 3.1 Introduction.- 3.2 Mathematical Formulation.- 3.3 Numerical Formulation.- 3.4 Results and Discussions.- 3.5 Concluding Remarks.- Acknowledgement.- References.- 4 Natural and Forced Convection Simulation Using the Velocity-Vorticity Approach.- 4.1 Introduction.- 4.2 Governing Equations.- 4.3 Vector Potential.- 4.4 Boundary Integral Equation for Flow Kinematics.- 4.5 Discretisation of the BIE for Flow Kinematics.- 4.6 Boundary Integral Equation for the Flow Kinetics.- 4.7 Discretised BIE for the Kinetics of Flow.- 4.8 Boundary Integral Equation for Energy Transport.- 4.9 Discretised Energy Transport Equation.- 4.10 Computational Scheme.- 4.11 Boundary Conditions.- 4.12 Numerical Examples.- 4.13 Conclusion.- References.- 5 A Boundary Element Analysis for Thermal Convection Problems.- 5.1 Introduction.- 5.2 Theory.- 5.3 Numerical Implementation.- 5.4 Numerical Results.- 5.5 Conclusion.- Acknowledgement.- References.- 6 Calculation of the Potential Flow with Consideration of the Boundary Layer.- 6.1 Introduction.- 6.2 Potential Flow.- 6.3 Boundary Layer.- 6.4 Example.- 6.5 Conclusions.- References.- 7 Applications in Non-Newtonian Fluid Mechanics.- 7.1 Introduction.- 7.2 The Behaviour of Non-Newtonian Liquids.- 7.3 Governing Equations.- 7.4 Boundary Integral Formulations and Solution Methods.- 7.5 Applications.- 7.6Conclusions.- References.- 8 Viscous Fluid Mechanics.- Abstract.- 8.1 Introduction.- 8.2 Governing Equations.- 8.3 Integral Formulations.- 8.4 Numerical Procedure.- 8.5 Numerical Examples for Stokes Flows.- 8.6 Numerical Examples for Convective Flows.- 8.7 Conclusion.- References.