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3. REGULARITY OF SOLUTIONS OF THE STOKES EQUATIONS
-
Peter Constantin
und Ciprian Foias
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Kapitel in diesem Buch
- Frontmatter i
- CONTENTS v
- INTRODUCTION vii
- 1. NOTATION AND PRELIMINARY MATERIAL 1
- 2. THE STOKES EQUATIONS. EXISTENCE AND UNIQUENESS OF WEAK SOLUTIONS 11
- 3. REGULARITY OF SOLUTIONS OF THE STOKES EQUATIONS 14
- 4. THE STOKES OPERATOR 31
- 5. THE NAVIER-STOKES EQUATIONS 45
- 6. INEQUALITIES FOR THE NONLINEAR TERM 48
- 7. STATIONARY SOLUTIONS TO THE NAVIER-STOKES EQUATIONS 57
- 8. WEAK SOLUTIONS OF THE NAVIER-STOKES EQUATIONS 63
- 9. STRONG SOLUTIONS 74
- 10. FURTHER RESULTS CONCERNING WEAK AND STRONG SOLUTIONS 83
- 11. VANISHING VISCOSITY LIMITS 99
- 12. ANALYTICITY AND BACKWARD UNIQUENESS 104
- 13. EXPONENTIAL DECAY OF VOLUME ELEMENTS 110
- 14. GLOBAL LYAPUNOV EXPONENTS. HAUSDORFF AND FRACTAL DIMENSION OF THE UNIVERSAL ATTRACTOR 133
- 15. INERTIAL MANIFOLDS 154
- BIBLIOGRAPHY 185
- INDEX 189
Kapitel in diesem Buch
- Frontmatter i
- CONTENTS v
- INTRODUCTION vii
- 1. NOTATION AND PRELIMINARY MATERIAL 1
- 2. THE STOKES EQUATIONS. EXISTENCE AND UNIQUENESS OF WEAK SOLUTIONS 11
- 3. REGULARITY OF SOLUTIONS OF THE STOKES EQUATIONS 14
- 4. THE STOKES OPERATOR 31
- 5. THE NAVIER-STOKES EQUATIONS 45
- 6. INEQUALITIES FOR THE NONLINEAR TERM 48
- 7. STATIONARY SOLUTIONS TO THE NAVIER-STOKES EQUATIONS 57
- 8. WEAK SOLUTIONS OF THE NAVIER-STOKES EQUATIONS 63
- 9. STRONG SOLUTIONS 74
- 10. FURTHER RESULTS CONCERNING WEAK AND STRONG SOLUTIONS 83
- 11. VANISHING VISCOSITY LIMITS 99
- 12. ANALYTICITY AND BACKWARD UNIQUENESS 104
- 13. EXPONENTIAL DECAY OF VOLUME ELEMENTS 110
- 14. GLOBAL LYAPUNOV EXPONENTS. HAUSDORFF AND FRACTAL DIMENSION OF THE UNIVERSAL ATTRACTOR 133
- 15. INERTIAL MANIFOLDS 154
- BIBLIOGRAPHY 185
- INDEX 189