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Chapter 5. The combined Eulerian–Lagrangian model

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Kapitel in diesem Buch

  1. Frontmatter i
  2. Preface v
  3. Contents vii
  4. Chapter 1. Introduction 1
  5. Chapter 2. Stochastic simulation of vector Gaussian random fields 29
  6. Chapter 3. Stochastic Lagrangian models of turbulent flows: Relative dispersion of a pair of fluid particles 70
  7. Chapter 4. A new Lagrangian model of 2-particle relative turbulent dispersion 98
  8. Chapter 5. The combined Eulerian–Lagrangian model 113
  9. Chapter 6. Stochastic Lagrangian models for 2-particle relative dispersion in high-Reynolds-number turbulence 129
  10. Chapter 7. Stochastic Lagrangian models for 2-particle motion in turbulent flows. Numerical results 142
  11. Chapter 8. The 1-particle stochastic Lagrangian model for turbulent dispersion in horizontally homogeneous turbulence 159
  12. Chapter 9. Direct and adjoint Monte Carlo for the footprint problem 171
  13. Chapter 10. Lagrangian stochastic models for turbulent dispersion in an atmospheric boundary layer 193
  14. Chapter 11. Analysis of the relative dispersion of two particles by Lagrangian stochastic models and DNS methods 218
  15. Chapter 12. Evaluation of mean concentration and fluxes in turbulent flows by Lagrangian stochastic models 238
  16. Chapter 13. Stochastic Lagrangian footprint calculations over a surface with an abrupt change of roughness height 258
  17. Chapter 14. Stochastic flow simulation in 3D porous media 280
  18. Chapter 15. A Lagrangian stochastic model for the transport in statistically homogeneous porous media 300
  19. Chapter 16. Coagulation of aerosol particles in intermittent turbulent flows 326
  20. Chapter 17. Stokes flows under random boundary velocity excitations 349
  21. Bibliography 381
  22. Index 397
Heruntergeladen am 19.4.2026 von https://www.degruyterbrill.com/document/doi/10.1515/9783110296815.113/html
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