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"Selected Topics of Computational and Experimental Fluid Mechanics" was published by Springer International Publishing AG in 2015 - Cham, it has 548 pages and the language of the book is English.


“Selected Topics of Computational and Experimental Fluid Mechanics” Metadata:

  • Title: ➤  Selected Topics of Computational and Experimental Fluid Mechanics
  • Authors:
  • Language: English
  • Number of Pages: 548
  • Publisher: ➤  Springer International Publishing AG
  • Publish Date:
  • Publish Location: Cham

“Selected Topics of Computational and Experimental Fluid Mechanics” Subjects and Themes:

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"Selected Topics of Computational and Experimental Fluid Mechanics" Description:

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Intro -- Preface -- Acknowledgments -- Contents -- Contributors -- Part I Invited Lectures -- Compositional Flow in Fractured Porous Media: Mathematical Background and Basic Physics -- 1 Introduction -- 2 Multiphase Flow in Porous Media -- 2.1 Undeformable Porous Media -- 2.2 Deformable Porous Media -- 3 Multicomponent Flow in a Single Fluid Phase -- 4 Compositional Flow in a Porous Medium -- 5 Chemical Flooding Compositional Flow in Porous Media -- 6 Compositional Flow in Fractured Porous Media -- 6.1 Dual-Continuum Model -- 6.2 Triple-Continuum Model -- References -- Turbulent Thermal Convection -- 1 Introduction -- 2 Rayleigh-Bénard Convection -- 3 High Ra and Ultimate Regime -- 4 Large Aspect Ratio and Large Scales -- 5 Conclusions -- References -- Dissipative Particle Dynamics: A Method to Simulate Soft Matter Systems in Equilibrium and Under Flow -- 1 Introduction -- 2 Details of the Dissipative Particle Dynamics Method -- 2.1 Basic Molecular Dynamics Simulation -- 2.2 Simulating at Constant Temperature: The Langevin Thermostat -- 2.3 The Dissipative Particle Dynamics Thermostat -- 3 Interaction Models: Soft and Hard Potentials -- 3.1 DPD with Soft Potentials -- 3.2 Selected Examples of Soft Matter Systems in Equilibrium -- 3.3 DPD with Hard Potentials -- 4 Selected Examples of DPD in Flow Simulations -- 4.1 Polymer Brushes with Soft Potentials -- 4.2 Hard Coarse-Grained Potentials -- 5 The Conservation of Temperature in Flow Simulations -- 6 Concluding Remarks -- References -- Flow Coherence: Distinguishing Cause from Effect -- 1 Introduction -- 2 Mathematical Setup -- 3 Geodesic Transport Theory -- 4 Application to an Oceanic Flow Dataset -- 5 Final Remarks -- References -- Parametrisation in Dissipative Particle Dynamics: Applications in Complex Fluids -- 1 Introduction

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