Selected Topics of Computational and Experimental Fluid Mechanics - Info and Reading Options
By Jaime Klapp, Gerardo Ruíz Chavarría, Abraham Medina Ovando, Abel López Villa and Leonardo Di G. Sigalotti
"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: Jaime KlappGerardo Ruíz ChavarríaAbraham Medina OvandoAbel López VillaLeonardo Di G. Sigalotti
- Language: English
- Number of Pages: 548
- Publisher: ➤ Springer International Publishing AG
- Publish Date: 2015
- Publish Location: Cham
“Selected Topics of Computational and Experimental Fluid Mechanics” Subjects and Themes:
- Subjects: Fluid mechanics
Edition Identifiers:
- The Open Library ID: OL34516421M - OL20676274W
- ISBN-13: 9783319114873
- All ISBNs: 9783319114873
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"Selected Topics of Computational and Experimental Fluid Mechanics" Description:
Open Data:
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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