
Advanced Computational Fluid Dynamics for Emerging Engineering Processes
Eulerian vs. Lagrangian
- 172 pages
- English
- PDF
- Available on iOS & Android
Advanced Computational Fluid Dynamics for Emerging Engineering Processes
Eulerian vs. Lagrangian
About this book
As researchers deal with processes and phenomena that are geometrically complex and phenomenologically coupled the demand for high-performance computational fluid dynamics (CFD) increases continuously. The intrinsic nature of coupled irreversibility requires computational tools that can provide physically meaningful results within a reasonable time. This book collects the state-of-the-art CFD research activities and future R and D directions of advanced fluid dynamics. Topics covered include in-depth fundamentals of the Navier-Stokes equation, advanced multi-phase fluid flow, and coupling algorithms of computational fluid and particle dynamics. In the near future, true multi-physics and multi-scale simulation tools must be developed by combining micro-hydrodynamics, fluid dynamics, and chemical reactions within an umbrella of irreversible statistical physics.
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Table of contents
- Advanced Computational Fluid Dynamics for Emerging Engineering Processes - Eulerian vs. Lagrangian
- Contents
- Preface
- Section 1 Computational Particle Hydrodynamics
- Section 2 Computational Fluid Dynamics Applications