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Numerical Techniques for Direct and Large-Eddy Simulations Chapman and Hall CRC Numerical Analysis and Scientific Computation Series



Numerical Techniques for Direct and Large-Eddy Simulations Chapman and Hall CRC Numerical Analysis and Scientific Computation Series
This book is about numerical techniques for direct and large-eddy simulations. It covers basic techniques for DNS and LES, and then discusses boundary conditions, time integration methods, and numerical techniques used in the DNS of incompressible and compressible flows. The book also presents LES techniques for simulating incompressible and compressible flows. The final chapter explores current c... more details
Key Features:
  • Detailed discussion of numerical techniques for direct and large-eddy simulations of incompressible and compressible flows
  • Detailed discussion of boundary conditions, time integration methods, and numerical techniques used in the DNS of incompressible and compressible flows
  • Presentation of LES techniques for simulating incompressible and compressible flows


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Features
Author Xi Jiang,Choi-Hong Lai
Format Hardcover
ISBN 9781420075786
Publisher Crc Press
Manufacturer Crc Press
Description
This book is about numerical techniques for direct and large-eddy simulations. It covers basic techniques for DNS and LES, and then discusses boundary conditions, time integration methods, and numerical techniques used in the DNS of incompressible and compressible flows. The book also presents LES techniques for simulating incompressible and compressible flows. The final chapter explores current challenges in DNS and LES.

Compared to the traditional modeling of computational fluid dynamics, direct numerical simulation (DNS) and large-eddy simulation (LES) provide a very detailed solution of the flow field by offering enhanced capability in predicting the unsteady features of the flow field. In many cases, DNS can obtain results that are impossible using any other means while LES can be employed as an advanced tool for practical applications. Focusing on the numerical needs arising from the applications of DNS and LES, Numerical Techniques for Direct and Large-Eddy Simulations covers basic techniques for DNS and LES that can be applied to practical problems of flow, turbulence, and combustion. After introducing Navier-Stokes equations and the methodologies of DNS and LES, the book discusses boundary conditions for DNS and LES, along with time integration methods. It then describes the numerical techniques used in the DNS of incompressible and compressible flows. The book also presents LES techniques for simulating incompressible and compressible flows. The final chapter explores current challenges in DNS and LES. Helping readers understand the vast amount of literature in the field, this book explains how to apply relevant numerical techniques for practical computational fluid dynamics simulations and implement these methods in fluid dynamics computer programs.

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