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This work covers basic techniques for DNS and LES that can be applied to practical problems of flow, turbulence, and combustion. It presents numerical methods for compressible and incompressible three-dimensional flows, such as high-order discretization schemes, high-fidelity boundary conditions, and coupling aspects. The book gives sample numerical simulation results that exemplify the practical application of the methods. It also discusses advanced topics and current challenges, including detached eddy simulation, SGS modeling, and multiscale flow simulations. The appendix contains sample…mehr

Produktbeschreibung
This work covers basic techniques for DNS and LES that can be applied to practical problems of flow, turbulence, and combustion. It presents numerical methods for compressible and incompressible three-dimensional flows, such as high-order discretization schemes, high-fidelity boundary conditions, and coupling aspects. The book gives sample numerical simulation results that exemplify the practical application of the methods. It also discusses advanced topics and current challenges, including detached eddy simulation, SGS modeling, and multiscale flow simulations. The appendix contains sample FORTRAN programs to illustrate the implementation of finite difference numerical schemes.

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Autorenporträt
Xi Jiang is Senior Lecturer of Mechanical Engineering in the School of Engineering and Design at Brunel University.

Choi-Hong Lai is Professor of Numerical Mathematics in the School of Computing and Mathematical Sciences at the University of Greenwich.