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Dynamic Multilevel Methods and the Numerical Simulation of Turbulence

This 1999 book describes the implementation of multilevel methods for the numerical simulation of turbulent flows. The general ideas for;

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Multiscale And Multiresolution Approaches In Turbulence

turbulent flow simulation, ranging from turbulence modeling to the most advanced multilevel numerical methods.;

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Advanced Approaches in Turbulence

Advanced Approaches in Turbulence: Theory, Modeling, Simulation and Data Analysis for Turbulent Flows focuses on the updated theory;

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Free-Surface Flow

practical applications for the numerical simulation of flow and transport in rivers and estuaries, the dam-break problem and overland flow. Closure;

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Numerical Probability

covered include the Monte Carlo simulation (including simulation of random variables, variance reduction, quasi-Monte Carlo simulation, and more;

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Multiresolution Methods in Scattered Data Modelling

This application-oriented work concerns the design of efficient, robust and reliable algorithms for the numerical simulation of multiscale;

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Turbulence and Interactions

include direct numerical simulations, large eddy simulations, compressible turbulence, coherent structures, two-phase flow simulation and many;

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Modeling and Simulation of Turbulent Flows

concludes by examining large Eddy numerical simulations methods. Given the book's comprehensive coverage, those involved in the theoretical or;

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Management and Minimisation of Uncertainties and Errors in Numerical Aerodynamics

This volume reports results from the German research initiative MUNA (Management and Minimization of Errors and Uncertainties in Numerical;

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Turbulent Flow

its relationship to direct numerical simulation used throughout the industry.* Covers vortex methods developed to calculate and evaluate;

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Mathematical & Numerical Foundations Of

With applications to climate, technology, and industry, the modeling and numerical simulation of turbulent flows are rich with history and;

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Monte Carlo Methods and Models in Finance and Insurance

, including the multilevel Monte Carlo method, the statistical Romberg method, and the Heath-Platen estimator, as well as recent financial and;

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Engineering Turbulence Modelling and Experiments 5

Turbulence is one of the key issues in tackling engineering flow problems. As powerful computers and accurate numerical methods are now;

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Engineering Turbulence Modelling and Experiments - 4

in tackling engineering flow problems. As powerful computers and accurate numerical methods are now available for solving the flow equations, and;

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Atmospheric Turbulence and Mesoscale Meteorology

meteorology, with particular emphasis on the areas pioneered by Douglas K. Lilly. Numerical simulation is an increasingly important tool for improving;

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Compressibility, Turbulence and High Speed Flow

unique challenges presented by high speed flows. Both experimental and numerical simulation work is supplied throughout to provide the reader;

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Essential Numerical Methods in Electromagnetics

numerical methods and applications necessary for the development of technologies and simulation modeling. Numerical methods are a key ingredient;

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Lecture Notes On Turbulence And Coherent Structures In Fluids, Plasmas And Nonlinear Media

of these lecture notes is to introduce state-of-the-art turbulence research in a variety of approaches (theoretical, numerical simulations and;

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Numerical Techniques for Direct and Large-Eddy Simulations

Compared to the traditional modeling of computational fluid dynamics, direct numerical simulation (DNS) and large-eddy simulation (LES;

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Numerical Techniques for Direct and Large-Eddy Simulations

Compared to the traditional modeling of computational fluid dynamics, direct numerical simulation (DNS) and large-eddy simulation (LES;

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Wave and Scattering Methods for Numerical Simulation

for all of these techniques and addresses the question of how they are related to more standard numerical simulation techniques. Covering;

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Numerical Simulation Of Waves And Fronts In Inhomogeneous Solids

This book shows the advanced methods of numerical simulation of waves and fronts propagation in inhomogeneous solids and introduces related;

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Mathematical Modeling

contains the following sections: 1. models of non-linear phenomena in physics; 2. numerical methods and computer simulations; 3. mathematical;

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Progress in Hybrid RANS-LES Modelling

, simulation and measurement, and with multidisciplinary applications of computational fluid dynamics (CFD), such as flow control, aero-acoustics, aero;

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Progress in Hybrid RANS-LES Modelling

, simulation and measurement, and with multidisciplinary applications of computational fluid dynamics (CFD), such as flow control, aero-acoustics, aero;

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Numerical Methods for Elliptic and Parabolic Partial Differential Equations

This text provides an application oriented introduction to the numerical methods for partial differential equations. It covers finite;

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Numerical Simulation Research Progress

. It pays much attention to the physical content of the simulation and emphasises the goal that, from the numerical results of the simulation;

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