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Classical mechanics. Field theory --- Fluid mechanics --- Gases handling. Fluids handling --- Computer. Automation --- toegepaste mechanica --- algoritmen --- ingenieurswetenschappen --- mechanica --- numerieke analyse --- vloeistoffen
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The present volume contains results gained from the EU-funded 6th Framework project, DESider (Detached Eddy Simulation for Industrial Aerodynamics). 18 European organisations from industry, research and universities, have collaborated on topics centred around the improvement of hybrid RANS-LES methods, the investigation and validation of these methods in respect of a variety of aerodynamic, aeroelastic and aeroacoustic test cases – including novel URANS methods and the new SAS turbulence modelling strategy. The book presents an introduction to the project, exhibits partners’ methods and approaches, and provides comprehensive reports (i.e. definition as well as results) of all applications treated in the project.
Eddies -- Measurement -- Simulation methods. --- Reynolds stress -- Measurement -- Simulation methods. --- Turbulence -- Measurement -- Simulation methods. --- Civil & Environmental Engineering --- Engineering & Applied Sciences --- Civil Engineering --- Turbulence --- Engineering. --- Hydraulic engineering. --- Physics. --- Mathematical models. --- Natural philosophy --- Philosophy, Natural --- Engineering, Hydraulic --- Construction --- Applied mathematics. --- Engineering mathematics. --- Computational intelligence. --- Fluid mechanics. --- Engineering Fluid Dynamics. --- Applications of Mathematics. --- Computational Intelligence. --- Numerical and Computational Physics. --- Physical sciences --- Dynamics --- Industrial arts --- Technology --- Hydromechanics --- Continuum mechanics --- Intelligence, Computational --- Artificial intelligence --- Soft computing --- Engineering --- Engineering analysis --- Mathematical analysis --- Mathematics --- Fluid mechanics --- Hydraulics --- Shore protection --- Mathematics. --- Numerical and Computational Physics, Simulation. --- Math --- Science
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This book reports on the EU-funded 7th Framework project, Go4Hybrid (Grey Area Mitigation for Hybrid RANS-LES Methods). It presents new findings concerning the accuracy and reliability of current hybrid RANS-LES methods. It describes improved formulations of both non-zonal and embedded hybrid strategies, together with their validation in a broad range of flow cases, and highlighting some key industrial applications. The book provides students, researchers and professionals in the field of applied computational fluid dynamics with a timely, practice-oriented reference guide. .
Engineering. --- Fluids. --- Complexity, Computational. --- Fluid mechanics. --- Engineering Fluid Dynamics. --- Fluid- and Aerodynamics. --- Complexity. --- Computational fluid dynamics. --- CFD (Computational fluid dynamics) --- Fluid dynamics --- Computer simulation --- Data processing --- Hydraulic engineering. --- Construction --- Industrial arts --- Technology --- Engineering, Hydraulic --- Engineering --- Fluid mechanics --- Hydraulics --- Shore protection --- Computational complexity. --- Complexity, Computational --- Electronic data processing --- Machine theory --- Mechanics --- Physics --- Hydrostatics --- Permeability --- Hydromechanics --- Continuum mechanics
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This book reports on the EU-funded 7th Framework project, Go4Hybrid (Grey Area Mitigation for Hybrid RANS-LES Methods). It presents new findings concerning the accuracy and reliability of current hybrid RANS-LES methods. It describes improved formulations of both non-zonal and embedded hybrid strategies, together with their validation in a broad range of flow cases, and highlighting some key industrial applications. The book provides students, researchers and professionals in the field of applied computational fluid dynamics with a timely, practice-oriented reference guide. .
Fluid mechanics --- Hydraulic energy --- Applied physical engineering --- Computer science --- vloeistofstroming --- aerodynamica --- informatica --- ingenieurswetenschappen --- hydraulica --- vloeistoffen
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The present book contains contributions presented at the Third Symposium on Hybrid RANS-LES Methods, held in Gdansk, Poland, 10-12 June 2009, being a continuation of the first symposium taking place in Stockholm (Sweden, 2005) and the second in Corfu (Greece, 2007). The contributions to the Corfu symposium were published as “Advances in Hybrid RANS-LES Modelling” (NNFM, Vol. 97). At the Gdansk symposium, along with four invited keynotes, another 28 papers were presented addressing topics on Unsteady RANS, LES, Improved DES Methods, Hybrid RANS-LES Methods, DES vs. URANS and other Hybrid Methods, Modelling-related Numerical Issues and Industrial Applications. Additionally, a comprehensive summary of a round-table discussion on hybrid RANS-LES methods is presented. The present book reflects recent activities and new progress in the development and applications of DES and other hybrid RANS-LES modelling approaches to handle both industrial and fundamental flow problems.
Classical mechanics. Field theory --- Fluid mechanics --- Gases handling. Fluids handling --- Applied physical engineering --- Engineering sciences. Technology --- Artificial intelligence. Robotics. Simulation. Graphics --- neuronale netwerken --- vloeistofstroming --- fuzzy logic --- aerodynamica --- cybernetica --- toegepaste mechanica --- KI (kunstmatige intelligentie) --- ingenieurswetenschappen --- mechanica --- vloeistoffen
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This volume contains results gained from the EU-funded 5th Framework project, FLOMANIA (Flow Physics Modelling – An Integrated Approach). 17 European organisations, industry, research, and universities, have collaborated on topics of improvement of existing methods, investigation and integration of differential Reynolds Stress models for aeronautical applications and modelling of detached-eddy simulations (DES). The book presents an introduction to the project, exhibits partners’ methods and approaches, and provides comprehensive reports (i.e. definition as well as results) of all applications treated in the project. Moreover, a complete chapter is devoted to a description of turbulence models used by the partners together with a section on lessons learnt – accompanied by a comprehensive list of references.
Fluid dynamics --- Aerospace engineering --- Aerodynamics --- Fluides, Dynamique des --- Computer simulation --- Data processing --- Mathematical models --- Research --- Simulation par ordinateur --- Informatique --- Modèles mathématiques --- Aerodynamics. --- Aerospace engineering. --- Fluid dynamics. --- Computational fluid dynamics --- Automotive Engineering --- Applied Mathematics --- Engineering & Applied Sciences --- Mechanical Engineering --- Computer simulation. --- Data processing. --- Mathematical models. --- Aerodynamics, Subsonic --- Airplanes --- Streamlining --- Subsonic aerodynamics --- Aeronautical engineering --- CFD (Computational fluid dynamics) --- Engineering. --- Continuum physics. --- Statistical physics. --- Dynamical systems. --- Applied mathematics. --- Engineering mathematics. --- Fluid mechanics. --- Automotive engineering. --- Engineering Fluid Dynamics. --- Automotive Engineering. --- Appl.Mathematics/Computational Methods of Engineering. --- Classical Continuum Physics. --- Statistical Physics, Dynamical Systems and Complexity. --- Dynamics --- Gas dynamics --- Pneumatics --- Aeronautics --- Wind tunnels --- Astronautics --- Engineering --- Hydraulic engineering. --- Mathematical and Computational Engineering. --- Classical and Continuum Physics. --- Complex Systems. --- Statistical Physics and Dynamical Systems. --- Physics --- Mathematical statistics --- Engineering analysis --- Mathematical analysis --- Construction --- Industrial arts --- Technology --- Engineering, Hydraulic --- Fluid mechanics --- Hydraulics --- Shore protection --- Statistical methods --- Mathematics --- Dynamical systems --- Kinetics --- Mechanics, Analytic --- Force and energy --- Mechanics --- Statics --- Classical field theory --- Continuum physics --- Continuum mechanics --- Hydromechanics --- Physics. --- System theory. --- Mathematical physics. --- Mathematical and Computational Engineering Applications. --- Theoretical, Mathematical and Computational Physics. --- Physical mathematics --- Systems, Theory of --- Systems science --- Science --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Philosophy
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The present volume contains results gained from the EU-funded 6th Framework project, DESider (Detached Eddy Simulation for Industrial Aerodynamics). 18 European organisations from industry, research and universities, have collaborated on topics centred around the improvement of hybrid RANS-LES methods, the investigation and validation of these methods in respect of a variety of aerodynamic, aeroelastic and aeroacoustic test cases - including novel URANS methods and the new SAS turbulence modelling strategy. The book presents an introduction to the project, exhibits partners' methods and approaches, and provides comprehensive reports (i.e. definition as well as results) of all applications treated in the project.
Numerical analysis --- Fluid mechanics --- Artificial intelligence. Robotics. Simulation. Graphics --- Computer. Automation --- neuronale netwerken --- fuzzy logic --- cybernetica --- algoritmen --- KI (kunstmatige intelligentie) --- ingenieurswetenschappen --- numerieke analyse --- vloeistoffen
Choose an application
The present book contains contributions presented at the Third Symposium on Hybrid RANS-LES Methods, held in Gdansk, Poland, 10-12 June 2009, being a continuation of the first symposium taking place in Stockholm (Sweden, 2005) and the second in Corfu (Greece, 2007). The contributions to the Corfu symposium were published as Advances in Hybrid RANS-LES Modelling (NNFM, Vol. 97). At the Gdansk symposium, along with four invited keynotes, another 28 papers were presented addressing topics on Unsteady RANS, LES, Improved DES Methods, Hybrid RANS-LES Methods, DES vs. URANS and other Hybrid Methods, Modelling-related Numerical Issues and Industrial Applications. Additionally, a comprehensive summary of a round-table discussion on hybrid RANS-LES methods is presented. The present book reflects recent activities and new progress in the development and applications of DES and other hybrid RANS-LES modelling approaches to handle both industrial and fundamental flow problems.
Classical mechanics. Field theory --- Fluid mechanics --- Gases handling. Fluids handling --- Applied physical engineering --- Engineering sciences. Technology --- Artificial intelligence. Robotics. Simulation. Graphics --- neuronale netwerken --- vloeistofstroming --- fuzzy logic --- aerodynamica --- cybernetica --- toegepaste mechanica --- KI (kunstmatige intelligentie) --- ingenieurswetenschappen --- mechanica --- vloeistoffen
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This volume contains papers contributed to the Second Symposium on Hybrid RANS-LES Methods, held in Corfu, Greece, 17-18 June 2007. All the papers have undergone further review and revision after the symposium, which has covered a number of relevant topics in the field. These include Unsteady RANS and LES, Improved DES Methods, Hybrid RANS-LES Methods, Embedded LES, DES-related Numerical Issues, Performance of the New SAS Model, as well as Industrial Applications of DES. Papers represent a leading part of current studies and achievements on the fundamentals of hybrid RANS-LES methods in general, as well as on their applications to industrial flow problems. Among the contributed papers, three invited keynote papers by B. Geurts, U. Piomelli and P. Sagaut, are presented together with an overview paper by P. Spalart.
Classical mechanics. Field theory --- Fluid mechanics --- Gases handling. Fluids handling --- Computer. Automation --- toegepaste mechanica --- algoritmen --- ingenieurswetenschappen --- mechanica --- numerieke analyse --- vloeistoffen
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