100 Volumes of Notes on Numerical Fluid Mechanics

100 Volumes of  Notes on Numerical Fluid Mechanics
Author: Ernst Heinrich Hirschel,Egon Krause
Publsiher: Springer Science & Business Media
Total Pages: 507
Release: 2009-05-19
Genre: Technology & Engineering
ISBN: 9783540708056

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In a book that will be required reading for engineers, physicists, and computer scientists, the editors have collated a number of articles on fluid mechanics, written by some of the world’s leading researchers and practitioners in this important subject area.

100 Volumes of Notes on Numerical Fluid Mechanics

100 Volumes of  Notes on Numerical Fluid Mechanics
Author: Ernst Heinrich Hirschel,Egon Krause
Publsiher: Springer
Total Pages: 506
Release: 2009-04-24
Genre: Technology & Engineering
ISBN: 3540708049

Download 100 Volumes of Notes on Numerical Fluid Mechanics Book in PDF, Epub and Kindle

In a book that will be required reading for engineers, physicists, and computer scientists, the editors have collated a number of articles on fluid mechanics, written by some of the world’s leading researchers and practitioners in this important subject area.

New Results in Numerical and Experimental Fluid Mechanics VII

New Results in Numerical and Experimental Fluid Mechanics VII
Author: Andreas Dillmann,Gerd Heller,Wolfgang Schröder,Wolfgang Nitsche,Michael Klaas,Hans-Peter Kreplin
Publsiher: Springer Science & Business Media
Total Pages: 626
Release: 2010-10-05
Genre: Technology & Engineering
ISBN: 9783642142437

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th This volume contains the papers presented at the 16 DGLR/STAB-Symposium held at the Eurogress Aachen and organized by RWTH Aachen University, Germany, November, 3 - 4, 2008. STAB is the German Aerospace Aerodynamics Association, founded towards the end of the 1970's, whereas DGLR is the German Society for Aeronautics and Astronautics (Deutsche Gesellschaft für Luft- und Raumfahrt - Lilienthal Oberth e.V.). The mission of STAB is to foster development and acceptance of the discipline “Aerodynamics” in Germany. One of its general guidelines is to concentrate resources and know-how in the involved institutions and to avoid duplication in research work as much as possible. Nowadays, this is more necessary than ever. The experience made in the past makes it easier now, to obtain new knowledge for solving today's and tomorrow's problems. STAB unites German scientists and engineers from universities, research-establishments and industry doing research and project work in numerical and experimental fluid mechanics and aerodynamics for aerospace and other applications. This has always been the basis of numerous common research activities sponsored by different funding agencies. Since 1986 the symposium has taken place at different locations in Germany every two years. In between STAB workshops regularly take place at the DLR in Göttingen.

Turbulence and Interactions

Turbulence and Interactions
Author: Michel Deville,Thien-Hiep Lê,Pierre Sagaut
Publsiher: Springer Science & Business Media
Total Pages: 418
Release: 2010-09-28
Genre: Technology & Engineering
ISBN: 9783642141393

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This volume contains six keynote lectures and 44 contributed papers of the TI 2009 conference that was held in Saint-Luce, La Martinique, May 31-June 5, 2009. These lectures address the latest developments in direct numerical simulations, large eddy simulations, compressible turbulence, coherent structures, droplets, two-phase flows, etc. The present monograph is a snapshot of the state-of-the-art in the field of turbulence with a broad view on theory, experiments and numerical simulations.

Unsteady Effects of Shock Wave induced Separation

Unsteady Effects of Shock Wave induced Separation
Author: Piotr Doerffer,Charles Hirsch,Jean-Paul Dussauge,Holger Babinsky,George N. Barakos
Publsiher: Springer Science & Business Media
Total Pages: 349
Release: 2010-11-25
Genre: Technology & Engineering
ISBN: 9783642030048

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This volume contains description of experimental and numerical results obtained in the UFAST project. The goal of the project was to generate experiment data bank providing unsteady characteristics of the shock boundary layer interaction. The experiments concerned basic-reference cases and the cases with application of flow control devices. Obtained new data bank have been used for the comparison with available simulation techniques, starting from RANS, through URANS, LES and hybrid RANS-LES methods. New understanding of flow physics as well as ability of different numerical methods in the prediction of such unsteady flow phenomena will be discussed.

Nature Inspired Fluid Mechanics

Nature Inspired Fluid Mechanics
Author: Cameron Tropea,Horst Bleckmann
Publsiher: Springer Science & Business Media
Total Pages: 367
Release: 2012-02-22
Genre: Technology & Engineering
ISBN: 9783642283024

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This book is the closing report of the national priority program Nature-Inspired Fluid Mechanics (Schwerpunktprogramm SPP 1207: Strömungsbeeinflussung in der Natur und Technik). Nature-inspired fluid mechanics is one subset of biomimetics, a discipline which has received increased attention over the last decade, with numerous faculties and degree courses devoted solely to exploring ‘nature as a model’ for engineering applications. To save locomotion energy, evolution has optimized the design of animals such that friction loss is minimized. In addition to many morphological adaptations, animals that are often exposed to water or air currents have developed special behaviors that allow them to use the energy contained in air or water fluctuations for energy savings. Such flow manipulation and control is not only important for many animals, but also for many engineering applications. Since living beings have been optimized by several million years of evolution it is very likely that many engineering disciplines can profit from the study of systems found in nature. Curiously, there has been little serious cross-disciplinary work and information exchange on the topic of fluid dynamics and flow control and this was the initial motivation to establish this national priority program.

Numerical Simulation of Turbulent Flows and Noise Generation

Numerical Simulation of Turbulent Flows and Noise Generation
Author: Christophe Brun,Daniel Juvé,Michael Manhart,Claus-Dieter Munz
Publsiher: Springer Science & Business Media
Total Pages: 344
Release: 2009-03-07
Genre: Technology & Engineering
ISBN: 9783540899563

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Large Eddy Simulation (LES) is a high-fidelity approach to the numerical simulation of turbulent flows. Recent developments have shown LES to be able to predict aerodynamic noise generation and propagation as well as the turbulent flow, by means of either a hybrid or a direct approach. This book is based on the results of two French/German research groups working on LES simulations in complex geometries and noise generation in turbulent flows. The results provide insights into modern prediction approaches for turbulent flows and noise generation mechanisms as well as their use for novel noise reduction concepts.

DESider A European Effort on Hybrid RANS LES Modelling

DESider     A European Effort on Hybrid RANS LES Modelling
Author: Werner Haase,Marianna Braza,Alistair Revell
Publsiher: Springer Science & Business Media
Total Pages: 469
Release: 2009-05-12
Genre: Technology & Engineering
ISBN: 9783540927730

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Preface “In aircraft design, efficiency is determined by the ability to accurately and rel- bly predict the occurrence of, and to model the development of, turbulent flows. Hence, the main objective in industrial computational fluid dynamics (CFD) is to increase the capabilities for an improved predictive accuracy for both complex flows and complex geometries”. This text part taken from Haase et al (2006), - scribing the results of the DESider predecessor project “FLOMANIA” is still - and will be in future valid. With an ever-increasing demand for faster, more reliable and cleaner aircraft, flight envelopes are necessarily shifted into areas of the flow regimes exhibiting highly unsteady and, for military aircraft, unstable flow behaviour. This undou- edly poses major new challenges in CFD; generally stated as an increased pred- tive accuracy whist retaining “affordable” computation times. Together with highly resolved meshes employing millions of nodes, numerical methods must have the inherent capability to predict unsteady flows. Although at present, (U)RANS methods are likely to remain as the workhorses in industry, the DESider project focussed on the development and combination of these approaches with LES methods in order to “bridge” the gap between the much more expensive (due to high Reynolds numbers in flight), but more accurate (full) LES.