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Analysis of Injection Processes in an Innovative 3D-CFD Tool for the Simulation of Internal Combustion Engines: Wissenschaftliche Reihe Fahrzeugtechnik Universität Stuttgart

Autor Marlene Wentsch
en Limba Engleză Paperback – 25 mai 2018
Due to the large number of influencing parameters and interactions, the fuel injection and therewith fuel propagation and distribution are among the most complex processes in an internal combustion engine. For this reason, injection is usually the subject to highly detailed numerical modeling, which leads to unacceptably high computing times in the 3D-CFD simulation of a full engine domain. Marlene Wentsch presents a critical analysis, optimization and extension of injection modeling in an innovative, fast response 3D-CFD tool that is exclusively dedicated to the virtual development of internal combustion engines.
About the Author
Marlene Wentsch works as research associate in the field of 3D-CFD simulations of injection processes at the Institute of Internal Combustion Engines and Automotive Engineering (IVK), University of Stuttgart, Germany.
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Specificații

ISBN-13: 9783658221669
ISBN-10: 3658221666
Pagini: 153
Ilustrații: XXXII, 155 p. 89 illus., 12 illus. in color.
Dimensiuni: 148 x 210 mm
Greutate: 0.23 kg
Ediția:1st ed. 2019
Editura: Springer Fachmedien Wiesbaden
Colecția Springer Vieweg
Seria Wissenschaftliche Reihe Fahrzeugtechnik Universität Stuttgart

Locul publicării:Wiesbaden, Germany

Cuprins

The 3D-CFD Tool QuickSim.- Numerical Boundary Conditions.- Liquid Fuel Modeling.- Parametrization of Injector Properties.

Notă biografică

Marlene Wentsch works as research associate in the field of 3D-CFD simulations of injection processes at the Institute of Internal Combustion Engines and Automotive Engineering (IVK), University of Stuttgart, Germany.

Textul de pe ultima copertă

Due to the large number of influencing parameters and interactions, the fuel injection and therewith fuel propagation and distribution are among the most complex processes in an internal combustion engine. For this reason, injection is usually the subject to highly detailed numerical modeling, which leads to unacceptably high computing times in the 3D-CFD simulation of a full engine domain. Marlene Wentsch presents a critical analysis, optimization and extension of injection modeling in an innovative, fast response 3D-CFD tool that is exclusively dedicated to the virtual development of internal combustion engines.

Contents
  • The 3D-CFD Tool QuickSim
  • Numerical Boundary Conditions
  • Liquid Fuel Modeling
  • Parametrization of Injector Properties
Target Groups
  • Researchers and students of internal combustion engines
  • Automotive engineers and engine developers 
About the Author
Marlene Wentsch works as research associate in the field of 3D-CFD simulations of injection processes at the Institute of Internal Combustion Engines and Automotive Engineering (IVK), University of Stuttgart, Germany.

Caracteristici

Virtual development of internal combustion engines