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Fuel Tank Sloshing Simulation Using the Finite Volume Method (BestMasters) - Softcover

 
9783658252274: Fuel Tank Sloshing Simulation Using the Finite Volume Method (BestMasters)

Synopsis

Matthäus Jäger examines the simulation of  liquid-gas flow in fuel tank systems and its application to sloshing problems. The author focuses at first on the physical model and the assumptions necessary to derive the respective partial differential equations. The second step involves the cell-centered finite volume method and its application to fluid dynamic problems with free surfaces using a volume of fluid approach. Finally, the application of the method for different use cases is presented followed by an introduction to the methodology for the interpretation of the results achieved.  

 

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About the Author

After successful completion of his master’s studies at the Technical University of Graz, Austria, Matthäus Jäger is now working as an engineer in the field of computational fluid dynamics for an Austrian fuel tank system manufacturer.

From the Back Cover

Matthäus Jäger examines the simulation of liquid-gas flow in fuel tank systems and its application to sloshing problems. The author focuses at first on the physical model and the assumptions necessary to derive the respective partial differential equations. The second step involves the cell-centered finite volume method and its application to fluid dynamic problems with free surfaces using a volume of fluid approach. Finally, the application of the method for different use cases is presented followed by an introduction to the methodology for the interpretation of the results achieved.  

Contents
  • Developing a Fuel Tank with the Help of Computer Aided Engineering (CAE)
  • Deriving a System of Equations for the Description of Sloshing Phenomena 
  • Showing the Usability of the Finite Volume Method
  • Verifying the Results for Suitable Test Cases 
Target Groups
  • Lecturers and students from the fields of mechanical engineering, mathematics and physics
  • Practitioners in the field of computational fluid dynamics
The Author
After successful completion of his master’s studies at the Technical University of Graz, Austria, Matthäus Jäger is now working as an engineer in the field of computational fluid dynamics for an Austrian fuel tank system manufacturer.

"About this title" may belong to another edition of this title.

  • PublisherSpringer Spektrum
  • Publication date2019
  • ISBN 10 3658252278
  • ISBN 13 9783658252274
  • BindingPaperback
  • LanguageEnglish
  • Edition number1
  • Number of pages120

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Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Matthäus Jäger examines the simulation of liquid-gas flow in fuel tank systems and its application to sloshing problems. The author focuses at first on the physical model and the assumptions necessary to derive the respective partial differential equations. The second step involves the cell-centered finite volume method and its application to fluid dynamic problems with free surfaces using a volume of fluid approach. Finally, the application of the method for different use cases is presented followed by an introduction to the methodology for the interpretation of the results achieved. 124 pp. Englisch. Seller Inventory # 9783658252274

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Taschenbuch. Condition: Neu. Druck auf Anfrage Neuware - Printed after ordering - Matthäus Jäger examines the simulation of liquid-gas flow in fuel tank systems and its application to sloshing problems. The author focuses at first on the physical model and the assumptions necessary to derive the respective partial differential equations. The second step involves the cell-centered finite volume method and its application to fluid dynamic problems with free surfaces using a volume of fluid approach. Finally, the application of the method for different use cases is presented followed by an introduction to the methodology for the interpretation of the results achieved. Seller Inventory # 9783658252274

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Taschenbuch. Condition: Neu. Neuware -Matthäus Jäger examines the simulation of liquid-gas flow in fuel tank systems and its application to sloshing problems. The author focuses at first on the physical model and the assumptions necessary to derive the respective partial differential equations. The second step involves the cell-centered finite volume method and its application to fluid dynamic problems with free surfaces using a volume of fluid approach. Finally, the application of the method for different use cases is presented followed by an introduction to the methodology for the interpretation of the results achieved.Springer Spektrum in Springer Science + Business Media, Tiergartenstr. 15-17, 69121 Heidelberg 124 pp. Englisch. Seller Inventory # 9783658252274

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