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Potential of Water Injection for Gasoline Engines by Means of a 3D-CFD Virtual Test Bench: Wissenschaftliche Reihe Fahrzeugtechnik Universität Stuttgart

Autor Antonino Vacca
en Limba Engleză Paperback – 16 dec 2020
Water injection is one of the most promising technologies to improve the engine combustion efficiency, by mitigating knock occurrences and controlling exhaust gas temperature before turbine. As result, the engine can operate at stoichiometric conditions over the whole engine map, even during the more power-demanding RDE cycles. Antonino Vacca presents a methodology to study and optimize the effect of water injection for gasoline engines by investigating different engine layouts and injection strategies through the set-up of a 3D-CFD virtual test bench. He investigates indirect and direct water injection strategies to increase the engine knock limit and to reduce exhaust gas temperature for several operating points.
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Specificații

ISBN-13: 9783658327545
ISBN-10: 3658327545
Pagini: 170
Ilustrații: XLI, 170 p. 72 illus., 14 illus. in color.
Dimensiuni: 148 x 210 mm
Greutate: 0.26 kg
Ediția:1st ed. 2021
Editura: Springer Fachmedien Wiesbaden
Colecția Springer Vieweg
Seria Wissenschaftliche Reihe Fahrzeugtechnik Universität Stuttgart

Locul publicării:Wiesbaden, Germany

Cuprins

Influence of Water Vapour on Flame Speed and Auto-Ignition.- Optimization of the Water Injector Targeting.- Mixture Formation Induced by Water Injection.- Water Injection in Combination with Miller Cycle.

Notă biografică

Antonino Vacca obtained a PhD at the research Institute of Automotive Engineering (IFS), University of Stuttgart and he is currently project leader at FKFS (Stuttgart, Germany) responsible for the development of innovative combustion concepts for gasoline and gas engines.

Textul de pe ultima copertă

Water injection is one of the most promising technologies to improve the engine combustion efficiency, by mitigating knock occurrences and controlling exhaust gas temperature before turbine. As result, the engine can operate at stoichiometric conditions over the whole engine map, even during the more power-demanding RDE cycles. Antonino Vacca presents a methodology to study and optimize the effect of water injection for gasoline engines by investigating different engine layouts and injection strategies through the set-up of a 3D-CFD virtual test bench. He investigates indirect and direct water injection strategies to increase the engine knock limit and to reduce exhaust gas temperature for several operating points.

Contents
  • Influence of Water Vapour on Flame Speed and Auto-Ignition
  • Optimization of the Water Injector Targeting
  • Mixture Formation Induced by Water Injection
  • Water Injection in Combination with Miller Cycle
Target Groups
  • Researchers and students in the field of automotive engineering
  • Automotive engineers
About the Author
Antonino Vacca obtained a PhD at the research Institute of Automotive Engineering (IFS), University of Stuttgart and he is currently project leader at FKFS (Stuttgart, Germany) responsible for the development of innovative combustion concepts for gasoline and gas engines.


Caracteristici

High knock resistance and exhaust temperature control at lambda-one