Knocking Combustion of Methane-Based and Highly Knock Resistant Liquid Fuels

(Autor)

Buch | Softcover
XXIX, 143 Seiten
2021 | 1st ed. 2021
Springer Fachmedien Wiesbaden GmbH (Verlag)
978-3-658-35177-9 (ISBN)

Lese- und Medienproben

Knocking Combustion of Methane-Based and Highly Knock Resistant Liquid Fuels - Marcel Eberbach
96,29 inkl. MwSt
Marcel Eberbach provides insight into the investigations of the knocking behavior of methane-based fuels and compares them with the knocking behavior of very high knock resistant liquid fuels during engine combustion. With pressure-based knock detection algorithms and thermodynamic evaluation, the atypical knocking combustion phenomena are evaluated with respect to the abnormalities on the heat release curve. Based on the investigated fuels an engine specific relation between the fuel index numbers (RON and MN) and the actual knock resistance of the fuels by means of the motor methane number was established and applied to the investigated gaseous and liquid fuels during knocking combustion.

lt;b>Marcel Eberbach has a doctorate in automotive engineering from the Institute of Automotive Engineering Stuttgart (IFS) at the University of Stuttgart. Now he is self-employed entrepreneur.

Self-Ignition Processes in SI Engines.- Evaluation of the Knock Rate for Gaseous Mixtures and Liquid Fuels.- Investigations of Atypical Knocking Combustion Phenomena.- Motor Methane Number and Octane Number Correlations.

Erscheinungsdatum
Reihe/Serie Wissenschaftliche Reihe Fahrzeugtechnik Universität Stuttgart
Zusatzinfo XXIX, 143 p. 75 illus., 12 illus. in color.
Verlagsort Wiesbaden
Sprache englisch
Maße 148 x 210 mm
Gewicht 236 g
Themenwelt Technik Fahrzeugbau / Schiffbau
Technik Maschinenbau
Schlagworte Abnormal Combustion • Abnormalities on the Heat Release Rate • Atypical Knocking Combustion Phenomena • Cylinder Pressure-Based Knock Detection • Highly Knock Resistant Liquid Fuels • Irregular Combustion • Knocking Combustion Phenomena • Methane-Based Fuels • Motor Methane Number • Onset of Knock • Research Octane Number • Self-Ignition Process
ISBN-10 3-658-35177-2 / 3658351772
ISBN-13 978-3-658-35177-9 / 9783658351779
Zustand Neuware
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