A Phenomenological Knock Model for the Development of Future Engine Concepts

Author:   Alexander Fandakov
Publisher:   Springer Fachmedien Wiesbaden
Edition:   1st ed. 2019
ISBN:  

9783658248741


Pages:   233
Publication Date:   08 January 2019
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
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A Phenomenological Knock Model for the Development of Future Engine Concepts


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Overview

The majority of 0D/1D knock models available today are known for their poor accuracy and the great effort needed for their calibration. Alexander Fandakov presents a novel, extensively validated phenomenological knock model for the development of future engine concepts within a 0D/1D simulation environment that has one engine-specific calibration parameter. Benchmarks against the models commonly used in the automotive industry reveal the huge gain in knock boundary prediction accuracy achieved with the approach proposed in this work. Thus, the new knock model contributes substantially to the efficient design of spark ignition engines employing technologies such as full-load exhaust gas recirculation, water injection, variable compression ratio or lean combustion. About the Author Alexander Fandakov holds a PhD in automotive powertrain engineering from the Institute of Internal Combustion Engines and Automotive Engineering (IVK) at the University of Stuttgart,Germany. Currently, he is working as an advanced powertrain development engineer in the automotive industry.

Full Product Details

Author:   Alexander Fandakov
Publisher:   Springer Fachmedien Wiesbaden
Imprint:   Springer Vieweg
Edition:   1st ed. 2019
Weight:   0.454kg
ISBN:  

9783658248741


ISBN 10:   3658248742
Pages:   233
Publication Date:   08 January 2019
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

Table of Contents

Experimental Investigations and Thermodynamic Analysis.- Unburnt Mixture Auto-Ignition Prediction.- Knock Occurrence Criterion.- Knock Model Validation.

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Author Information

Alexander Fandakov holds a PhD in automotive powertrain engineering from the Institute of Internal Combustion Engines and Automotive Engineering (IVK) at the University of Stuttgart, Germany. Currently, he is working as an advanced powertrain development engineer in the automotive industry.

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