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Titlebook: A Phenomenological Knock Model for the Development of Future Engine Concepts; Alexander Fandakov Book 2019 The Editor(s) (if applicable) a

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https://doi.org/10.1007/978-3-642-11696-4 of auto-ignition is the key to developing a fully predictive knock model for the 0D/1D engine simulation. This chapter aims at better understanding the chemical processes resulting in auto-ignition and developing an appropriate approach for predicting the occurrence of this phenomenon.
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Book 2019dakov 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 ga
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Book 2019atio 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..
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https://doi.org/10.1007/978-3-030-51563-8s. The validation process involved the comparison of the measured MFB50-points at the knock boundary with the ones predicted by the knock model in the course of 0D/1D engine simulations, as the combustion center is decisive for the engine efficiency [75] [122].
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