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Dive into the research topics where Donatus Wichelhaus is active.

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Featured researches published by Donatus Wichelhaus.


Archive | 2016

Investigation of the mixture formation process with combined injection strategies in high-performance SI-engines

Daniel Koch; G. Wachtmeister; Marlene Wentsch; Marco Chiodi; Michael Bargende; C. Pötsch; Donatus Wichelhaus

An SI-race engine’s performance depends largely on how the combustible mixture is formed. In light of severely restrictive technical regulations of the various racing series, the optimization of the mixture formation process is one of the few remaining ways to increase engine performance. Being the predominant injection strategies in SI engines, both direct injection (DI) at high fuel pressures and port fuel injection (PFI) with much lower fuel pressures show intrinsic advantages. Hence, the potential of a combination of said injection strategies in the context of a motorsports application was investigated in a joint effort by means of both an experimental and a numerical approach. The former was carried out at the Institute of Internal Combustion Engines of the Technische Universitat Munchen (TUM). The latter, a 3d-CFD-simulation of the gas exchange and mixture formation process, was conducted by the Forschungsinstitut fur Kraftfahrwesen und Fahrzeugmotoren Stuttgart (FKFS). As the preliminary investigations revealed, the combination of said injection strategies seems to have increased engine performance by a marginal yet measurable amount, thus supporting the initial assumption that in a motorsports application the otherwise superior DI injection strategy has its limitations. Subsequently, the focus of this paper is to conduct a more thorough analysis to deepen the understanding of a combined injection system’s impact on the mixture formation process.


Archive | 2018

Virtuelle Motorentwicklung als Erfolgsfaktor in der F.I.A. Rallye-Weltmeisterschaft (WRC)

Marlene Wentsch; Marco Chiodi; Michael Bargende; Christian Pötsch; Donatus Wichelhaus

Im Bemuhen um stetige Leistungssteigerung sowie der Optimierung von Wirkungsgrad und Ansprechverhalten, unterliegt der Motorentwicklungsprozess im Rennsport erheblichem Zeit- und Kostendruck. Gezielt eingesetzte 3D-CFD-Simulationen konnen diesen Entwicklungsprozess masgeblich unterstutzen, indem das Verstandnis fur innermotorische Vorgange (Kraftstoffeinspritzung und -vermischung, Verbrennung, Wandwarmeubergang, usw.) sowie deren Beeinflussung durch Motor-Geometrien und Steuerungsstrategien verbessert wird.


Highlighting the Latest Powertrain, Vehicle and Infomobility Technologies | 2011

A Way towards Remarkable Reduction of Co2-Emissions in Motorsports: The CNG-Engine

Marco Chiodi; Alessandro Ferrari; Oliver Mack; Michael Bargende; Donatus Wichelhaus


12th International Conference on Engines & Vehicles | 2015

Enhanced Investigations of High-Performance SI-Engines by Means of 3D-CFD Simulations

Marlene Wentsch; Antonella Perrone; Marco Chiodi; Michael Bargende; Donatus Wichelhaus


SAE International journal of engines | 2017

Development of an Innovative Combustion Process: Spark-Assisted Compression Ignition

Marco Chiodi; Andreas Kächele; Michael Bargende; Daniel Koch; G. Wachtmeister; Donatus Wichelhaus


Archive | 2017

WRC: Production technology drives Motorsport, Formula 1: Motorsport drives production technology

Donatus Wichelhaus


ATZ Extra | 2016

Virtuelle Entwicklung des Antriebsstrangs Beherrschung und Optimierung des Gesamtsystems

Michael Bargende; Marco Chiodi; Michael Grill; Donatus Wichelhaus


ICE 2015 - 12th International Conference on Engines & Vehicles - SAE | 2015

Optimization of the Mixture Formation for Combined Injection Strategies in High-Performance SI-Engines

Christian Pötsch; Laura Sophie Baumgartner; Daniel Koch; Felix Bernhard; Bastian Beyfuss; G. Wachtmeister; Donatus Wichelhaus


Archive | 2014

The Volkswagen WRC Engine

Donatus Wichelhaus


Archive | 2014

Multi-component modeling of liquid fuel for an improved analysis of fuel-dependent processes

Michael Bargende; Donatus Wichelhaus; Marlene Wentsch; Antonella Perrone; Marco Chiodi

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Marco Chiodi

University of Stuttgart

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Christian Pötsch

Technische Universität München

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