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Christian Oliver Paschereit

Christian Oliver Paschereit

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
62
Citations
15196
World Ranking
603
National Ranking
17

Overview

Christian Oliver Paschereit is affiliated with the Technical University of Berlin in Germany. Their research primarily focuses on engineering, with a significant portion dedicated to aerospace engineering, computational mechanics, fluid flow and transfer processes, safety, risk, reliability and quality, as well as statistics, probability and uncertainty.

The scientist's recent publications include the following papers:

  • Performance analysis of a rotating detonation combustor based on stagnation pressure measurements, 2020, published in Combustion and Flame
  • An empirical model for stagnation pressure gain in rotating detonation combustors, 2020, published in Proceedings of the Combustion Institute
  • Effect of inlet and outlet boundary conditions on rotating detonation combustion, 2020, published in Combustion and Flame
  • Is the Blade Element Momentum theory overestimating wind turbine loads? - An aeroelastic comparison between OpenFAST's AeroDyn and QBlade's Lifting-Line Free Vortex Wake method, 2020, published in Wind energy science
  • Numerical Characterization of a Premixed Hydrogen Flame Under Conditions Close to Flashback, 2020, published in Flow Turbulence and Combustion

Their frequent co-authors include Myles D. Bohon, Christian Navid Nayeri, Eric Bach, Kilian Oberleithner, and Alessandro Orchini.

Christian Oliver Paschereit's work appears in several publication venues, most notably:

  • Journal of Engineering for Gas Turbines and Power
  • AIAA Journal
  • Wind energy science
  • Combustion and Flame
  • Zenodo (CERN European Organization for Nuclear Research)

The main topics covered in their research are comprehensive and include:

  • Combustion and flame dynamics
  • Combustion and Detonation Processes
  • Advanced Combustion Engine Technologies
  • Fire dynamics and safety research
  • Wind Energy Research and Development
  • Wind and Air Flow Studies
  • Risk and Safety Analysis

Overall, the research output reflects a broad engagement with both theoretical and applied aspects of combustion and wind energy, addressing fundamental physical processes as well as engineering safety and reliability issues within these fields.

Best Publications

  • Three-dimensional coherent structures in a swirling jet undergoing vortex breakdown: stability analysis and empirical mode construction

    Kilian Oberleithner;Moritz Sieber;Christian Nayeri;Christian Paschereit

  • Spectral proper orthogonal decomposition

    Moritz Sieber;Kilian Oberleithner;Christian Oliver Paschereit

  • Measurement of Transfer Matrices and Source Terms of Premixed Flames

    C. O. Paschereit;B. Schuermans;W. Polifke;O. Mattson

  • Formation of Turbulent Vortex Breakdown: Intermittency, Criticality, and Global Instability

    Kilian Oberleithner;C. O. Paschereit;R. Seele;I. Wygnanski

  • RECONSTRUCTION OF ACOUSTIC TRANSFER MATRICES BY INSTATIONARY COMPUTATIONAL FLUID DYNAMICS

    W. Polifke;A. Poncet;C.O. Paschereit;K. Döbbeling

  • Constructive and Destructive Interference of Acoustic and Entropy Waves in a Premixed Combustor with a Choked Exit

    Wolfgang Polifke;Christian Oliver Paschereit;Klaus Paschereit

  • Excitation of Thermoacoustic Instabilities by Interaction of Acoustics and Unstable Swirling Flow

    Christian Oliver Paschereit;Ephraim Gutmark;Wolfgang Weisenstein

  • On the Use of Helmholtz Resonators for Damping Acoustic Pulsations in Industrial Gas Turbines

    V. Bellucci;P. Flohr;C. O. Paschereit;F. Magni

  • Coherent structures in swirling flows and their role in acoustic combustion control

    Christian Oliver Paschereit;Ephraim Gutmark;Wolfgang Weisenstein

  • Numerical Analysis of Blood Damage Potential of the HeartMate II and HeartWare HVAD Rotary Blood Pumps.

    Bente Thamsen;Bastian Blümel;Jens Schaller;Christian O. Paschereit

  • Experimental study of the internal flow structures inside a fluidic oscillator

    B. C. Bobusch;R. Woszidlo;J. M. Bergada;C. N. Nayeri

  • A DETAILED ANALYSIS OF THERMOACOUSTIC INTERACTION MECHANISMS IN A TURBULENT PREMIXED FLAME

    Bruno Schuermans;Valter Bellucci;Felix Guethe;Franc¸ois Meili

  • Thermoacoustic Modeling and Control of Multi Burner Combustion Systems

    Bruno Schuermans;Valter Bellucci;Christian Oliver Paschereit

  • Structure and Control of Thermoacoustic Instabilities in a Gas-turbine Combustor

    C.O. Paschereit;E. Gutmark;W. Weisenstein

  • Control of thermoacoustic instabilities and emissions in an industrial-type gas-turbine combustor

    Christian Oliver Paschereit;Ephraim Gutmark;Wolfgang Weisenstein

  • Reheat combustion system for a gas turbine

    Valter Bellucci;Peter Flohr;Christian Oliver Paschereit;Bruno Schuermans

  • Dielectric Barrier Discharge Flow Control at Very Low Flight Reynolds Numbers

    David Greenblatt;Berkant Goksel;Ingo Rechenberg;Chan Yong Schule

  • Modeling Transfer Matrices of Premixed Flames and Comparison With Experimental Results

    Bruno B. H. Schuermans;Wolfgang Polifke;Christian Oliver Paschereit

  • Performance analysis of a rotating detonation combustor based on stagnation pressure measurements

    Eric Bach;Panagiotis Stathopoulos;Christian Oliver Paschereit;Myles D. Bohon

  • The time-resolved natural flow field of a fluidic oscillator

    Rene Woszidlo;Florian Ostermann;Christian Navid Nayeri;Christian Oliver Paschereit

  • Control of Thick Airfoil, Deep Dynamic Stall Using Steady Blowing

    Hanns F. Müller-Vahl;Christoph Strangfeld;Christian N. Nayeri;Christian O. Paschereit

  • Properties of a sweeping jet emitted from a fluidic oscillator

    Unknown

  • Non-Linear Combustion Instabilities in Annular Gas-Turbine Combustors

    Christian Paschereit;Bruno Schuermans;Peter Monkewitz

Frequent Co-Authors

Ephraim Gutmark
Ephraim Gutmark University of Cincinnati
David Greenblatt
David Greenblatt Technion – Israel Institute of Technology
Wolfgang Polifke
Wolfgang Polifke Technical University of Munich
Israel J Wygnanski
Israel J Wygnanski University of Arizona
Bernd R. Noack
Bernd R. Noack Harbin Institute of Technology
Rupert Klein
Rupert Klein Freie Universität Berlin
Henning Bockhorn
Henning Bockhorn Karlsruhe Institute of Technology
Petros Koumoutsakos
Petros Koumoutsakos Harvard University
Lorenzo Ferrari
Lorenzo Ferrari University of Pisa
Hans-Christian Hege
Hans-Christian Hege Zuse Institute Berlin

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