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  1. Chapter and Conference Paper

    Prediction of Acoustic Fields Using a Lattice-Boltzmann Method and Deep Learning

    Using traditional computational fluid dynamics and aeroacoustics methods, the accurate simulation of aeroacoustic sources requires high compute resources to resolve all necessary physical phenomena. In contras...

    Mario Rüttgers, Seong-Ryong Koh, Jenia Jitsev in High Performance Computing (2020)

  2. No Access

    Article

    Numerical Analysis of the Impact of the Interior Nozzle Geometry on Low Mach Number Jet Acoustics

    The flow and acoustic fields of subsonic turbulent hot jets exhausting from three divergent nozzles at a Mach number M=0.12 based on the nozzle exit velocity are conducted using a hybrid CFD-CAA method. The flow ...

    Mehmet Onur Cetin, Seong Ryong Koh, Matthias Meinke in Flow, Turbulence and Combustion (2017)

  3. No Access

    Article

    Drag Reduction Via Spanwise Transversal Surface Waves at High Reynolds Numbers

    The impact of transversal spanwise traveling surface waves on the wall-shear stress distribution of high Reynolds number turbulent boundary layer flows is analyzed using high-resolution large-eddy simulations....

    Seong Ryong Koh, Pascal Meysonnat, Matthias Meinke in Flow, Turbulence and Combustion (2015)

  4. No Access

    Chapter

    Noise Prediction for Turbulent Coaxial Jets

    The aerodynamic/acoustic fields of various single and coaxial jet configurations are determined by a hybrid method to analyse the noise generation mechanisms. Three jet configurations with an artificial nozzle...

    Seong Ryong Koh, Wolfgang Schröder in Numerical Simulation of Turbulent Flows an… (2009)