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Post-processing of experimental and numerical data

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  • C., TROPEA – Technische Universität Darmstadt, Germany: Introduction to the measurement of turbulence in fluid dynamics
  • D., VEYNANTE – CNRS & Ecole Centrale Paris, France: Survey of signal processing techniques
  • A., BOUTIER – ONERA Châtillon, France: Classification of laser velocimetry techniques
  • A., BOUTIER – ONERA Châtillon, France: Optical techniques for velocity measurements
  • A., BOUTIER – ONERA Châtillon, France: Particle Seeding
  • A., BOUTIER – ONERA Châtillon, France: Velocity measurement accuracy in LDV
  • A., BOUTIER – ONERA Châtillon, France: Comparison of the data issued from various laser velocimetry techniques: LDV, PIV, DGV
  • C., TROPEA – Technische Universität Darmstadt, Germany: Requirements for processing data of random nature in fluid dynamics
  • C., TROPEA – Technische Universität Darmstadt, Germany: Processing of time-dependent data
  • J.P., BONNET & J., DELVILLE - LEA, Université de Poitiers, France: Coherent structures in turbulent flows and numerical simulations approaches.
  • E., LAMBALLAIS & J.P., BONNET – LEA, Université de Poitiers, France: DNS/LES data processing and its relation with experiments
  • L., CORDIER & M., BERGMANN - ENSEM LEMTA, France: Proper orthogonal decomposition: an overview
  • L., CORDIER & M., BERGMANN - ENSEM LEMTA, France: Two typical applications of POD: coherent structures eduction and reduced order modelling
  • C., SCHRAM – von Karman Institute for Fluid Dynamics, Belgium: Application of wavelet transform in vortical flows
  • F., SCARANO – Delft University of Technology, The Netherlands: Identification of coherent structures in turbulent flows based on pattern recognition analysis
  • J., DELVILLE & J.P., BONNET - LEA, Université de Poitiers, France: Two-point correlation in fluid dynamics: POD, LES and related methods

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