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Session 1 Basic Turbulence Aspects |
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Scale-Energy Fluxes in Wall-Turbulent Flows |
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3 | (4) |
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Conservation Laws of Helically Symmetric Flows and Their Importance for Turbulence Theory |
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7 | (4) |
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Velocity/Pressure-Gradient Correlation Modelling for Improved Prediction of Reattachment and Relaxation |
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11 | (6) |
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Turbulence without Richardson-Kolmogorov Cascade |
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17 | (4) |
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New Statistical Symmetries of the Two-Point Correlation Equations for Turbulent Flows |
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21 | (4) |
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Cumulant Corrections in Turbulence: Quasinormal Approximation, Direct Interaction Approximation, and Non-Gaussian Properties of Turbulence |
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25 | (6) |
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Decaying Turbulence and Anomalous Dissipation |
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31 | (4) |
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Secondary Splitting of Zero Gradient Points in Turbulent Scalar Fields |
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35 | (6) |
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Multi-scale Analysis of Turbulence in CFD-Simulations |
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41 | (4) |
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A Note on Spatial Zero Crossings of Fluctuating Velocity Field in Wall Bounded Turbulent Flows |
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45 | (4) |
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Non-equilibrium Statistical Mechanics of Fluid Turbulence |
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49 | (8) |
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Two-Point Enstrophy Statistics of Fully Developed Turbulence |
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57 | (6) |
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Session 2 Particle Laden Flows/Lagrangian Turbulence |
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Inertial Particles in a Turbulent Premixed Bunsen Flame |
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63 | (4) |
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Lagrangian Acceleration Statistics in 2D and 3D Turbulence |
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67 | (4) |
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Transport of Inertial Particles in Turbulent Jets |
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71 | (4) |
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Probability Density Functions of Reacting Species Concentrations in Turbulent Wall-Jet |
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75 | (6) |
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Session 3 Modeling and Simulation |
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Characterisation of Synthetic Turbulence Methods for Large-Eddy Simulation of Supersonic Boundary Layers |
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81 | (4) |
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A Uniformly Valid Theory of Turbulent Separation |
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85 | (6) |
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Application and Comparison of Two Different DNS Algorithms for Simulating Transition to Turbulence in Taylor-Green Vortex Flow |
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91 | (6) |
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Session 4 Experimental Methods |
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Optimization of a Digital In-line Holography Setup Used with a High-Speed Camera |
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97 | (4) |
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Development of Highly Resolving Drag Based Anemometers |
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101 | (4) |
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Stability and Dynamics of Flow in a Turbulent Boundary Layer Separation Region |
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105 | (6) |
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Reynolds Stress Modeling for Hypersonic Flows |
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111 | (4) |
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Forced Magnetohydrodynamic Turbulence in Large Eddy Simulation of Compressible Fluid |
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115 | (4) |
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Investigations of Cavity Noise Generation on a Cylinder |
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119 | (4) |
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Manfred Schultz-von Glahn |
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Aerodynamic Sound Generation by Turbulence in Shear Flows |
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123 | (6) |
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Exact Coherent State with Travelling Hairpin Vortex in Plane Couette Flow |
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129 | (6) |
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Travelling Wave Solutions in Square Duct Flow |
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135 | (4) |
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Main Instabilities of Coaxial Jets |
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139 | (4) |
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Set-Up of Anisotropy in a Spanwise Rotating Channel |
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143 | (4) |
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Streamwise and Radial Decomposition of a Turbulent Axisymmetric Jet |
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147 | (4) |
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The Turbulent Flow in the Close-Up Region of Fractal Grids |
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151 | (6) |
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Session 6 Atmospheric Boundary Layer |
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Statistical Characteristics of a 3 × 3 Neutrally Stratified Wind Turbine Array Boundary Layer |
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157 | (6) |
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Enhancing the Simulation of Turbulent Kinetic Energy in the Marine Atmospheric Boundary Layer |
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163 | (4) |
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Numerical Modeling of a WECs Power Performance under the Influence of Atmospheric and Synthetic Wind Fields |
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167 | (4) |
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ABL-Flow over Hills: A Review of Theory and Wind Tunnel Studies |
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171 | (4) |
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Application of Meteorological Data in Computational Modelling of Wind over Real Terrain Topography |
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175 | (6) |
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A New Way to Determine the Wall Position and Friction Velocity in Wall-Bounded Turbulent Flows |
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181 | (6) |
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DNS of Turbulent Boundary Layers Subjected to Adverse Pressure Gradients |
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187 | (4) |
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Do Flexible Surface-Hairs Manipulate Near-Wall Turbulence? |
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191 | (6) |
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Analysis of Development of Vortical Structures in a Turbulent Boundary Layer under Adverse Pressure Gradient Based on VITA Method |
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197 | (4) |
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New Insights into Adverse Pressure Gradient Boundary Layers |
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201 | (4) |
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Flat Plate Boundary Layer By-Pass Transition by Joint Action of Surface Roughness and External Turbulence |
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205 | (4) |
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Low Speed Streaks Instability of Turbulent Boundary Layer Flows with Adverse Pressure Gradient |
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209 | (4) |
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Turbulent Boundary-Layer Flow: Comparing Experiments with DNS |
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213 | (4) |
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Identifying an Artificial Turbulent Spot in the Boundary Layer |
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217 | (6) |
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Comparison between Wind Tunnel and Field Experiments on Wind Turbine Wake Meandering |
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223 | (4) |
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Is the Actuator Disc Concept Sufficient to Model the Far-Wake of a Wind Turbine? |
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227 | (4) |
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Turbulent Wind Turbine Wakes in a Wind Farm |
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231 | (4) |
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Characterization and Stochastic Modeling of Wind Speed Sequences |
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235 | (4) |
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Wind Turbines in ABL-Flow: A Review on Wind Tunnel Studies |
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239 | (4) |
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Intermittent Fingerprints in Wind-Turbine Interactions |
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243 | (4) |
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The Relevance of Turbulence for Wind Energy Related Research |
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247 | (4) |
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The Influence of Turbulence and Vertical Wind Profile in Wind Turbine Power Curve |
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251 | (4) |
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DNS of Actuator Disk Arrays in Ekman Boundary Layers: Preliminary Results |
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255 | (4) |
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An Attempt to Characterize the Structure of Wake Turbulence Using a Combined Experimental and Numerical Approach |
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259 | (4) |
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Lidar Turbulence Measurements for Wind Energy |
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263 | (8) |
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Statistical Characteristics of Gusty Wind Conditionally Sampled with an Array of Ultrasonic Anemometers |
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271 | (4) |
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Free-Stream Turbulence Effects on the Flow around an S809 Wind Turbine Airfoil |
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275 | (8) |
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3-d Measurements of the Velocity in the Boundary Layer of Turbulent Convection |
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283 | (4) |
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Experimental Study of the Near Wall Region of a Natural Convection Driven Flow Next to a Vertical Cylinder |
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287 | (6) |
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Direct Numerical Simulations of Indoor Ventilation |
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293 | (4) |
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Application of 3D Particle Tracking Velocimetry in Convection |
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297 | (4) |
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Author Index |
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301 | |