A large-scale 3D Lagrangian particle tracking (LPT) investigation of a turbulent boundary layer (TBL) flow developing across different pressure gradient regions is presented in this study. Three high-speed multi-camera imaging systems, LED illumination and helium-filled soap bubbles (HFSB) tracers have been adopted to produce time-resolved sequences of particle images over a large volume encompassing approximately 3 m in the streamwise direction, 0:8 m in the spanwise direction and 0:25 m in the wall-normal direction. Individual tracers have been reconstructed and tracked within the imaged volume by means of the Shake-The-Box algorithm (STB, Schanz et al. (2016)); the FlowFit data assimilation algorithm (Gesemann et al. (2016)) has been use...
The 3D Lagrangian particle tracking method Shake-The-Box (STB) and, subsequently, the data assimilat...
The production of viscous drag within the turbulent boundary layer (TBL) leaves still unresolved que...
A large portion of aerodynamic drag is produced by turbulent flow structures in the near-wall region...
We report on an experimental undertaking with the goal of detecting so-called turbulent superstructu...
We report on an experimental undertaking with the goal of detecting so-called turbulent superstructu...
We report on an experimental undertaking with the goal of detecting so-called turbulent superstructu...
A great potential for minimizing fuel consumption is the reduction of total drag, consisting to a la...
The aim of this work is to capture the spatiotemporal dynamics of large-scale flow structures in a t...
The recent introduction of the Multi-Pulse Shake-The-Box technique (MP-STB [3]) extended the capabil...
We present an experimental adverse pressure gradient turbulent boundary layer (TBL) flow investigati...
High-spatial-resolution (HSR) two-component, two-dimensional particle-image-velocimetry (2C-2D PIV) ...
We report on an experimental undertaking with the goal of detecting so-called turbulent superstructu...
Dense 3D Particle Tracking allows characterizing unsteady and turbulent flows within the Lagrangian ...
Particle image velocimetry (PIV) has been used to capture the high-spatial-resolution (HSR) two-comp...
Large wall shear stress events in turbulent boundary layers (TBLs) produce significant drag and are ...
The 3D Lagrangian particle tracking method Shake-The-Box (STB) and, subsequently, the data assimilat...
The production of viscous drag within the turbulent boundary layer (TBL) leaves still unresolved que...
A large portion of aerodynamic drag is produced by turbulent flow structures in the near-wall region...
We report on an experimental undertaking with the goal of detecting so-called turbulent superstructu...
We report on an experimental undertaking with the goal of detecting so-called turbulent superstructu...
We report on an experimental undertaking with the goal of detecting so-called turbulent superstructu...
A great potential for minimizing fuel consumption is the reduction of total drag, consisting to a la...
The aim of this work is to capture the spatiotemporal dynamics of large-scale flow structures in a t...
The recent introduction of the Multi-Pulse Shake-The-Box technique (MP-STB [3]) extended the capabil...
We present an experimental adverse pressure gradient turbulent boundary layer (TBL) flow investigati...
High-spatial-resolution (HSR) two-component, two-dimensional particle-image-velocimetry (2C-2D PIV) ...
We report on an experimental undertaking with the goal of detecting so-called turbulent superstructu...
Dense 3D Particle Tracking allows characterizing unsteady and turbulent flows within the Lagrangian ...
Particle image velocimetry (PIV) has been used to capture the high-spatial-resolution (HSR) two-comp...
Large wall shear stress events in turbulent boundary layers (TBLs) produce significant drag and are ...
The 3D Lagrangian particle tracking method Shake-The-Box (STB) and, subsequently, the data assimilat...
The production of viscous drag within the turbulent boundary layer (TBL) leaves still unresolved que...
A large portion of aerodynamic drag is produced by turbulent flow structures in the near-wall region...