The Shake-The-Box particle tracking algorithm proposed by Schanz et al (2016) for time-resolved measurements is extended to the case of multi-pulse acquisition systems delivering fourpulse sequences with a time separation of a few microseconds. The performances of the proposed algorithm are assessed based on both synthetic and experimental particle images
Dense 3D Particle Tracking allows characterizing unsteady and turbulent flows within the Lagrangian ...
In recent years, Lagrangian Particle Tracking (LPT) has become more and more important in the field ...
3D Lagrangian Particle Tracking (LPT) is an image-based flow measurement technique allowing to deter...
The Shake The Box (STB) particle tracking technique, recently introduced for time resolved 3D partic...
The performances of the Shake-The-Box (STB) 3D particle tracking algorithm applied to images obtaine...
The Shake-The-Box (STB) technique [1] opened the possibility to perform accurate Lagrangian particle...
The Shake-The-Box (STB) is a processing algorithm for particle images recorded by means of 3D imagin...
The Shake-The-Box (STB) is a processing algorithm for particle images recorded by means of 3D imagin...
Lagrangian particle tracking (LPT) enables the accurate measurement of position, velocity and accele...
The working principle and methodology followed for the Multi-pulse Shake-The-Box are presented. The ...
3D Lagrangian particle tracking (LPT) allows for position, velocity, and acceleration to be determin...
Dense 3D Particle Tracking allows characterizing unsteady and turbulent flows within the Lagrangian ...
A Lagrangian tracking method is introduced, which uses a prediction of the particle distribution for...
The novel 30 Lagrangian Particle Tracking method "Shake-The-Box" (STB) is able to extract particle ...
In recent years, Lagrangian Particle Tracking (LPT) has become more and more important in the field ...
Dense 3D Particle Tracking allows characterizing unsteady and turbulent flows within the Lagrangian ...
In recent years, Lagrangian Particle Tracking (LPT) has become more and more important in the field ...
3D Lagrangian Particle Tracking (LPT) is an image-based flow measurement technique allowing to deter...
The Shake The Box (STB) particle tracking technique, recently introduced for time resolved 3D partic...
The performances of the Shake-The-Box (STB) 3D particle tracking algorithm applied to images obtaine...
The Shake-The-Box (STB) technique [1] opened the possibility to perform accurate Lagrangian particle...
The Shake-The-Box (STB) is a processing algorithm for particle images recorded by means of 3D imagin...
The Shake-The-Box (STB) is a processing algorithm for particle images recorded by means of 3D imagin...
Lagrangian particle tracking (LPT) enables the accurate measurement of position, velocity and accele...
The working principle and methodology followed for the Multi-pulse Shake-The-Box are presented. The ...
3D Lagrangian particle tracking (LPT) allows for position, velocity, and acceleration to be determin...
Dense 3D Particle Tracking allows characterizing unsteady and turbulent flows within the Lagrangian ...
A Lagrangian tracking method is introduced, which uses a prediction of the particle distribution for...
The novel 30 Lagrangian Particle Tracking method "Shake-The-Box" (STB) is able to extract particle ...
In recent years, Lagrangian Particle Tracking (LPT) has become more and more important in the field ...
Dense 3D Particle Tracking allows characterizing unsteady and turbulent flows within the Lagrangian ...
In recent years, Lagrangian Particle Tracking (LPT) has become more and more important in the field ...
3D Lagrangian Particle Tracking (LPT) is an image-based flow measurement technique allowing to deter...