A statistical tool called design of experiments (DOEs) is introduced for uncertainty quantification in particle image velocimetry (PIV). DOE allows to quantify the total uncertainty as well as the systematic uncertainties arising from various experimental factors. The approach is based on measuring a quantity (e.g. time-averaged velocity or Reynolds stresses) several times by varying the levels of the experimental factors which are known to affect the value of the measured quantity. Then, using Analysis of Variances, the total variance in the measured quantity is computed and hence the total uncertainty. Moreover, the analysis provides the individual variances for each of the experimental factors, leading to the estimation of the systematic...
A novel approach is devised for the quantification of systematic uncertainty due to peak locking in ...
The fundamental properties of computed flow fields using particle imaging velocimetry (PIV) have bee...
Currently, computational fluid dynamics (CFD) is widely used in the nuclear thermal hydraulics field...
A statistical tool called design of experiments (DOEs) is introduced for uncertainty quantification ...
This dataset contains figures created during the work on "Design of experiments: a statistical tool...
This paper discusses the propagation of the instantaneous uncertainty of PIV measurements to statist...
This dataset contains MATLAB scripts created during the work on "Design of experiments: a statistica...
Particle image velocimetry (PIV) has become the chief experimental technique for velocity field meas...
The uncertainty in measurements resulting from particle image velocimetry (PIV) arrives from a wide ...
Particle Image Velocimetry (PIV) is a leading measurement technique for aerodynamic research. Howeve...
The topic of uncertainty quantification in particle image velocimetry (PIV) is recognized as very re...
Particle Image Velocimetry (PIV) is a well-established technique for the measurement of the flow vel...
A super-resolution approach is proposed for the a posteriori uncertainty estimation of PIV measureme...
Particle Image Velocimetry (PIV) is a powerful technique to measure the velocity at many points in a...
In Stereoscopic Particle Image Velocimetry (Stereo-PIV), the three velocity components are obtained ...
A novel approach is devised for the quantification of systematic uncertainty due to peak locking in ...
The fundamental properties of computed flow fields using particle imaging velocimetry (PIV) have bee...
Currently, computational fluid dynamics (CFD) is widely used in the nuclear thermal hydraulics field...
A statistical tool called design of experiments (DOEs) is introduced for uncertainty quantification ...
This dataset contains figures created during the work on "Design of experiments: a statistical tool...
This paper discusses the propagation of the instantaneous uncertainty of PIV measurements to statist...
This dataset contains MATLAB scripts created during the work on "Design of experiments: a statistica...
Particle image velocimetry (PIV) has become the chief experimental technique for velocity field meas...
The uncertainty in measurements resulting from particle image velocimetry (PIV) arrives from a wide ...
Particle Image Velocimetry (PIV) is a leading measurement technique for aerodynamic research. Howeve...
The topic of uncertainty quantification in particle image velocimetry (PIV) is recognized as very re...
Particle Image Velocimetry (PIV) is a well-established technique for the measurement of the flow vel...
A super-resolution approach is proposed for the a posteriori uncertainty estimation of PIV measureme...
Particle Image Velocimetry (PIV) is a powerful technique to measure the velocity at many points in a...
In Stereoscopic Particle Image Velocimetry (Stereo-PIV), the three velocity components are obtained ...
A novel approach is devised for the quantification of systematic uncertainty due to peak locking in ...
The fundamental properties of computed flow fields using particle imaging velocimetry (PIV) have bee...
Currently, computational fluid dynamics (CFD) is widely used in the nuclear thermal hydraulics field...