We propose an invariant feature space for the detection of viscous dominated and turbulent regions (i.e., boundary layers and wakes). The developed methodology uses the principal invariants of the strain and rotational rate tensors as input to an unsupervised Machine Learning Gaussian mixture model. The selected feature space is independent of the coordinate frame used to generate the processed data, as it relies on the principal invariants of strain and rotational rate, which are Galilean invariants. This methodology allows us to identify two distinct flow regions: a viscous dominated, rotational region (boundary layer and wake region) and an inviscid, irrotational region (outer flow region). We test the methodology on a laminar and a turb...
Vortices of coherent fluid volume are considered to have a substantial impact on transport processes...
Simulations of turbulent fluid flow around long cylindrical structures are computationally expensive...
Turbulent convection flows are ubiquitous in natural systems such as in the atmosphere or in stellar...
Detecting the turbulent/non-turbulent interface is a challenging topic in turbulence research. In th...
A machine learning algorithm is here proposed with the objective to identify homogeneous flow region...
The problem of classifying turbulent environments from partial observation is key for some theoretic...
Most flows of engineering interest are turbulent. Direct numerical or scale-resolved simulations (DN...
Most flows of engineering interest are turbulent. Direct numerical or scale-resolved simulations (DN...
The problem of classifying turbulent environments from partial observation is key for some theoretic...
Thesis (Master's)--University of Washington, 2021Particle image velocimetry (PIV) techniques provide...
A novel machine learning algorithm is presented, serving as a data-driven turbulence modeling tool f...
Computer vision and machine learning tools offer an exciting new way for automatically analyzing and...
View Video Presentation: https://doi.org/10.2514/6.2022-0457.vid A machine learning algorithm is ...
The application of machine learning algorithms as data-driven turbulence modelling tools for Reynold...
A data-driven approach for the identification of local turbulent-flow states and of their dynamics i...
Vortices of coherent fluid volume are considered to have a substantial impact on transport processes...
Simulations of turbulent fluid flow around long cylindrical structures are computationally expensive...
Turbulent convection flows are ubiquitous in natural systems such as in the atmosphere or in stellar...
Detecting the turbulent/non-turbulent interface is a challenging topic in turbulence research. In th...
A machine learning algorithm is here proposed with the objective to identify homogeneous flow region...
The problem of classifying turbulent environments from partial observation is key for some theoretic...
Most flows of engineering interest are turbulent. Direct numerical or scale-resolved simulations (DN...
Most flows of engineering interest are turbulent. Direct numerical or scale-resolved simulations (DN...
The problem of classifying turbulent environments from partial observation is key for some theoretic...
Thesis (Master's)--University of Washington, 2021Particle image velocimetry (PIV) techniques provide...
A novel machine learning algorithm is presented, serving as a data-driven turbulence modeling tool f...
Computer vision and machine learning tools offer an exciting new way for automatically analyzing and...
View Video Presentation: https://doi.org/10.2514/6.2022-0457.vid A machine learning algorithm is ...
The application of machine learning algorithms as data-driven turbulence modelling tools for Reynold...
A data-driven approach for the identification of local turbulent-flow states and of their dynamics i...
Vortices of coherent fluid volume are considered to have a substantial impact on transport processes...
Simulations of turbulent fluid flow around long cylindrical structures are computationally expensive...
Turbulent convection flows are ubiquitous in natural systems such as in the atmosphere or in stellar...