Automated Author ProfileRidwan, Tariq
Universitat Politècnica de Catalunya0000-0003-3581-9051
Ridwan, Tariq
Current S-Index
Sum of Dataset Indices for all datasets
Average Dataset Index per Dataset
Average Dataset Index per dataset
Total Datasets
Total datasets for this author
Average FAIR Score
Average FAIR Score per dataset
Total Citations
Total citations to the author's datasets
Total Mentions
Total mentions of the author's datasets
S-Index Interpretation
The S-Index (Sharing Index) is a comprehensive metric that represents the cumulative impact of all your datasets. It is calculated as the sum of Dataset Index scores across all your claimed datasets.
What it means:
- A higher S-index indicates greater overall impact of your datasets relative to typical datasets in their fields of research
- The S-Index grows as you add more datasets or as existing datasets gain more citations and mentions
- It provides a single number to track your research data impact over time
Current S-Index: 1.0 (sum of 3 datasets Dataset Index scores)
More information here.
S-Index Over Time
Cumulative Citations Over Time
Cumulative Mentions Over Time
Datasets
This data repository contains the OpenFOAM simulation data and results using the wall-modeled large-eddy simulations (WMLES) framework for high-Reynolds-number sheared convective atmospheric boundary layer (ABL). The proposed framework enables accurate and computationally efficient CBL inflow generation for wind farm simulations in modern HPC systems by employing ABL-tailored wall functions along with a non-uniform grid and a TVD scheme, laying the groundwork for future studies involving surface roughness, heterogeneity, terrain complexity, and advanced wall-model formulations.The dataset contains three main folders corresponding to the simulations on the non-uniform grid using the ABL-tailored wall function, the universal law of the wall, and Reichardt's law. Each folder contains the mandatory folders required to run the OpenFOAM simulations, i.e., "0", "constant", and "system" folders; and also results in "25000" and "postProcessing" folders. The velocity streamwise (Ux) and vertical (Uy) components of velocity, potential temperature (T), the subgrid-scale (SGS) viscosity (nut), and thermal diffusivity (alphat) at 25000s simulation-time are located in the "25000" folder. The temporal evolution of the dimensionless wall distance (z⁺) values throughout the simulation are included in the "postProcessing" folder. Lastly, the *.foam file allows the user to open the case using Paraview. Users interested in viewing the grid can run the blockMesh command. It will generate the grid folder "polyMesh" inside the "constant" folder.
Authors
- Ridwan, Tariq ;
- de Villardi de Montlaur, Adeline ;
- Pino, David
This data repository contains the OpenFOAM simulation data and results using the wall-modeled large-eddy simulations (WMLES) framework for high-Reynolds-number sheared convective atmospheric boundary layer (ABL). The proposed framework enables accurate and computationally efficient CBL inflow generation for wind farm simulations in modern HPC systems by employing ABL-tailored wall functions along with a non-uniform grid and a TVD scheme, laying the groundwork for future studies involving surface roughness, heterogeneity, terrain complexity, and advanced wall-model formulations.The dataset contains three main folders corresponding to the simulations on the non-uniform grid using the ABL-tailored wall function, the universal law of the wall, and Reichardt's law. Each folder contains the mandatory folders required to run the OpenFOAM simulations, i.e., "0", "constant", and "system" folders; and also results in "25000" and "postProcessing" folders. The velocity streamwise (Ux) and vertical (Uy) components of velocity, potential temperature (T), the subgrid-scale (SGS) viscosity (nut), and thermal diffusivity (alphat) at 25000s simulation-time are located in the "25000" folder. The temporal evolution of the dimensionless wall distance (z⁺) values throughout the simulation are included in the "postProcessing" folder. Lastly, the *.foam file allows the user to open the case using Paraview. Users interested in viewing the grid can run the blockMesh command. It will generate the grid folder "polyMesh" inside the "constant" folder.
Authors
- Ridwan, Tariq ;
- de Villardi de Montlaur, Adeline ;
- Pino, David
This data repository contains the OpenFOAM simulation data and results using the wall-modeled large-eddy simulations (WMLES) framework for high-Reynolds-number sheared convective atmospheric boundary layer (ABL). The proposed framework enables accurate and computationally efficient CBL inflow generation for wind farm simulations in modern HPC systems by employing ABL-tailored wall functions along with a non-uniform grid and a TVD scheme, laying the groundwork for future studies involving surface roughness, heterogeneity, terrain complexity, and advanced wall-model formulations.The dataset contains three main folders corresponding to the simulations on the non-uniform grid using the ABL-tailored wall function, the universal law of the wall, and Reichardt's law. Each folder contains the mandatory folders required to run the OpenFOAM simulations, i.e., "0", "constant", and "system" folders; and also results in "25000" and "postProcessing" folders. The velocity (U), potential temperature (T), the subgrid-scale (SGS) viscosity (nut), thermal diffusivity (alphat), alternative pressure (p_rgh), and turbulent kinetic energy (turbulenceProperties:k) at 25000s simulation-time are located in the "25000" folder. The time-averaged mean of velocity (UPrime2Mean) and turbulent kinetic energy (turbulenceProperties:kMean) are also included. Only for the results with the Reichardt law, an additional file "samplingCells" is included, which indicates the cell-center height from where the velocity data is sampled to calculate the wall shear stress. The temporal evolution of the dimensionless wall distance (z⁺) values throughout the simulation are included in the "postProcessing" folder. Lastly, the *.foam file allows the user to open the case using Paraview. Users interested in viewing the grid can run the blockMesh command. It will generate the grid folder "polyMesh" inside the "constant" folder.
Authors
- Ridwan, Tariq ;
- de Villardi de Montlaur, Adeline ;
- Pino, David