HPC Snippets

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Name / Dept: Prof. Kameswararao Anupindi, Department of Mechanical Engineering
Topic / Field: Large Eddy Simulation PDF Link
Goal: Investigate the flow dynamics and turbulence structures
HPC Methodology: The Computational domain contains 8.6 million grid points, requiring 10.7 GB of GPU memory and the simulation ran for about 45 hours
Result / Simulation: HPC Image
Software Used: In-house Fortran SLBM Solver, parallelised for GPU execution using OpenACC standards. The code is compiled by the nvfortran compiler provided with the NVIDIA HPC SDK.

Name / Dept: Gouri Sankar Pattanaik and Kameswararao Anupindi,Department of Mechanical Engineering
Topic / Field: Direct Numerical Simulation (DNS) and Large Eddy Simulation (LES) PDF Link
Goal: Investigate the flow dynamics and turbulence structures
HPC Methodology: Instantaneous contours of vorticity magnitude at three different wall-normal locations from the bottom wall to the mid-plane, corresponding to y/D=0.1, y/D=0.25, and y/D=0.5, for the flow around a cylinder.
Result / Simulation: HPC Image
Software Used: In-house Fortran SLBM Solver, parallelised for GPU execution using OpenACC standards. The code is compiled by the nvfortran compiler provided with the NVIDIA HPC SDK.