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Turbulence Simulation Group

Overview

The Turbulence Simulation Group at Imperial College London develops and applies cutting-edge numerical methods to investigate turbulent flows using leadership-class supercomputers. Our research drives a deeper understanding of turbulence and its manifestation in diverse engineering applications.

Research Focus

  • High-order finite-difference methods for accurate, low-cost simulations
  • Scalable algorithms optimised for modern high-performance computing architectures
  • Applications spanning aerospace, mechanical and environmental engineering

Key Tools & Collaborations

  • Xcompact3d
    • A suite of highly scalable, high-order flow solvers
    • Built on the 2DECOMP&FFT library for efficient domain decomposition
    • Developed in collaboration with partners in France, the US and Brazil
  • 2DECOMP&FFT
    • A parallel domain-decomposition and FFT library

Resources

  • Group Website: www.turbulencesimulation.com
  • Xcompact3d Website: www.xcompact3d.com
  • Xcompact3d GitHub: github.com/xcompact3d
  • 2DECOMP&FFT Documentation: 2decomp-fft.github.io

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  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    2 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    4 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    4 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    4 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    4 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    4 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    4 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    4 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    4 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
  • Gravatar Dr Joseph O'Connor updated the dataset High-resolution snapshots of the viscous sublayer from direct numerical simulation of a turbulent boundary layer up to Reθ = 2400
    7 months ago
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