accLB is a multi-GPU lattice Boltzmann code that reaches more than 150 GLUPS and reproduces single-phase and bubble-laden HIT energy spectra.
Thread-safe multiphase lattice Boltzmann model for droplet and bubble dynamics at high density and viscosity contrasts
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abstract
This study presents a high-order, thread-safe version of the lattice Boltzmann (LBM) method, incorporating an interface-capturing equation, based on the conservative Allen-Cahn equation, to simulate incompressible two-component systems with high-density and viscosity contrasts. The method utilizes a recently proposed thread-safe implementation optimized for shared memory architectures and it is employed to reproduce the dynamics of droplets and bubbles on several test cases with results in agreement with experiments and other numerical simulations from the literature. The proposed approach offers promising opportunities for high-performance computing simulations of realistic fluid systems with high-density and viscosity contrasts for advanced applications in environmental, atmospheric and meteorological flows, all the way down to microfluidic and biological systems, particularly on GPU-based architectures.
fields
physics.flu-dyn 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
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accLB: A High-Performance Lattice Boltzmann Code for Multiphase Turbulence on Multi-Gpu Architectures
accLB is a multi-GPU lattice Boltzmann code that reaches more than 150 GLUPS and reproduces single-phase and bubble-laden HIT energy spectra.