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Thread-safe lattice Boltzmann for high-performance computing on GPUs

Andrea Montessori, Marco Lauricella, Adriano Tiribocchi, Mihir Durve, Michele La Rocca, Giorgio Amati, Fabio Bonaccorso, Sauro Succi

2023Journal of Computational Science20 citationsDOIOpen Access PDF

Abstract

We present thread-safe, highly-optimized lattice Boltzmann implementations, specifically aimed at exploiting the high memory bandwidth of GPU-based architectures. At variance with standard approaches to LB coding, the proposed strategy, based on the reconstruction of the post-collision distribution via Hermite projection, enforces data locality and avoids the onset of memory dependencies, which may arise during the propagation step, with no need to resort to more complex streaming strategies. The thread-safe lattice Boltzmann achieves peak performances, both in two and three dimensions and it allows to reduce significantly the memory footprint (tens of GigaBytes for order billions lattice nodes simulations) by retaining the algorithmic simplicity of standard LB computing. Our findings open attractive prospects for high-performance simulations of complex flows on GPU-based architectures.

Topics & Concepts

Computer scienceParallel computingMemory footprintThread (computing)Lattice Boltzmann methodsLocalityImplementationMemory bandwidthComputational scienceSupercomputerDistributed computingComputer engineeringOperating systemPhysicsProgramming languagePhilosophyLinguisticsQuantum mechanicsLattice Boltzmann Simulation StudiesAerosol Filtration and Electrostatic PrecipitationData Stream Mining Techniques
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