arXiv · 2609.09160
LBFAST: A Lightweight Moment-Represented Lattice Boltzmann Solver for Multi-GPU Architectures
Abstract
We present LBFAST, a GPU-oriented lattice Boltzmann solver based on a lightweight moment-represented formulation, in which post-collision populations are reconstructed on the fly from a reduced set of moments rather than stored explicitly. This approach significantly lowers the memory footprint, enabling large three-dimensional simulations within the constraints of modern accelerator architectures, where VRAM capacity and bandwidth are critical resources. The method is assessed through standard single- and two-component benchmarks demonstrating good accuracy and stability. Extensive scaling experiments on multi-GPU systems show near-ideal weak scaling up to 512 GPUs and sustained performance across different velocity sets. The combination of reduced memory usage, competitive throughput, and stable energy efficiency makes the proposed formulation a practical route for large-scale lattice Boltzmann simulations on current and emerging HPC platforms.
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Marco Lauricella, Andrea Montessori, Giorgio Amati, Filippo Spiga, Adriano Tiribocchi, Massimo Bernaschi, Sauro Succi. 2026-05-30. LBFAST: A Lightweight Moment-Represented Lattice Boltzmann Solver for Multi-GPU Architectures. https://arxiv.org/abs/2609.09160
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