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OmniArch: Building Foundation Model For Scientific Computing

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arxiv 2402.16014 v3 pith:RLG5HWP7 submitted 2024-02-25 cs.LG cs.AI

classification cs.LGcs.AI
keywords computingscientificfirstfoundationomniarchphysicspre-trainingacross
verification ladder T0 review T1 audit T2 compute T3 formal
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Foundation models have revolutionized language modeling, while whether this success is replicated in scientific computing remains unexplored. We present OmniArch, the first prototype aiming at solving multi-scale and multi-physics scientific computing problems with physical alignment. We addressed all three challenges with one unified architecture. Its pre-training stage contains a Fourier Encoder-decoder fading out the disharmony across separated dimensions and a Transformer backbone integrating quantities through temporal dynamics, and the novel PDE-Aligner performs physics-informed fine-tuning under flexible conditions. As far as we know, we first conduct 1D-2D-3D united pre-training on the PDEBench, and it sets not only new performance benchmarks for 1D, 2D, and 3D PDEs but also demonstrates exceptional adaptability to new physics via in-context and zero-shot learning approaches, which supports realistic engineering applications and foresight physics discovery.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. PDEformer-2: A Versatile Foundation Model for Two-Dimensional Partial Differential Equations

    math.NA 2025-07 conditional novelty 6.0 of 10

    PDEformer-2 is a pretrained graph-transformer and implicit-neural-representation model that solves a broad class of 2D PDEs from their symbolic form, with zero-shot, few-shot, and inverse-problem capabilities.

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