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Project and Generate: Divergence-Free Neural Operators for Incompressible Flows

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Learning-based models for fluid dynamics often operate in unconstrained function spaces, leading to physically inadmissible, unstable simulations. While penalty-based methods offer soft regularization, they provide no structural guarantees, resulting in spurious divergence and long-term collapse. In this work, we introduce a unified framework that enforces the incompressible continuity equation as a hard, intrinsic constraint for both deterministic and generative modeling. First, to project deterministic models onto the divergence-free subspace, we integrate a differentiable spectral Leray projection grounded in the Helmholtz-Hodge decomposition, which restricts the regression hypothesis space to physically admissible velocity fields. Second, to generate physically consistent distributions, we show that simply projecting model outputs is insufficient when the prior is incompatible. To address this, we construct a divergence-free Gaussian reference measure via a curl-based pushforward, ensuring the entire probability flow remains subspace-consistent by construction. Experiments on 2D Navier-Stokes equations demonstrate exact incompressibility up to discretization error and substantially improved stability and physical consistency.

Xigui Li, Hongwei Zhang, Ruoxi Jiang, Deshu Chen, Chensen Lin, Limei Han, Yuan Qi, Xin Guo, Yuan Cheng• 2026

Related benchmarks

TaskDatasetResultRank
Incompressible Flow Prediction2D Navier-Stokes Re=1000 T15-49 (test)
U-MSE1
4
Incompressible Flow Prediction2D Navier-Stokes Re=1000 T50-100 (test)
U-MSE0.5
4
Incompressible Flow Prediction2D Navier-Stokes Re=1000 T101-300 (test)
U-MSE0.007
3
Incompressible Flow Prediction2D Navier-Stokes Prediction Regime (T15-50) Re=1000 (test)
Total MSE0.0011
2
Incompressible Flow Prediction2D Navier-Stokes Short-term Extrapolation (T51-150) Re=1000 (test)
Total MSE0.0073
2
Incompressible Flow Prediction2D Navier-Stokes Long-term Extrapolation (T151-End) Re=1000 (test)
Total MSE0.0074
2
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