Deep Operator Learning for High-Fidelity Fluid Flow Field Reconstruction from Sparse Sensor Measurements
Hiep Vo Dang, Phong C. H. Nguyen

TL;DR
This paper introduces FLRONet, a deep operator learning framework that accurately reconstructs high-fidelity fluid flow fields from sparse sensor data, demonstrating superior generalization, robustness, and zero-shot super-resolution capabilities.
Contribution
The paper presents FLRONet, a novel deep operator learning model that effectively reconstructs fluid flow fields from sparse measurements with discretization independence and enhanced robustness.
Findings
Achieves high reconstruction accuracy on CFDBench dataset.
Robust to sensor measurement inaccuracies and missing data.
Enables zero-shot super-resolution in space and time.
Abstract
Reconstructing high-fidelity fluid flow fields from sparse sensor measurements is vital for many science and engineering applications but remains challenging because of dimensional disparities between state and observational spaces. Due to such dimensional differences, the measurement operator becomes ill-conditioned and non-invertible, making the reconstruction of flow fields from sensor measurements extremely difficult. Although sparse optimization and machine learning address the above problems to some extent, questions about their generalization and efficiency remain, particularly regarding the discretization dependence of these models. In this context, deep operator learning offers a better solution as this approach models mappings between infinite-dimensional functional spaces, enabling superior generalization and discretization-independent reconstruction. We introduce FLRONet, a…
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Taxonomy
TopicsFluid Dynamics and Turbulent Flows · Flow Measurement and Analysis · Plasma and Flow Control in Aerodynamics
