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Papers

A physics-informed operator regression framework for extracting data-driven continuum models

2020-09-25 · Ravi G. Patel, Nathaniel A. Trask, Mitchell A. Wood, Eric C. Cyr

The application of deep learning toward discovery of data-driven models requires careful application of inductive biases to obtain a description of physics which is both accurate and robust. We present here a framework for discovering continuum models from high fidelity molecular simulation data. Our approach applies a neural network parameterization of governing physics in modal space, allowing a characterization of differential operators while providing structure which may be used to impose biases related to symmetry, isotropy, and conservation form. We demonstrate the effectiveness of our framework for a variety of physics, including local and nonlocal diffusion processes and single and multiphase flows. For the flow physics we demonstrate this approach leads to a learned operator that generalizes to system characteristics not included in the training sets, such as variable particle sizes, densities, and concentration.

📄 PDF Abstract BibTeX arXiv:2009.11992

Code (1)

rgp62/MOR-Physics 공식 구현 tf

Tasks

regression

Methods 이 논문이 사용한 방법론

Diffusion Diffusion models generate samples by gradually removing noise from a signal, and their training objective can be expressed as a reweighted variational lower-bound…

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