Proper Orthogonal Decomposition Mode Coefficient Interpolation: A Non-Intrusive Reduced-Order Model for Parametric Reactor Kinetics

03/15/2023
by   Zachary K. Hardy, et al.
0

In this paper, a non-intrusive reduced-order model (ROM) for parametric reactor kinetics simulations is presented. Time-dependent ROMs are notoriously data intensive and difficult to implement when nonlinear multiphysics phenomena are considered. These challenges are exacerbated when parametric dependencies are included. The proper orthogonal decomposition mode coefficient interpolation (POD-MCI) ROM presented in this work can be constructed directly from lower-dimensional quantities of interest (QoIs) and is independent of the underlying model. This greatly alleviates the data requirement of many existing ROMs and can be used without modification on arbitrarily complex models or experimental data. The POD-MCI ROM is demonstrated on a number of examples and yields accurate characterizations of the QoIs within the selected parameter spaces at extremely attractive computational speed-up factors relative to the full-order models (FOMs).

READ FULL TEXT

page 25

page 26

research
04/20/2022

Model Reduction via Dynamic Mode Decomposition

This work proposes a new framework of model reduction for parametric com...
research
04/26/2022

Parametric Dynamic Mode Decomposition for Reduced Order Modeling

Dynamic Mode Decomposition (DMD) is a model-order reduction approach, wh...
research
03/16/2020

A local basis approximation approach for nonlinear parametric model order reduction

The efficient condition assessment of engineered systems requires the co...
research
09/23/2020

A Riemannian Barycentric Interpolation : Derivation of the Parametric Unsteady Navier-Stokes Reduced Order Model

A new application of subspaces interpolation for the construction of non...
research
01/13/2017

Multivariate predictions of local reduced-order-model errors and dimensions

This paper introduces multivariate input-output models to predict the er...

Please sign up or login with your details

Forgot password? Click here to reset