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A reduced order modeling approach based on response surface techniques is developed for SOFC stacks.
First order modeling equations were developed for surface area, yield and mesopore volume.
An optimal temporal reduced order modeling framework is proposed for nonlinear dynamical systems.
Unsteady reduced order modeling encompassing deterministic stresses and body forces are reviewed.
To mitigate this computational inefficiency, reduced order modeling (ROM) is used to replace the computationally expensive DEM step.
As a consequence, efficient and reliable reduced order modeling might play an essential role in the design of such innovative configurations.
Similar(31)
Automated modeling tools simplify the task of reduced-order modeling.
In this paper, we develop a novel, goal-oriented reduced-order modeling methodology.
A novel reduced-order modeling approach to represent crystallographic texture in polycrystals is presented.
A reduced-order modeling approach for natural gas transient flow in pipelines is proposed.
It was observed that as (gammarightarrow1), the numerical solutions converge to those obtained by integer-order modeling.
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