Multi input dynamical modeling of heat flow with uncertain diffusivity parameter
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Date
2003
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Volume Title
Publisher
Taylor & Francis inc
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Abstract
This paper focuses on the multi-input dynamical modeling of one-dimensional heat conduction process with uncertainty on thermal diffusivity parameter. Singular value decomposition is used to extract the most significant modes. The results of the spatiotemporal decomposition have been used in cooperation with Galerkin projection to obtain the set of ordinary differential equations, the solution of which synthesizes the temporal variables. The spatial properties have been generalized through a series of test cases and a low order model has been obtained. Since the value of the thermal diffusivity parameter is not known perfectly, the obtained model contains uncertainty. The paper describes how the uncertainty is modeled and how the boundary conditions are separated from the remaining terms of the dynamical equations. The results have been compared with those obtained through analytic solution.
Description
Efe, Mehmet Önder/0000-0002-5992-895X; Ozbay, Hitay/0000-0003-1134-0679
Keywords
heat conduction, multi-input modeling, singular value decomposition, model reduction, infinite dimensional system
Turkish CoHE Thesis Center URL
Fields of Science
Citation
4
WoS Q
Q2
Scopus Q
Q3
Source
Volume
9
Issue
4
Start Page
437
End Page
450