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  5. Validation of Weak Form Thermal Analysis Algorithms Supporting Thermal Signature Generation
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Validation of Weak Form Thermal Analysis Algorithms Supporting Thermal Signature Generation

Date Issued
December 1, 2012
Author(s)
Freeman, Elton Lewis
Advisor(s)
Allen Jerome Baker
Additional Advisor(s)
Kwai Lam Wong, Jay I. Frankel
Abstract

Extremization of a weak form for the continuum energy conservation principle differential equation naturally implements fluid convection and radiation as flux Robin boundary conditions associated with unsteady heat transfer. Combining a spatial semi-discretization via finite element trial space basis functions with time-accurate integration generates a totally node-based algebraic statement for computing. Closure for gray body radiation is a newly derived node-based radiosity formulation generating piecewise discontinuous solutions, while that for natural-forced-mixed convection heat transfer is extracted from the literature. Algorithm performance, mathematically predicted by asymptotic convergence theory, is subsequently validated with data obtained in 24 hour diurnal field experiments for distinct thickness flat plates and a cube-shaped three dimensional object.

Subjects

Algorithms

Thermal Signature Gen...

Finite Elements

Disciplines
Computer Engineering
Engineering Physics
Engineering Science and Materials
Fluid Dynamics
Mechanical Engineering
Numerical Analysis and Computation
Numerical Analysis and Scientific Computing
Ordinary Differential Equations and Applied Dynamics
Other Mathematics
Partial Differential Equations
Software Engineering
Degree
Master of Science
Major
Engineering Science
Embargo Date
January 1, 2011
File(s)
Thumbnail Image
Name

my_dissertation.pdf

Size

11.24 MB

Format

Adobe PDF

Checksum (MD5)

5e94ef6d0602f4c8297651927e8fd0a7

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