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ISSN 961-91393-0-5
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Year 1997
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733 pages
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Volume price - $130.00
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A NODAL INTEGRAL METHOD FOR MOVING BOUNDARY PHASE CHANGE PROBLEMS
Rizwan-uddin
Department of Nuclear Engineering, and Computational Science and Engineering, University of Illinois at Urbana Champaign, 214 NEL, 103 S. Goodwin Ave., Urbana, IL 61801
ABSTRACT
Nodal integral method has been applied to the one-dimensional, moving boundary phase change problem with time-dependent boundary conditions. Using recently proposed modification to the conventional nodal integral method, our application of the nodal method to this nonlinear problem shows that it predicts the position of the moving boundary and the temperature distribution within the domain quite accurately. For simple problems it is found that a single computational node in the domain yields more accurate results than multiple nodes. Comparison of numerical results with reference solutions is presented.
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