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The boiler tube temperatures obtained from the one dimensional model are transferred and used as boundary conditions in a full three dimensional finite element analysis where deformations are solved for and stress results obtained due to thermal expansion within the boiler tube walls and the adjacent support structure.
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A one dimensional model is considered.
A simplified two dimensional model is also applied and the results obtained are not so satisfactory.
In the present work, a one dimensional model was modified to fit circular hot channel.
A three dimensional model was used to representing key parts of a laboratory cyclone reactor.
Due to memory limitations three dimensional model was not constructed.
For simplicity, the two dimensional model was used as shown in Fig. 9.
For simplicity, a two dimensional model was used in this analysis as shown in Fig. 9.
A three dimensional model is used for better reproduction of the complex topography and heterogeneity of the watershed.
Concentration and temperature profiles obtained from the two-dimensional model are presented.
Results from a fast, graphical processing unit implementation for a three-dimensional model are shown.
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