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- W2902438820 abstract "This paper mainly deals with the mathematical modeling, numerical analysis and Comparison of the thermal performance characteristics of a two-dimensional model of a nuclear fuel element cooled in a surrounding medium with those of one-dimensional model for different cladding materials and cladding thickness. Accordingly, the steady state equations governing the temperature field both for one and two-dimensional models with appropriate boundary conditions are solved numerically using second order central finite difference scheme. Line-by-Line method of solution procedure is then employed to get the algebraic equations which are solved using the famous Thomas Algorithm. Numerically simulated results for a wide range of Biot number, Bi, Conductivity ratio Cr, thickness ratio Th and heat generation parameter, Qt are presented and discussed. It is observed that the one dimensional model prediction is satisfactory only for lower values of parameters considered, for higher values of parameters it over predicts the two dimensional model. It is also observed that for fixed values of Ar, Qt and Bi, there exists a critical value of Th beyond which maximum temperature in the fuel element exceeds its allowable limit." @default.
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- W2902438820 date "2018-01-01" @default.
- W2902438820 modified "2023-09-23" @default.
- W2902438820 title "A comparative study between 1-D & 2-D nuclear fuel element cooled in a surrounding fluid medium" @default.
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- W2902438820 doi "https://doi.org/10.1063/1.5079014" @default.
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