A nuclear fuel element has the form of a plate 6mm thick sandwiched between two stainless...
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A nuclear fuel element has the form of a plate 6mm thick sandwiched between two stainless steel containing sheets, each of 2mm thickness. The fuel generates heat uniformly at a rate of q 2x10 W/m3. The fuel material has a thermal conductivity of k 200W/mK, and the thermal conductivity of the steel is k, 50W/mK. The outer edges of the steel sheets are maintained at temperatures T 80°c on the left side and TR 100°C on the right side.. The steady-state one-dimensional heat conduction equation in the fuel element is given by 0 dxk Evaluate: The position and magnitude of the maximum temperature. (a) [45 marks] The two heat transfer rates from the sides of the slab. (b) [10 marks] (c) The two convection heat transfer coefficients, if the slab is surrounded by a fluid at a temperature of 50°c. [10 marks] A nuclear fuel element has the form of a plate 6mm thick sandwiched between two stainless steel containing sheets, each of 2mm thickness. The fuel generates heat uniformly at a rate of q 2x10 W/m3. The fuel material has a thermal conductivity of k 200W/mK, and the thermal conductivity of the steel is k, 50W/mK. The outer edges of the steel sheets are maintained at temperatures T 80°c on the left side and TR 100°C on the right side.. The steady-state one-dimensional heat conduction equation in the fuel element is given by 0 dxk Evaluate: The position and magnitude of the maximum temperature. (a) [45 marks] The two heat transfer rates from the sides of the slab. (b) [10 marks] (c) The two convection heat transfer coefficients, if the slab is surrounded by a fluid at a temperature of 50°c. [10 marks]
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Related Book For
Fundamentals of Heat and Mass Transfer
ISBN: 978-0471457282
6th Edition
Authors: Incropera, Dewitt, Bergman, Lavine
Posted Date:
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