dy (a) Determine the inner radius r, of the cylinder. (b) Determine the volumetric rate of...
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dy (a) Determine the inner radius r, of the cylinder. (b) Determine the volumetric rate of heat generation, à (W/m³). (c) Determine the axial distribution of the heat flux at the outer surface, q (ro. 2). What is the heat rate at the outer surface? Is it into or out of the cylinder? The inner radius of the cylinder, in meters: 1.40 ri Question 3 Two-dimensional, steady-state conduction occurs in a hollow cylindrical solid of thermal conductivity k = 16 W/m-K, outer radius r= 1.5 m and overall length 22 = 5 m, where the origin of the coordinate system is located at the midpoint of the center line. The inner surface of the cylinder is insulated, and the temperature distribution within the cylinder has the form T (r. 2) = a + b + c Inr+dz, where a = 500°C, b= 11.4°C/m², c= -45°C, d= -22.8°C/m² and r and 2 are in meters. m The volumetric rate of heat generation, in W/m³: 4-0 W/m³ The heat flux at the outer surface, in W/m2; 4.2)= W/m² The heat rate at the outer surface, in W: 9, (r.)= W Is the heat flow into or out of the cylinder? PRINTER VERSION Physical Properties Mathematical Functions Show Work is REQUIRED for this question: Doen Show Work BACK NEXT H dy (a) Determine the inner radius r, of the cylinder. (b) Determine the volumetric rate of heat generation, à (W/m³). (c) Determine the axial distribution of the heat flux at the outer surface, q (ro. 2). What is the heat rate at the outer surface? Is it into or out of the cylinder? The inner radius of the cylinder, in meters: 1.40 ri Question 3 Two-dimensional, steady-state conduction occurs in a hollow cylindrical solid of thermal conductivity k = 16 W/m-K, outer radius r= 1.5 m and overall length 22 = 5 m, where the origin of the coordinate system is located at the midpoint of the center line. The inner surface of the cylinder is insulated, and the temperature distribution within the cylinder has the form T (r. 2) = a + b + c Inr+dz, where a = 500°C, b= 11.4°C/m², c= -45°C, d= -22.8°C/m² and r and 2 are in meters. m The volumetric rate of heat generation, in W/m³: 4-0 W/m³ The heat flux at the outer surface, in W/m2; 4.2)= W/m² The heat rate at the outer surface, in W: 9, (r.)= W Is the heat flow into or out of the cylinder? PRINTER VERSION Physical Properties Mathematical Functions Show Work is REQUIRED for this question: Doen Show Work BACK NEXT H
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