*g_64. When the temperature is at 30 °C, the A-36 stece pipe fits snugly between the two fuel tanks. When fuel flow through the pipe, the temperatures at ends A and B rise to 130 °C and 80 C, respectively. If the temperature drop aloıng the pipe is linear, determine the average normal strest developed in the pipe. Assume the walls of each tank act as a spring, cach having a stiffness of k= 900 MN/m. 150 mm. 10 mm- Section a-a -61

Elements Of Electromagnetics
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*g_64. When the temperature is at 30 °C, the A-36 stece
pipe fits snugly between the two fuel tanks. When fuel flow
through the pipe, the temperatures at ends A and B rise to
130 °C and 80 C, respectively. If the temperature drop
aloıng the pipe is linear, determine the average normal strest
developed in the pipe. Assume the walls of each tank act as
a spring, cach having a stiffness of k= 900 MN/m.
150 mm.
10 mm-
Section a-a
-61
Transcribed Image Text:*g_64. When the temperature is at 30 °C, the A-36 stece pipe fits snugly between the two fuel tanks. When fuel flow through the pipe, the temperatures at ends A and B rise to 130 °C and 80 C, respectively. If the temperature drop aloıng the pipe is linear, determine the average normal strest developed in the pipe. Assume the walls of each tank act as a spring, cach having a stiffness of k= 900 MN/m. 150 mm. 10 mm- Section a-a -61
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