When the temperature is at 31°C, the A-36 steel pipe fits snugly between the two fuel tanks. When fuel flows through the pipe, it causes the temperature to vary along the pipe as T(x) = (1.1x² – 12x + 113)°C where x is in meters. If the pipe were unconstrained by the rigid wall, what would its elongation be? For A-36 steel, a = 12(10-6)/°C. 150 mm , 10 mm- Section a - a -6 m

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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When the temperature is at 31°C, the A-36 steel pipe fits snugly between the two fuel
tanks. When fuel flows through the pipe, it causes the temperature to vary along the pipe
as T(x) = (1.1x? – 12x + 113)°C where x is in meters. If the pipe were unconstrained
by the rigid wall, what would its elongation be? For A-36 steel, a = 12(10-6)/°C.
150 mm.
10 mm-
Section a - a
-6 m
Transcribed Image Text:When the temperature is at 31°C, the A-36 steel pipe fits snugly between the two fuel tanks. When fuel flows through the pipe, it causes the temperature to vary along the pipe as T(x) = (1.1x? – 12x + 113)°C where x is in meters. If the pipe were unconstrained by the rigid wall, what would its elongation be? For A-36 steel, a = 12(10-6)/°C. 150 mm. 10 mm- Section a - a -6 m
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