Determine the required volume of the concrete anchor blocks in m³. O 2600
Determine the required volume of the concrete anchor blocks in m³. O 2600
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
![SITUATION. The cable of a suspension bridge shown in the figure below runs over a frictionless
pulley on the top of each of the towers at A and B and is fixed to anchor blocks at D and E. The cable
carries a uniform horizontally distributed load of w = 160 kN/m. The permissible working stress of the
gross area of the cable, including voids, is 800 MPa. Unit weight of concrete is 23.4 kN/m³.
For this problem, L= 400m, S = 40m, H = 60m, a = 45°.
L
H
W(kN/m)
F
Anchor
Zoom image
Determine the required volume of the concrete anchor blocks in m³.
2600
2800
3000
2500
Anchor](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe60d0868-45df-40fb-95cc-334cda2273ff%2Fc64a13c9-3cb1-4c8e-8e79-cf17d4e8a045%2F9o112w6_processed.jpeg&w=3840&q=75)
Transcribed Image Text:SITUATION. The cable of a suspension bridge shown in the figure below runs over a frictionless
pulley on the top of each of the towers at A and B and is fixed to anchor blocks at D and E. The cable
carries a uniform horizontally distributed load of w = 160 kN/m. The permissible working stress of the
gross area of the cable, including voids, is 800 MPa. Unit weight of concrete is 23.4 kN/m³.
For this problem, L= 400m, S = 40m, H = 60m, a = 45°.
L
H
W(kN/m)
F
Anchor
Zoom image
Determine the required volume of the concrete anchor blocks in m³.
2600
2800
3000
2500
Anchor
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