Find the allowable capacity of the belled caisson shown. The diameter of the bottom of the bell is 4 m, and the height of the bell is 2 m. The diameter of the shaft is 1.8m, and the height of the shaft is 10m. Cohesion of the clay layer is 100 kN/m?. Adhesion factor (a) was found to be 0.55. Ignore the skin friction in the bell and one diameter of the shaft above the bell.
Find the allowable capacity of the belled caisson shown. The diameter of the bottom of the bell is 4 m, and the height of the bell is 2 m. The diameter of the shaft is 1.8m, and the height of the shaft is 10m. Cohesion of the clay layer is 100 kN/m?. Adhesion factor (a) was found to be 0.55. Ignore the skin friction in the bell and one diameter of the shaft above the bell.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Q1
![Find the allowable capacity of the belled caisson shown. The diameter
of the bottom of the bell is 4 m, and the height of the bell is 2 m. The
diameter of the shaft is 1.8 m, and the height of the shaft is 10m.
Cohesion of the clay layer is 100 kN/m?. Adhesion factor (a) was found
to be 0.55. Ignore the skin friction in the bell and one diameter of the
shaft above the bell.
8.2m
1.Bm
(Ignore the skin friction)
2m
(Ignore the skin friction)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa70cdc81-c0cb-4e83-8b38-24296c07eff7%2F7b5f9902-234f-4f5d-8630-34930606217a%2Flatk2i_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Find the allowable capacity of the belled caisson shown. The diameter
of the bottom of the bell is 4 m, and the height of the bell is 2 m. The
diameter of the shaft is 1.8 m, and the height of the shaft is 10m.
Cohesion of the clay layer is 100 kN/m?. Adhesion factor (a) was found
to be 0.55. Ignore the skin friction in the bell and one diameter of the
shaft above the bell.
8.2m
1.Bm
(Ignore the skin friction)
2m
(Ignore the skin friction)
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