The figure shows the section of a gravity dam (non-overflow portion) built of concrete. Calculate (neglecting earthquake effects) the maximum vertical stresses at the heel and toe of the dam. Assume weight of concrete = 23.5 kN/m, and unit length of dam. Allowable stress in concrete may be taken 2500 kN/m and assuming yw = 9.81 kN/m. Max. W.L.. =285-0 6m =289-0 280-0 3 of drainage gallery Tail water 01 =211-0 205-0 56m
The figure shows the section of a gravity dam (non-overflow portion) built of concrete. Calculate (neglecting earthquake effects) the maximum vertical stresses at the heel and toe of the dam. Assume weight of concrete = 23.5 kN/m, and unit length of dam. Allowable stress in concrete may be taken 2500 kN/m and assuming yw = 9.81 kN/m. Max. W.L.. =285-0 6m =289-0 280-0 3 of drainage gallery Tail water 01 =211-0 205-0 56m
Principles of Foundation Engineering (MindTap Course List)
8th Edition
ISBN:9781305081550
Author:Braja M. Das
Publisher:Braja M. Das
Chapter14: Sheet-pile Walls
Section: Chapter Questions
Problem 14.11P
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Transcribed Image Text:The figure shows the section of a gravity
dam (non-overflow portion) built of concrete.
Calculate (neglecting earthquake effects) the
maximum vertical stresses at the heel and toe of the
dam. Assume weight of concrete = 23.5 kN/m, and
unit length of dam. Allowable stress in concrete
may be taken 2500 kN/m and assuming yw = 9.81
kN/m.
Max. W.L..
=285-0
6m
=289-0
280-0
3
of
drainage
gallery
Tail water
01
=211-0
205-0
56m
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