The lower sand layer in the soil profile shown below is in an artesian condition. Calculate: a) The effective stress (6) at the top and base of the clay layer. b) The height of water in the piezometer for a = 0 at the base of the clay layer. c) The maximum depth (Z) of the proposed excavation (Figure Q1 (b)). (Assume Z>2 m). Tan 4.0 m [[m 2.0 m Ydry-16.6 kN/m² Sand Ground water table Y.. W.T. Sand 2.0 m Sand Yu-20.6 kN/m² тор 4.0 m You 20.6 kN/m Clay base 720.5 kN/m² Sand Clay Sand 24
The lower sand layer in the soil profile shown below is in an artesian condition. Calculate: a) The effective stress (6) at the top and base of the clay layer. b) The height of water in the piezometer for a = 0 at the base of the clay layer. c) The maximum depth (Z) of the proposed excavation (Figure Q1 (b)). (Assume Z>2 m). Tan 4.0 m [[m 2.0 m Ydry-16.6 kN/m² Sand Ground water table Y.. W.T. Sand 2.0 m Sand Yu-20.6 kN/m² тор 4.0 m You 20.6 kN/m Clay base 720.5 kN/m² Sand Clay Sand 24
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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The lower sand layer in the soil profile shown below is in an artesian condition. Calculate:
a) The effective stress (6) at the top and base of the clay layer.
b) The height of water in the piezometer for = 0 at the base of the clay layer.
c) The maximum depth (Z) of the proposed excavation (Figure Q1 (b)). (Assume Z>2 m).
Lawr
4.0 m
[2m
2.0 m
dry -16.6 kN/m²
Sand
Ground water table
Z
Y.. W.T.
2.0 m
Sand
Sand
720.6 kN/m²
TOP
4.0 m
You 20.6 kN/m²
Clay
base
Test 20.5 kN/m²
Sand
Ban
Clay
Send
ħ
24
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