Lane's Theory Q.1) By using Lane's theory, and assuming: • Drop, in water level, Z 3.6 m • Water Depth, yfloor = 1.2 m . ΣL VERT= 5.2 m . ΣL HOR = 24 m • EL short - cut = 4.2 m • Maximum Distance, X, Lx = 18 m. • Floor is constructed on coarse sandy soil. a) If d = 4.80 m, obtain the creep ratio CL, and check with the allowable value; b) Compute maximum Uplift Pressure, Px at Lx, c) Check against uplift and obtain the factor of safety; d) Check the minimum floor thickness, and calculate the factor of safety.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Lane's Theory
Q.1) By using Lane's theory, and assuming:
• Drop, in water level, Z 3.6 m
• Water Depth, yfloor = 1.2 m
. ΣL VERT = 5.2 m
. ΣL HOR = 24 m
• EL Short- Cut = 4.2 m
• Maximum Distance, X, Lx = 18 m.
• Floor is constructed on coarse sandy soil.
a) If d = 4.80 m, obtain the creep ratio CL, and check with
the allowable value;
b) Compute maximum Uplift Pressure, Px at Lx,
c) Check against uplift and obtain the factor of safety;
d) Check the minimum floor thickness, and calculate the
factor of safety.
iv
Transcribed Image Text:Lane's Theory Q.1) By using Lane's theory, and assuming: • Drop, in water level, Z 3.6 m • Water Depth, yfloor = 1.2 m . ΣL VERT = 5.2 m . ΣL HOR = 24 m • EL Short- Cut = 4.2 m • Maximum Distance, X, Lx = 18 m. • Floor is constructed on coarse sandy soil. a) If d = 4.80 m, obtain the creep ratio CL, and check with the allowable value; b) Compute maximum Uplift Pressure, Px at Lx, c) Check against uplift and obtain the factor of safety; d) Check the minimum floor thickness, and calculate the factor of safety. iv
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