Principles of Foundation Engineering (MindTap Course List)
Principles of Foundation Engineering (MindTap Course List)
8th Edition
ISBN: 9781305081550
Author: Braja M. Das
Publisher: Cengage Learning
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Chapter 8, Problem 8.7P
To determine

Calculate the consolidation settlement under the corner of mat foundation.

 </TO-DETERMINE>

The consolidation settlement under the corner of mat foundation is 174mm¯.

Given information:

The length of the foundation is L=12m.

The width of the foundation is B=10m.

The depth of the foundation Df is 2.2m

The load value Q is 30MN.

The preconsolidation pressure σc is 105kN/m2.

The depth values are x1=2m, x2=2m and x3=5.2m

Calculation:

Find the consolidation settlement at the center of the foundation using the relation.

Sc(p)=CcHc1+eologσo+Δσavσo

Find the stress σo

σo=4.2m×16kN/m3+2m×189.81+5.2m2×17.59.81=67.2+16.38+19.99=103.57kN/m2

Height of clay Hc=5.2m

Cc=0.38eo=0.88

Find the net load per unit area using the relation.

q=QAγDf=30MN×1000kN1MN10×1216×2.2=214.8kN/m2

At the top of the clay layer,

m=Bz=102+2=2.5

n=Lz=122+2=3

Refer Table 6.4, “Variation of influence value I

Take I value as 0.242 for m=2.5 and n=3.

Find Δσt.

Δσt=Iqo=0.242qo

At the middle of the clay layer,

m=Bz=106.2=1.61

n=Lz=126.2=1.94

Refer Table 6.4, “Variation of influence value I

Take I value as 0.226 for m=1.61 and n=1.94.

Find Δσm.

Δσm=Iqo=0.226qo

At the bottom of the clay layer,

m=Bz=109.2=1.086

n=Lz=129.2=1.30

Refer Table 6.4, “Variation of influence value I

Take I value as 0.201 for m=1.086 and n=1.30.

Find Δσm.

Δσm=Iqo=0.201qo

Find the average stress increase in the clay layer below the corner of each rectangular area.

Δσav=16Δσt+4Δσm+Δσb=16214.80.242+4×0.226+0.201=48.2kN/m2

Find the consolidation settlement at the center of the foundation using the relation.

Sc(p)=CcHc1+eologσo+Δσavσ=0.38×5.21+0.88log103.57+48.2103.57=0.174m=174mm

Therefore, the consolidation settlement under the corner of mat foundation is 174mm¯.

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(b) Figure Q2 (b) shows the ring foundation to support a silo. Given R1 = 3 m while R2 =6 m. The total vertical load is 7500 kN. (i) Calculate and plot the vertical stress increase with depth up to 7 m (use 1 minterval) under the centre of the ring (point O).(ii) Determine the maximum vertical stress increase and its location.
A mat foundation is shown in Figure P8.6. The design considerations are L = 12 m, B = 10 m, Df = 2.2 m, Q = 30 MN, x1 = 2 m, x2 = 2 m, x3 = 5.2 m, and preconsolidation pressure σ'c < 105 kN/m2. Calculate the consolidation settlement under the center of the mat.
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