Q # 3: Figure 1 shows a section of a hydraulic structure on permeable foundation. Calculate the average hydraulic gradient according to a) Bligh's creep theory b) Lane's weighted creep theory Also,...



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Q # 3: Figure 1 shows a section of a hydraulic structure on permeable foundation. Calculate the<br>average hydraulic gradient according to<br>a) Bligh's creep theory<br>b) Lane's weighted creep theory<br>Also, find the uplift pressures at points A and B, and the floor thickness required at these<br>points.<br>RL (Reg.No)<br>A<br>B<br>RL (Reg.No - 6)<br>15 m<br>RL (Reg.No - 9)<br>20 m<br>RL (Reg.No - 12)<br>25 m<br>Reg.No/100<br>RL (Reg.No - 20)<br>Fig. 1 for Q# 3<br>

Extracted text: Q # 3: Figure 1 shows a section of a hydraulic structure on permeable foundation. Calculate the average hydraulic gradient according to a) Bligh's creep theory b) Lane's weighted creep theory Also, find the uplift pressures at points A and B, and the floor thickness required at these points. RL (Reg.No) A B RL (Reg.No - 6) 15 m RL (Reg.No - 9) 20 m RL (Reg.No - 12) 25 m Reg.No/100 RL (Reg.No - 20) Fig. 1 for Q# 3

Jun 11, 2022
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