Chapter:
General-and-Particular-Dams
1. What is value of horizontal destabilizing force caused by formation of waves in a storage reservoir having a fetch of 52 km due to high wind of 172 km/h?
2. A low gravity dam of elementary profile made up of concrete of relative density 2.57 and safe allowable stress of foundation material 4.2 MPa. What is maximum height of dam without considering uplift force?
3. Calculate top width of dam if height of water stored is 84m.
4. The two-dimensional stability analysis of gravity dams proves better for U-shaped valleys than for V-shaped valleys.
5. Which of following joints justifies two-dimensional analysis of gravity dams?
6. The small openings made in huge body of a concrete gravity dam such as sluices and inspection galleries can be assumed to be causing only local effects without any appreciable effect on distribution of stresses as per principle of_____________________
7. What is formula for limiting height of a gravity dam?
8. The major principal stress at toe of a gravity dam under full reservoir condition neglecting tailwater effect is given by ________________
9. A gravity dam is subjected to hydrodynamic pressure caused by ______
10. Which of following attempts are made to reduce uplift in order to economize on provided section of a concrete gravity dam?
i. Providing drainage gallery to collect seepage water
ii. Constructing cut-off under upstream face
iii. Pressure grouting in dam foundation
iv. Provision of shear keys or keyways
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Techniques & Quality
Techniques & Quality
Water Requirements of Crops
Water Requirements of Crops
Canal Irrigation System
Canal Irrigation System
Sediment Transport and Irrigation Channels Design
Sediment Transport and Irrigation Channels Design
Lining of Irrigation Canals and its Economics
Lining of Irrigation Canals and its Economics
Water Logged Reclamation and Saline Soils for Agricultural Purposes
Water Logged Reclamation and Saline Soils for Agricultural Purposes
Irrigation Revenue Rates
Irrigation Revenue Rates
Rivers Behaviour, Control and Training
Rivers Behaviour, Control and Training
Diversion Head Works, Hydraulic Jump Usefulness in Irrigation Structure
Diversion Head Works, Hydraulic Jump Usefulness in Irrigation Structure
Seepage Theories and Weirs and Barrages Design
Seepage Theories and Weirs and Barrages Design
Canal Falls
Canal Falls
Regulation Modules and Canal Structure
Regulation Modules and Canal Structure
Cross Drainage Work
Cross Drainage Work
Culverts Small Road Bridges Construction
Culverts Small Road Bridges Construction
Ground Water for Irrigation through Wells and Tubewells
Ground Water for Irrigation through Wells and Tubewells
General and Particular Dams
General and Particular Dams
Reservoirs and Dam Reservoirs Planning
Reservoirs and Dam Reservoirs Planning
Gravity and Dam Design Construction
Gravity and Dam Design Construction
Earthen and Rock Fill Dams
Earthen and Rock Fill Dams
Spillways, Energy Dissipators and Spillway Gates
Spillways, Energy Dissipators and Spillway Gates
Pressure Conduits, Outlet Works through Dams and Rivers
Pressure Conduits, Outlet Works through Dams and Rivers
Hydro Electric Power
Hydro Electric Power
River Navigation and Tank Irrigation
River Navigation and Tank Irrigation
Arch and Buttress Dams
Arch and Buttress Dams
Exam oriented Questions
Exam oriented Questions from irrigation engineering
Topics
This Chapter General-and-Particular-Dams consists of the following topics
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