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Engineering Hydrology(CE- 235)<br />1<br />INTRODUCTION<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad...
COURSE OUTCOMES & OBJECTIVES
COURSE OUTLINE
DETAILED SYLLABUS
GRADING CRITERIA
NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>4<br />Engineering Hydrology(CE- 235)<br />COURSE ...
Introduction of fundamentals of subsurface flow
NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li><ul><li>NUST Institute of Civil Engineering/Engr S...
7<br />Engineering Hydrology(CE- 235)<br />On completion of this course, the students will be able to:<br /><ul><li>Unders...
Calculate a catchment’s annual water balance
Identify suitable hydrological analyses for specified water resources projects
NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>8<br />Engineering Hydrology(CE- 235)<br /><ul><li...
Estimate rainfall intensity for design purposes using simple empirical relationships
Gain a good working knowledge of contemporary institutional framework for managing the water cycle in Pakistan
Design and implement field measurements of river flow and/or analyze data from such an exercise to determine river channel...
NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>9<br />Engineering Hydrology(CE- 235)<br /><ul><li...
Understand various aspects of groundwater in different geological environments and the present day problems related to Pak...
NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>10<br />Engineering Hydrology(CE- 235)<br />COURSE...
CE-235 EH Coursepack 2010
CE-235 EH Coursepack 2010
CE-235 EH Coursepack 2010
CE-235 EH Coursepack 2010
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CE-235 EH Coursepack 2010

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Transcript of "CE-235 EH Coursepack 2010"

  1. 1. Engineering Hydrology(CE- 235)<br />1<br />INTRODUCTION<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>2<br />Engineering Hydrology(CE- 235)<br />INSTRUCTOR: Lab Engr. Sajjad Ahmad<br /> Phone: (051) 90854585<br /> Email: pc277@yahoo.com<br /> <br />OFFICE: Hydraulics Lab, NICE<br /> Building (Room # 08)<br /> <br />OFFICE HOURS: Mon - Fri (9:00am-5:00pm)<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>3<br />Engineering Hydrology(CE- 235)<br /><ul><li>COURSE PURPOSE
  2. 2. COURSE OUTCOMES & OBJECTIVES
  3. 3. COURSE OUTLINE
  4. 4. DETAILED SYLLABUS
  5. 5. GRADING CRITERIA
  6. 6. NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>4<br />Engineering Hydrology(CE- 235)<br />COURSE PURPOSE<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>5<br />Engineering Hydrology(CE- 235)<br /><ul><li>Introduce students about the principles of hydrology, including the hydrological cycle and its impact on water resources, measurement of catchment rainfall and its analysis, measurement of flow in natural rivers and channels
  7. 7. Introduction of fundamentals of subsurface flow
  8. 8. NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></ul>6<br />Engineering Hydrology(CE- 235)<br />COURSE OUTCOMES & OBJECTIVES<br />
  9. 9. 7<br />Engineering Hydrology(CE- 235)<br />On completion of this course, the students will be able to:<br /><ul><li>Understand the relative importance of the different physical processes of the hydrological cycle and their interplay to determine water resources availability
  10. 10. Calculate a catchment’s annual water balance
  11. 11. Identify suitable hydrological analyses for specified water resources projects
  12. 12. NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>8<br />Engineering Hydrology(CE- 235)<br /><ul><li>Use point rainfall measurements to estimate catchment average rainfall
  13. 13. Estimate rainfall intensity for design purposes using simple empirical relationships
  14. 14. Gain a good working knowledge of contemporary institutional framework for managing the water cycle in Pakistan
  15. 15. Design and implement field measurements of river flow and/or analyze data from such an exercise to determine river channel flow
  16. 16. NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>9<br />Engineering Hydrology(CE- 235)<br /><ul><li>Make qualitative and quantitative predictions of where, how fast and how much water will move in soils, sediments, and rocks at or near the surface of the Earth
  17. 17. Understand various aspects of groundwater in different geological environments and the present day problems related to Pakistan water resources e.g., salinity, groundwater quality, groundwater-surface water interaction
  18. 18. NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>10<br />Engineering Hydrology(CE- 235)<br />COURSE OUTLINE<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>11<br />Engineering Hydrology(CE- 235)<br />COURSE OUTLINE<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>12<br />Engineering Hydrology(CE- 235)<br />DETAILED SYLLABUS<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>13<br />Engineering Hydrology(CE- 235)<br />Part A – Surface Water Hydrology<br /> <br />1.Introduction<br />Introduction<br />Hydrological cycle<br />Hydrologic equation<br />Importance and practical applications of hydrology<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>14<br />Engineering Hydrology(CE- 235)<br />2. Precipitation<br />Types of precipitation<br />Factors necessary for the formation of precipitation<br />Measurement of precipitation<br />Computation of Average Rainfall over a Basin<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>15<br />Engineering Hydrology(CE- 235)<br />3. Runoff & Hydrograph<br />Runoff & Factors Affecting Runoff<br />Computation of Runoff<br />Characteristics of hydrograph<br />Components of a hydrograph<br />Hydrograph separation<br />Estimation of maximum rate of runoff <br />Unit Hydrograph<br />S-curve<br />Discharge estimation by probabilistic method<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>16<br />Engineering Hydrology(CE- 235)<br />4. Stream Flow Routing<br />The phenomenon of flooding and its causes<br />Frequency and duration analysis<br />Reservoir & channel routing<br />Methods of Stream Gauging<br />Measurement of Stream Flow by Current Meter<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>17<br />Engineering Hydrology(CE- 235)<br />Part B – GROUND WATER HYDROLOGY<br />5.Basic Definitions & Law in GWH<br />Darcy’s Law<br />Differential Eq governing Ground Water Flow<br />Porosity, Specific Yield, Specific Retention, Storage Coefficient, Permeability & Transmissibility<br />Water Yielding Properties<br />Ground Water Reservoir<br />Aquiclude, Aquifuge, Aquifer & Types of Aquifer<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>18<br />Engineering Hydrology(CE- 235)<br />6.Well Hydraulics<br />Steady Radial Flow to Well in Confined & Unconfined Aquifers – Dupuits Theory<br />Assumptions & Limitations of Dupuits Theory<br />Well Losses<br />Capacity of Well<br />Interference among Wells<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>19<br />Engineering Hydrology(CE- 235)<br />7.Tube Well Construction<br />Tube Well Types<br />Tube Well Construction<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>20<br />Engineering Hydrology(CE- 235)<br />GRADING CRITERIA<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>21<br />Engineering Hydrology(CE- 235)<br />DISTRIBUTION OF MARKS<br /><ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad</li></li></ul><li>NUST Institute of Civil Engineering/Engr Sajjad Ahmad<br />22<br />
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