Starting a new Lecture Notes Series on Civil - Advanced Hydraulics
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Civil - Advanced Hydraulics By Lecture Notes together!
Lecture 3: Flow classifications velocity distribution
Lecture 4: Pressure distribution
Lecture 5: Equation of continuity energy
Lecture 6: Specific energy critical flow
Lecture 7: Energy, momentum specific force
Lecture 8: Computation of critical flow
Lecture 9: Critical flow computations
Lecture 10: Introduction to uniform flow
Lecture 11: Manning's equation and normal depth
Lecture 12: Uniform Flow Computations
Lecture 14: Uniform flow approximation for flood discharge
Lecture 15: Design of channels for uniform flow
Lecture 16: Design of channels using uniform flow
Lecture 17: Design of erodible channels
Lecture 18: Introduction to gradually varied flows
Lecture 19: Gradually varied flow equations
Lecture 20: Classification of gradually varied flow
Lecture 21: Classification of gradually varied flow
Lecture 23: GVF profile properties and transitional depths
Lecture 24: Gradually varied flow computations
Lecture 25: Gradually varied flow computations RK method
Lecture 27: Spatially varied flow
Lecture 28: Features on spatially varied flow
Lecture 29: Rapidly varied flowintroduction
Lecture 30: Theoretical aspects of hydraulic jump
Lecture 31: Characteristics of jumps in rectangular channelh
Lecture 32: Features of hydraulic jumps
Lecture 33: Jumps as energy dissipators
Lecture 34: Jump controls
Lecture 35: Surges
Lecture 36: Surges
Lecture 37: Channel transitions
Lecture 38: Channel transitions
Lecture 39: Channel transition
Lecture 40: Application of momentum principles
Lecture 41: Pumps
Lecture 42: Turbines (pumps, turbines)
Lecture 43: Turbines, cavitation