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  • First Year-Engineering Syllabus
    • Chemistry
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    • Elements Of Civil Engineering
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Hydraulic Machines
  • Online Study
  • Civil Engineering
  • Hydraulic Machines

Canal head works
  • Hydraulic Turbines
  • Cascade Nomenclature
  • Lift and Drag
  • Cascades in Motion
  • Cascade Performance
  • Mach Number Effect
  • Ideal Characteristics
  • The Head-Capacity Curve of a Straight Cascade:
  • Radial Cascade
  • Singularity Method
  • Method of Solution for Single Airfoil
  • Conformal Transformation Method
  • Centrifugal Pumps (Radial)
  • Centrifugal Pump Actual Performance
  • Brake Horsepower and Efficiency Curves
  • Influence of Physical Properties on Performance
  • Leakage Calculation
  • Mechanical Seals
  • Axial Thrust
  • Impeller Design
  • Centrifugal Pump Types
  • Axial Pumps (Propeller Pumps)
  • Study of Flow Inside the Rotor (Radial Equilibrium)
  • Performance of Axial Flow Propeller Pumps
  • Pump Selection and Applications
  • Design of the Intake Chamber of Vertical Pumps
  • Pressure Surges (Water Hammer) in Piping Systems
  • Pump Installation
INTRODUCTION OF HYDRAULICS & HYDRAULIC MACHINE
  • General Introduction
  • Momentum Transfer Principles
  • Energy Equation
  • Euler Theory (Elementary)
  • Modern Theory of Turbomachines
  • Necessity for flow unsteadiness
  • Approximate calculation of deviation after Stodola
  • Some Practical Considerations (Actual Machine Design)
  • Coefficients and Efficiencies
  • Dimensional Analysis
  • Application of Dimensional Analysis on Turbomachines
  • Performance Curves
  • Reynolds Number Effect
  • Specific Speed
Cross drainage works
  • Impulse Turbines (Pelton Wheel)
  • Reaction Turbines
  • Head Delivered by Turbine and Draft Tube
  • Types of Draft Tube
  • Some Turbines Installations
  • Fluid Coupling
  • Equation of state
  • Laws of Thermodynamics
  • Compression of Gases
  • Plane Compressible Flow
  • Gothert's Rule
  • Fans
  • Head and Power
  • Coefficients and Specific Speed
  • Radial Type Impeller Design
  • Reciprocating Pumps
  • Instantaneous Rate of Flow
  • Rotary Pumps
  • Performance of Positive Pumps
Storage works
  • INTRODUCTION OF PRESSURE RECOVERY DEVICES
  • Diffuser Types
  • Vaned Diffuser
  • Volute Type Diffuser
  • INTRODUCTION OF THEORY OF CAVITATION IN CENTRIFUGAL PUMPS
  • INCEPTION OF CAVITATION
  • SIGNS OF CAVITATION
  • MECHANISMS OF DAMAGE
  • THERMODYNAMIC EFFECTS ON PUMP CAVITATION
  • NET POSITIVE SUCTION HEAD
  • THOMA’S CAVITATION CONSTANT
  • SUCTION SPECIFIC SPEED
  • SOME DISCUSSIONS CONCERNING THE NPSH
  • CAVITATION NOISE IN CENTRIFUGAL PUMPS
  • Frequency behavior of cavitation noise
  • Estimation of erosion risk basing on fluid-borne noise
  • Relative erosion intensity
  • HOW TO PREVENT CAVITATION
  • Steam Turbine Power Plant
  • Combined Cycle Power Plants
  • Underground Power Station
  • Classification of Fluid Machines
  • Pumps (Axial and Radial)
  • Compressors (Axial and Radial)
  • Turbines
  • Euler's Theory Applied to Turbo Machines
  • Euler's Head & Euler's Equation in the Kinetic Form
  • Description of Pelton Turbine Installation
  • Analysis
  • Working Proportions for Design of Pelton Wheel
  • Regulation of Pelton Wheel
  • Regulating System of Pelton Wheel Power Station
  • Description of Francis Turbine
  • Draft Tube
Spillway and stilling basins
  • Working Proportions of Francis Turbine
  • SpecifiC Speed of Hydraulic Turbines
  • Regulation of Francis Turbine
  • Centrifugal Pump
  • Analysis of centrifugal pump
  • Specific Speed
  • Cavitation and Net Positive Suction Head (NPSH)
  • Pumps in Series and Parallel
  • Axial Flow Pump
  • Description of a Reciprocating Pump
  • Analysis
  • Application of Piston Pumps
  • Mechanism of Hydraulic Abrasive Effect of Particles
  • Abrasive Erosion of Hydraulic Turbine
  • Abrasive Erosion of Pump
  • Technical and Economic Effect Caused by the Erosion Arising in Hydraulic Turbines and Pumps
  • Approach to Anti Abrasive from Hydraulic Machinery
  • Calculation of Hydraulic Abrasion
  • Prediction Model of Hydraulic Abrasion
  • Mechanistic Model Developed by The Erosion/Corrosion
  • General Concepts of Multiphase Flow
  • Closed Turbulent Equations for Liquid-Solid Two- Phase Flow through
  • The Algebraic Turbulence Stresses Model of Two-Phase Flow
  • Lagrangian-Eulerian Model for Liquid-Particle Two-Phase Flow
  • Numerical Simulation of Liquid-Particle Two-Phase Flow
  • Selection of Erosion-Resistant Materials
  • Selection of Materials for Hydraulic Machines
  • Organic Polymer Linings
  • Room-Temperature Curing Polyurethane (RTV)
  • Ceramics