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Introduction to Fluid Mechanics

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Presentation on theme: "Introduction to Fluid Mechanics"— Presentation transcript:

1 Introduction to Fluid Mechanics
Chapter 6 Incompressible Inviscid Flow

2 Main Topics Momentum Equation for Frictionless Flow: Euler’s Equation
Euler’s Equation in Streamline Coordinates Bernoulli Equation – Integration of Euler’s Equation Along a Streamline for Steady Flow The Bernoulli Equation Interpreted as an Energy Equation Energy Grade Line and Hydraulic Grade Line

3 Momentum Equation for Frictionless Flow: Euler’s Equation
Continuity

4 Momentum Equation for Frictionless Flow: Euler’s Equation
Rectangular Coordinates

5 Momentum Equation for Frictionless Flow: Euler’s Equation
Cylindrical Coordinates

6 Euler’s Equation in Streamline Coordinates
Along a Streamline (Steady Flow, ignoring body forces)

7 Euler’s Equation in Streamline Coordinates
Normal to the Streamline (Steady Flow, ignoring body forces)

8 Bernoulli Equation – Integration of Euler’s Equation Along a Streamline for Steady Flow
Euler’s Equation in Streamline Coordinates (assuming Steady Flow)

9 Bernoulli Equation – Integration of Euler’s Equation Along a Streamline for Steady Flow
Integration Along s Coordinate

10 Bernoulli Equation – Integration of Euler’s Equation Along a Streamline for Steady Flow
No Friction Flow Along a Streamline Incompressible Flow

11 Bernoulli Equation Derivation Using Rectangular Coordinates

12 Bernoulli Equation – Integration of Euler’s Equation Along a Streamline for Steady Flow
Static, Stagnation, and Dynamic Pressures (Ignore Gravity) Stagnation Static Dynamic

13 Bernoulli Equation – Integration of Euler’s Equation Along a Streamline for Steady Flow
Pitot Tube

14 The Bernoulli Equation Interpreted as an Energy Equation

15 The Bernoulli Equation Interpreted as an Energy Equation
Basic Equation No Shaft Work No Shear Force Work No Other Work Steady Flow Uniform Flow and Properties

16 The Bernoulli Equation Interpreted as an Energy Equation
Hence Assumption 6: Incompressible Assumption 7:

17 The Bernoulli Equation Interpreted as an Energy Equation
No Shaft Work No Shear Force Work No Other Work Steady Flow Uniform Flow and Properties Incompressible Flow u2 – u1 – dQ/dm = 0

18 Energy Grade Line and Hydraulic Grade Line
Energy Equation H is the total head of the flow; it measures the total mechanical energy in units of meters or feet.

19 Energy Grade Line and Hydraulic Grade Line
Energy Grade Line (EGL) Hydraulic Grade Line (HGL)

20 Energy Grade Line and Hydraulic Grade Line

21 Irrotational Flow Irrotationality Condition Irrotational flow

22 Irrotational Flow Velocity Potential

23 Irrotational Flow Velocity Potential automatically satisfies Irrotationality Condition

24 Irrotational Flow 2D Incompressible, Irrotational Flow

25 Irrotational Flow The slope of a potential line (a line of constant ϕ)
The slope of a streamline (a line of constant ψ) Lines of constant ψ and constant ϕ are orthogonal.

26 Irrotational Flow Elementary Plane Flows

27 Irrotational Flow Superposition


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