ce 230-engineering fluid mechanics lecture # 15 & 16 fluid flow

14
CE 230- Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Post on 21-Dec-2015

239 views

Category:

Documents


2 download

TRANSCRIPT

Page 1: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

CE 230-Engineering Fluid Mechanics

Lecture # 15 & 16

Fluid flow

Page 2: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Flowing fluids

Static versus flowing fluid

Objectives of the part of course

Basic concepts and definitions

Page 3: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Types of flow

Steady versus unsteady

Uniform versus no uniform

1-D versus multi-D

Laminar versus turbulent

Page 4: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Development of flow pattern

Why not solve problem?

Flow visualization analog and experimental methods

Streamlines, streaklines and pathlines

Page 5: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow
Page 6: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Pathlines

Page 7: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Uniform flow

Page 8: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Non-uniform flow

Page 9: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Velocity distribution in a pipe- laminar vs turbulent flow

Page 10: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Volume flow rate, Q

Q = ΔV/ Δt = dV/dt

Calculating Q if velocity is constant

Q=∫ v.dA

Mass flow rate

Page 11: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Example 5.3

Find flow rate and average velocity in the 5 m wide channel.Given: d = 2 m and maximum velocity = 3 m/s.

Page 12: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Example

Find flow rate and average velocity in the triangular channel.Given: maximum velocity = 6 ft/s.

Page 13: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Material derivative and Acceleration

Total acceleration

Local acceleration

Convective acceleration

Page 14: CE 230-Engineering Fluid Mechanics Lecture # 15 & 16 Fluid flow

Example (p 4-26)

2)/5.01(2

LxtV

Determine local, convective and total accelaration at x=0.5L and t= 3 s