+ All Categories
Home > Documents > Flow types Internal External Relative velocity between fluid & object Auto moving through air Water...

Flow types Internal External Relative velocity between fluid & object Auto moving through air Water...

Date post: 28-Dec-2015
Category:
Upload: benjamin-hamilton
View: 218 times
Download: 0 times
Share this document with a friend
Popular Tags:
36
Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building
Transcript
Page 1: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Flow types

Internal External• Relative velocity between fluid & object• Auto moving through air• Water moving against bridge abutment• Wind against building

Page 2: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 3: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Drag force

Resistance to “forward” motion – push back in direction of fluid flow

Depends on• Fluid/object velocities• Fluid properties• Geometry of object• Surface roughness

Page 4: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Drag Forces

Two types• Friction drag: viscous shear effects as flow

moves over object surface. Acts parallel to surface

• Form drag: affected by geometry of object.

Acts perpendicular to object

Page 5: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Drag force

Theory: integrate pressure & shear forces over object surface.

• Complex mathematics• Empirical approach

Page 6: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Similitude

Model simulates prototype Reliance on dimensionless parameters• Reynolds Number• Relative roughness• Drag coefficient - CD

Page 7: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Wind tunnels

Experimental drag determinations

• Buildings• Ships• Bridge supports/abutments• Vehicles

Page 8: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 9: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 10: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 11: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Wind Tunnel

DC 3 & B 17: about 100 hours of testing F 15: 20 000 hours of testing

Page 12: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Drag Coefficient

FD = CD A ρ (V2/2) V – free stream velocity Characteristic area –e.g. frontal for auto Air density CD – drag coefficient characteristic of

geometry

Page 13: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Drag Coefficient

Includes both pressure & friction drags: one usually dominates

• Airfoil – friction; viscous shear drag• Auto – pressure; form drag

Page 14: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 15: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Drag force

Assume for experimentation• No adjacent surfaces• Free stream velocity uniform & steady• No free surface in fluid

Page 16: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Drag force

Simplification: power to move vehicle on level ground

• Rolling friction• Drag force

Page 17: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Vehicles

Early autos – high CD; no concern < 30mph Higher speeds concerns increased Advances in metal-forming techniques for

improved body designs Control CD

• Fuel costs• Conserve non-renewable resources• Pollution

Page 18: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 19: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Vehicles

Nose of auto Trunk of auto Surface finish Discontinuities• Mirrors• Door handles• Wheel wells• Air intakes

Page 20: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Vehicles

Reduced drag vs other factors• Visibility• Passenger accommodation• Aesthetics

Page 21: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Fluid Mechanics Lab

Simple shapes• Disk• Hemisphere• Sphere• Teardrop

Page 22: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Pressure drag

Flat disk• All pressure; no friction drag• Streamline separation → wake; low

pressure region. Adverse pressure gradient

P front-to-back

Page 23: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 24: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Pressure drag

Sphere• Streamline separation• Wake

Page 25: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 26: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 27: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Pressure drag

Tear drop – streamline• Reduce separation – farther along surface

yields smaller wake• Increase in friction drag; optimum

streamline design

Page 28: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 29: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 30: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Shape and flow Formdrag

Skinfriction

            0% 100%

            ~10% ~90%

           ~90% ~10%

           100% 0

Page 31: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Design Process: EWT Models

Photo’s of autos SolidWorks design CFD analysis of design: streamlines, CD

prediction 3D printer for models using SolidWorks design Preparation of models for EWT: surface &

mounting EWT testing: Lab CD vs predicted CD. Agreement

within 10%.

Page 32: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 33: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 34: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 35: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.
Page 36: Flow types Internal External Relative velocity between fluid & object Auto moving through air Water moving against bridge abutment Wind against building.

Recommended