co2 reduction by truck aerodynamics

19
CO2 reduction by truck aerodynamics Truck Aerodynamics Delivering the goods, in June 2012

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Page 1: CO2 reduction by truck aerodynamics

CO2 reduction by truck aerodynamics

Truck AerodynamicsDelivering the goods, in June 2012

Page 2: CO2 reduction by truck aerodynamics

2< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Agenda

1 Basic of aerodynamics

2 Aerodynamic potentials at the front

3 Aerodynamic potentials at the rear

4 CO2 reduction by aerodynamics

5 practicability of the Concept S

6 Conclusion

Page 3: CO2 reduction by truck aerodynamics

3< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

CD Values

CD = 0,3

Page 4: CO2 reduction by truck aerodynamics

4< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Assistance systems & platooning

20 Meter Distance

10 Meter Distance

Page 5: CO2 reduction by truck aerodynamics

5< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Agenda

1 Basic of aerodynamics

2 Aerodynamic potentials at the front

3 Aerodynamic potentials at the rear

4 CO2 reduction by aerodynamics

5 Practicability of the Concept S

6 Conclusion

Page 6: CO2 reduction by truck aerodynamics

6< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Driving direction

CD reduction by rounding the cornersTo realize by elongation of the cabin

Sleeping Area(Bed width = 700mm)

Page 7: CO2 reduction by truck aerodynamics

7< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Benchmark

Quelle: Trucker 02/09

ca. 8% fuel reduction only by changing the cab

(no serious test & road condition not mentioned)

Page 8: CO2 reduction by truck aerodynamics

8< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Agenda

1 Basic of aerodynamics

2 Aerodynamic potentials at the front

3 Aerodynamic potentials at the rear

4 CO2 reduction by aerodynamics

5 Practicability of the Concept S

6 Conclusion

Page 9: CO2 reduction by truck aerodynamics

9< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

conventional trailer aerodynamic trailer

Clear improvement of the aerodynamics by reduction of the vortexin the rear end (by boat tail shape)

CD reduction by boat tailing the trailerTo realize by elongation of the trailer length

Page 10: CO2 reduction by truck aerodynamics

10< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Concept SComparison of the dimensions to the MAN TGX

Page 11: CO2 reduction by truck aerodynamics

11< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

VariantsLength Change

Front & Rear

Paletts [1m Height]

Volume [98 m³] const.Fuel Reduction

[Easy highway]

Basis TGX 0%

Front :+ 0,8 m

Rear : 0- 5%

Front :+ 0,8 m

Rear : + 0,6 m- 8%

Front :+ 0,8 m

Rear : + 1,2 m- 10%

Front :+ 0,8 m

Rear : + 2,7 m- 15%

VariantsLength Change

Front & Rear

Paletts [1m Height]

Volume [98 m³] const.Fuel Reduction

[Easy highway]

Basis TGX 0%

Front :+ 0,8 m

Rear : 0- 5%

Front :+ 0,8 m

Rear : + 0,6 m- 8%

Front :+ 0,8 m

Rear : + 1,2 m- 10%

Front :+ 0,8 m

Rear : + 2,7 m- 15%

10°

68

68

70

70

Basis

A

B

D

F

68

Boat tail

Flaps

Fuel reduction by aerodynamicsDependency of the trailer shape

Page 12: CO2 reduction by truck aerodynamics

12< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Agenda

1 Basic of aerodynamics

2 Aerodynamic potentials at the front

3 Aerodynamic potentials at the rear

4 CO2 reduction by aerodynamics

5 practicability of the Concept S

6 Conclusion

Page 13: CO2 reduction by truck aerodynamics

13< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Composition of the fuel consumption

Easy highway Medium hard highway Very hard highway

Air Drag

Powertrain losses

Rolling resistance

Auxiliary consumer

Climbing resistance

Acceleration resistance

Page 14: CO2 reduction by truck aerodynamics

14< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Fuel reduction only by aerodynamicsReduction of the Drag value from CD= 0,5 to CD = 0,3

Easy highway Medium hard highway Very hard highway

Page 15: CO2 reduction by truck aerodynamics

15< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Agenda

1 Basic of aerodynamics

2 Aerodynamic potentials at the front

3 Aerodynamic potentials at the rear

4 CO2 reduction by aerodynamics

5 Practicability of the Concept S

6 Conclusion

Page 16: CO2 reduction by truck aerodynamics

16< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Concept STurning radius

Page 17: CO2 reduction by truck aerodynamics

17< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Agenda

1 Basic of aerodynamics

2 Aerodynamic potentials at the front

3 Aerodynamic potentials at the rear

4 CO2 reduction by aerodynamics

5 Practicability of the Concept S

6 Conclusion

Page 18: CO2 reduction by truck aerodynamics

18< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

History

Today

Future ???

?

????

? ? ?

? ?

?

?

Aerodynamic concepts Reality on the road

18

The aerodynamic concept of the future

Page 19: CO2 reduction by truck aerodynamics

19< >MAN Truck & Bus AG S.Kopp Delivering the goods, 2012 19.06.2012

Thank you for your attention !

Stephan Kopp[[email protected]]