Solar wind hybrid power system ppt

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Last year project 2013

Transcript of Solar wind hybrid power system ppt

DESIGN AND DEVELOPMENT

SOLAR-WIND HYBRID POWER SYSTEM

VIHAR MODI 10191352GAURAV PATEL 10161241

SUPERVISOR : LAICHANG ZHANG

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Pollution from power plant Test Video Design stages Resource analysis Various applications Test results Major benefit

CONTENT

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To generate continuous power from wind and solar energy. (day and night)

To use VAWT instead of HAWT Design and manufacture a Prototype model

Objective

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SCHEMATIC DIAGRAM

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FLASH BACK

DESIGN 1 DESIGN 2

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FINAL DESIGN

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Solar-wind hybrid power system

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CHEAP Maintenance, No gear mechanism Bird and bat friendly Quiet in operation VAWT catches wind more efficiently, does not need to

be as tall. Easier to permit in residential neighborhoods.

Small profile Low height required More reliable Less expensive than HAWT (approx. 45%)

Advantages of VAWT over HAWT

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WA Wind observation

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Applications

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ROAD LIGHTING

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Edith Cowan University 15LANDSCAPE LIGHTING

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PUMP IRRIGATION

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Telecommunication System

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FISHING BOAT

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YACHT

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RURAL AREA

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Technical details and

data

SOLAR – WIND HYBRID POWER SYSTEM

START WIND SPEED

5.6 Km/h

Rated wind speed

36 km/h

Rated voltage 12v

Rated power 200w

Wind turbine material

Galvanized iron

No. of wings 8

Fan diameter 60cm

Safe wind speed 50 km/h

Weight 25kg

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Test Resul ts

Output power

Wind speed (km/h)

o/p (w)

7.2 1

14.4 1.2

25.2 50

28.8 70

32.4 120

wind Vs power.xlsx

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S p e c i fi c a t i o n so f s o l a r p a n e l

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SOLAR PANEL

TYPE Polycrystalline

Rated Power 10 W

Battery Charging Time(deep cycle)

20-50 hrs.

Optimum Operating Voltage

17 v

Optimum Operating Current

0.59 A

Open Circuit Voltage

21 v

Short Circuit Voltage

0.61 A

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“ You can sell us power” –SYNERGY

We can export surplus energy into the gridlines and can reduce electricity bills or get credit amount back.

Buy back scheme

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Very Low wind speed

Time management

Material selection and cost

Design decisions

CHALLENGES FACED

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LESSION LEARNT

Planning Problem solving abilities Auto Cad Pro –E Various machines real operations

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Wind turbine designMore efficient

Dynamometer

Future work

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As we design for the 200 W output system but due to friction loss, slip loss and other losses we come up with 120 W power output system.

Consequently, our design is successful due to major support and guidance from ECU staff, friends and relatives.

CONCLUSION

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DR. LAICHANG ZHANG DR. ALEX RASSAU DR. XIAOLI ZHOA DR. DOUGLAS CHAI MR. K BAJARIA MR. MITVESH PATEL

Special thanks

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Thank you