by a.d.thirumoorthy tamil nadu electricity board india

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by A.D.Thirumoorthy Tamil Nadu Electricity Board India

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Page 1: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

byA.D.Thirumoorthy

Tamil Nadu Electricity BoardIndia

Page 2: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Large untapped potential in India ~ 65,000 – 100,000 MW

Technologies: Synchronous and Asynchronous Generators (with and without gears), New hybrid technologies are being introduced

Turbine unit sizes: 500 kW to 1.65 MW, may go up to 2.0 MW in near future

Leading States: Tamil Nadu – 4200 MW, Maharashtra – 1800 MW, Gujarat 1400 MW

Costs ~ Rs 6-6.5 Cr / MW subject to project size, location, technology

Page 3: By A.D.Thirumoorthy Tamil Nadu Electricity Board India
Page 4: By A.D.Thirumoorthy Tamil Nadu Electricity Board India
Page 5: By A.D.Thirumoorthy Tamil Nadu Electricity Board India
Page 6: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Leading reactive power raises local voltage Lagging reactive power lowers local voltage Add capacitors to counteract low voltage

conditions

Add reactors to counteract high voltage conditions, Turn off capacitors

Page 7: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

V&I In Wind Mill

Page 8: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Voltage Harmonics

Page 9: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Current Harmonics

Page 10: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

This is a typical case of Wind Mills tripping due to Voltage Sag

Voltage Sag caused by tripping of another feeder in the same Sub Station due to earth fault

Rise in load current experienced Suspect of induction Generator aiding the fault

Page 11: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Sample Dip

Page 12: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Voltage Dip in WM Feeder

-49.61%

Page 13: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Current rise in WM Feeder

+268%

Page 14: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Voltage Dip

-51.4%

Page 15: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Tripping of WM Due to Sag

Loss of WM Generation

-42.5%

Page 16: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

This a case study of Voltage Swell Voltage swell caused in a Wind Mill

connected feeder Voltage Swell seen when Wind Mill

connected feeder is isolated manually Voltage swell due to discharge of Capacitors

connected for PF correction

Page 17: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Voltage Rise in WM During Supply Failure

+11.37%

Page 18: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Voltage Rise in Wind Mill Feeder During Supply Failure

+15.37%

Page 19: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Bipolar Transient

Page 20: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

B-Phase voltage Drop put

Page 21: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Voltage SAG

Page 22: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Voltage Sag

Page 23: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Multiple Zero Crossing

Page 24: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Phase Shift Event

Page 25: By A.D.Thirumoorthy Tamil Nadu Electricity Board India
Page 26: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Sample Un-balance of Voltage

Page 27: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Transient

Page 28: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Transient due Tripping of Breaker due to inrush current

Page 29: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Flicker Data in Wind Mill

Page 30: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Sample Surge in Current

Page 31: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Swell in Current in Wind Mill

Page 32: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Active and Reactive Power in Wind Mill

Page 33: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Voltage Variation in Wind Mill

Page 34: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

Frequency Profile

Page 35: By A.D.Thirumoorthy Tamil Nadu Electricity Board India

WM Generation Vs 110 KV Bus Voltage

Page 36: By A.D.Thirumoorthy Tamil Nadu Electricity Board India
Page 37: By A.D.Thirumoorthy Tamil Nadu Electricity Board India
Page 38: By A.D.Thirumoorthy Tamil Nadu Electricity Board India