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SWITCH GEAR AND PROTECTION(IV-1) TOPIC-CIRCUIT BREAKER

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Presentation on theme: "SWITCH GEAR AND PROTECTION(IV-1) TOPIC-CIRCUIT BREAKER"— Presentation transcript:

1 SWITCH GEAR AND PROTECTION(IV-1) TOPIC-CIRCUIT BREAKER
FAHMIDA IQBAL ASSISTANT PROFESSOR EEE

2 VACCUM CIRCUIT BREAKER
INTRODUCTION WORKING PRINCIPLE OF CIRCUIT BREAKER ARC PHENOMENON TYPES OF CIRCUIT BREAKERS OIL CIRCUIT BREAKER VACCUM CIRCUIT BREAKER SF6 CIRCUIT BREAKER

3 WHAT IS A CIRCUIT BREAKER?
A circuit breaker is an equipment that breaks a circuit either manually or automatically under all conditions at no load, full load or short circuit.

4 OPERATING PRINCIPLE Two contacts called electrode remains closed under normal operating conditions. When fault occurs on any part of the system, the trip coil of the circuit breaker get energized and contacts are separated.

5 ARC PHENOMENON An arc is struck when contacts are separated. The current is thus able to continue. Thus the main duty of a circuit breaker is to distinguish the arc within the shortest possible time. The arc provides the low resistance path to the current and the current in the circuit remains uninterrupted.

6 The arc resistance depends upon the following factors.
Degree of ionization Length of the arc Cross Section of the arc

7 METHODS OF ARC EXTINCTION
High Resistance Method Low Resistance Method

8 TYPES OF CIRCUIT BREAKERS

9 BREAKER USED IN 132KV STATION
Oil Circuit Breaker Vacuum Circuit breaker SF6 Circuit Breaker

10 LOW OIL CIRCUIT BREAKER
This is of the single breaker type in which a moving contact tube moves in a vertical line to make or break contact with the upper fixed contacts mounted within the arc control devices. A lower ring of fixed contacts is in permanent contact with the moving arm to provide the other terminal of the phase unit. Within the moving contact, the tube is a fixed piston. When the moving contact moves downwards, it forces the insulating oil to enter into the arc control devices Thus, the arc gets extinguished.

11 DISADVANTAGES OF OIL CIRCUIT BREAKER
It is inflammable and there is a risk of fire. It may form an explosive mixture with air. It requires maintenance. Absorbs moisture, so dielectric strength reduces. Oil leakage problem. Oil has to be replaced after some operations because of the carbonization of oil.

12 VACUUM CIRCUIT BREAKER
Vacuum is used as an arc quenching medium. Have greatest insulating strength. 10-7 to 10-5 pressure is to be maintained. Used in 11KV panel in control room of grid station.

13 VACUUM CIRCUIT BREAKER
When the fault occurs in the system, the contacts of the breaker are moved apart and hence the arc is developed between them. When the current carrying contacts are pulled apart, the temperature of their connecting parts is very high due to which ionization occurs.

14 ADVANTAGES Compact, reliable and have longer life. No fire hazards.
No generation of gas during and after operation. Can interrupt any fault current. No noise is produced while operating. Require less power for control operation.

15 SF6 CIRCUIT BREAKER Sulphur Hexafluoride (SF6) gas is used as an arc quenching medium. SF6 is an electro-negative gas. It has strong tendency to absorb electrons. When contact are opened in a high pressure flow of SF6 gas, arc produced. Free electron in the arc are captured by the gas. Which build up enough insulation strength to extinguish arc. it is much effective for high power and high voltages services,

16 SF6 CIRCUIT BREAKER

17 ADVANTAGES Simple construction, less cost.
SF6 gas is non flammable, non toxic & chemical inert gas. Same gas is recirculated in the circuit. Maintenance free C.B. Ability to interrupt low and high fault current. Excellent Arc extinction.

18 ADVANTAGES OF SF6 OVER OIL CIRCUIT BREAKERS
Short arcing time Can interrupt much larger currents Gives noiseless operation due to its closed gas circuit No moisture problem No risk of fire No carbon deposits. So no tracking and insulation problems Low maintenance cost

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