Thursday, 3 August 2017
Dr. Kesorn Pechrach Weaver: Arc Control in Circuit Breakers: Magnetic forces in the contact area
Dr. Kesorn Pechrach Weaver: Arc Control in Circuit Breakers: Magnetic forces in the contact area: Magnetic forces in the contact area The conductors in circuit breaker and the arc are assumed to be threadlike. The anode is set on the...
Magnetic forces in the contact area
Magnetic forces in the contact area
The conductors in circuit breaker and the arc are assumed to be threadlike. The anode is
set on the moving contact and the cathode is on the fixed contact. The magnetic flux
density (B) is calculated by using a function of current and contact gap.
The experimental results provide the data of the arc current and the contact gap. The
magnetic flux density (B) is obtained from the magnetic force modeling. The
magnetic forces on arc root are calculated by using the relationship of the arc current,
contact gap and magnetic flux density (B).
At the point at which the arc root moves from contact region with contact opening
velocity 1-10 m/s, the contact gap is between 1.57 to 6 mm. Thus, the arc motion for
a contact gap less than 1 cm can be explained in terms of magnetic field
Ref: Arc Control in Circuit Breakers: Low Contact Velocity
Slow Contact Opening Circuit Breakers
Piezoelectrics in Circuit Breakers: Design and Test
Wednesday, 26 July 2017
Dr. Kesorn Pechrach Weaver: Arc Control in Circuit Breakers: Energy in High and Low speed
Dr. Kesorn Pechrach Weaver: Arc Control in Circuit Breakers: Energy in High and Low speed: Energy in High and Low speed There are 20 chemical elements when the contact opening velocity 10 m/s and 19 chemical elements when the con...
Energy in High and Low speed
Energy in High and Low speed
There are 20 chemical elements when the contact opening velocity 10 m/s and 19chemical elements when the contact opening velocity 1 m/s. The electron energy for
each chemical elements decrease as the wavelength increases. The maximum energy
when contact opening velocity at 10 m/s, is about 0.79x10-37 J higher than that
contact opening velocity 1 m/s. Both have the same minimum energy at 2.42x10-37 J
of the chemical element N I, O I and O II at the wavelength 821-824 nm. The average
energy when the contact opening velocity 10 m/s is higher than the contact opening
velocity 1m/s about 0.31x10-37 J.
Reference:
Tuesday, 18 July 2017
Dr. Kesorn Pechrach Weaver: Arc Control in Circuit Breakers: Force in the Arc The total forces integrated alo...
Dr. Kesorn Pechrach Weaver: Arc Control in Circuit Breakers: Force in the Arc
The total forces integrated alo...: Force in the Arc The total forces integrated along the arc length and contact opening velocities are shown in Figure 7.4. The results sh...
The total forces integrated alo...: Force in the Arc The total forces integrated along the arc length and contact opening velocities are shown in Figure 7.4. The results sh...
Force in the Arc
The total forces integrated along the arc length and contact opening
velocities are shown in Figure 7.4. The results show no simple trend with contact
opening velocity. However, the data are compatible with an approximately constant
total force.
The results of the magnetic forces modeling here are lower than the modeling results
of Paul [11] who considered the magnetic driving force in the contact region from the
magnetic field from the conductors and steel plates in the side walls. The magnetic
flux density (B) was 31 mT/kA for the conductors in the air with a gap of 10 mm.
Thus, at an arc current 2000 A, the magnetic forces was about 1.24 N.
The arc chamber geometry is considered. The magnetic flux density calculation here
is considered at the point that the arc root moves from the contact region with contact
opening velocities.
Reference:Arc Control in Circuit Breakers: Low Contact Velocity
Wednesday, 21 June 2017
Dr. Kesorn Pechrach Weaver: Arc Control in Circuit Breakers: Anode and Cathode root in Circuit Breakers
Dr. Kesorn Pechrach Weaver: Arc Control in Circuit Breakers: Anode and Cathode root in Circuit Breakers: Anode and Cathode root in Circuit Breakers The anode and cathode root displacement are shown in Figure 4.21. The results show that when...
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