● 1.15 Sen 1.15 The magnetic circuit for a saturable reactor is shown in Fig. P1.15. The B-H curve for the core material can be approximated as two straight lines as in Fig. Pl.15. (a) If I₁ = 2.0 A, calculate the value of I₂ required to produce a flux density of 0.6 T in the vertical limbs. (b) If I₁=0.5 A and I₂ = 1.96 A, calculate the total flux in the core. Neglect magnetic leakage. (Hint: Trial-and-error method.) N₁ 주 1.5 1 FIGURE P1.15 6- 1.5- All dimensions in centimeters. N₁ 200, N₂ 100 1₂ N₂ Depth 1.5 cm 1.0 0.8 K 400 At/m B 0 1000 H

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1.15
Sen 1.15
The magnetic circuit for a saturable reactor is shown in Fig. P1.15. The B-H curve for the core
material can be approximated as two straight lines as in Fig. Pl.15.
(a) If I₁ = 2.0 A, calculate the value of 12 required to produce a flux density of 0.6 T in the vertical
limbs.
(b)
If I₁ = 0.5 A and I₂ = 1.96 A, calculate the total flux in the core.
Neglect magnetic leakage.
(Hint: Trial-and-error method.)
N₁
1.5
6
FIGURE P1.15
1.5-
All dimensions in centimeters.
N₁ 200, N₂ - 100
N₂
Depth 1.5 cm
1.0
0.8
0
B
400
At/m
1000
H
Transcribed Image Text:1.15 Sen 1.15 The magnetic circuit for a saturable reactor is shown in Fig. P1.15. The B-H curve for the core material can be approximated as two straight lines as in Fig. Pl.15. (a) If I₁ = 2.0 A, calculate the value of 12 required to produce a flux density of 0.6 T in the vertical limbs. (b) If I₁ = 0.5 A and I₂ = 1.96 A, calculate the total flux in the core. Neglect magnetic leakage. (Hint: Trial-and-error method.) N₁ 1.5 6 FIGURE P1.15 1.5- All dimensions in centimeters. N₁ 200, N₂ - 100 N₂ Depth 1.5 cm 1.0 0.8 0 B 400 At/m 1000 H
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