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Electrical Power Systems

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= 0.008993 m/km.<br />

Capacitance of Transmission Lines 73<br />

Example 3.11: ind out the capacitance per km to neutral of the three phase line as shown in<br />

ig. 3.19. The lines are regularly transposed. The radius of each subconductor is r = 0.5 cm.<br />

Solution.<br />

Applying eqn. (3.34),<br />

\ C an =<br />

<br />

HG<br />

Can = 00242 .<br />

log D<br />

eq<br />

D s<br />

ig. 3.19<br />

I<br />

KJ m/km<br />

1<br />

3 b g b g<br />

{ }<br />

Ds = r´ 2r ´ 2r 3 = 0 . 0 5 ´ 4 = 0.00793 m<br />

b g = 6.3 m<br />

1<br />

Deq = 5´ 5 ´ 10 3<br />

<br />

HG<br />

00242 .<br />

63 .<br />

log<br />

0. 00793<br />

I KJ m/km<br />

\ C an = 0.00834 m/km Ans.<br />

Example 3.12: ind out the capacitance per km to neutral of the three phase line as shown in<br />

ig. 3.20. The lines are regularly transposed. The radius of each conductor is r = 0.5 cm<br />

Solution.<br />

Applying eqn. (3.34)<br />

Can = 00242 .<br />

ig. 3.20<br />

log D eqI<br />

HG Ds<br />

KJ m/km<br />

1<br />

b ´ ´ g3m = 6.3 m<br />

D eq = 5 5 10<br />

1<br />

3

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