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Electrical Power Systems

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392 <strong>Electrical</strong> <strong>Power</strong> <strong>Systems</strong><br />

Solution:<br />

(a) Using eqn. (15.73)<br />

wi = wcpti (dc + ti ) × 10 –4 kg/m<br />

wc = 912 kg/m 3<br />

ti = 1.25 cm, dc = 2.80 cm<br />

\ wi = 912 × p × 1.25 (2.80 +1.25) × 10 –4 kg/m<br />

\ wi = 1.45 kg/m<br />

(b) Using eqn. (15.74)<br />

wT = w + wi w = 1520 kg/km, wi = 1.45 kg/m<br />

\ wT = (1.520 + 1.45) = 2.97 kg/m<br />

(c) rom eqn. (15.82)<br />

b g kg/m<br />

= d t c + 2 i<br />

p<br />

100<br />

dc = 2.80 cm, ti = 1.25 cm,<br />

p = 20 kg/m2 b280 . + 125 . g \ = × 20 kg/m<br />

100<br />

\ = 0.81 kg/m<br />

(d) Using eqn.(15.83),<br />

(e) T =<br />

2<br />

b g<br />

we = + w+ wi<br />

\we = 2 2<br />

+ wT<br />

= 0.81 kg/m, w T = 2.97 kg/m<br />

2 2<br />

\we = 081 . 297 .<br />

Ultimate strength = 12900 kg<br />

actor of safety = 2.0<br />

Using eqn. (15.84),<br />

2<br />

b g b g<br />

+ =3.078 kg/m<br />

Ultimate strength<br />

actor of safety<br />

\ T = 12900<br />

2<br />

e 2<br />

d = wL<br />

8T<br />

\ d =<br />

3. 078 ´ 150<br />

8 ´ 6450<br />

= 6450 kg<br />

2 b g m = 1.342 m.<br />

ig. 15.12

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