a (b) Electrical power is delivered to a Stainless Steel Plant as shown in Figure 3.2. The frequency of voltage source i
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a (b) Electrical power is delivered to a Stainless Steel Plant as shown in Figure 3.2. The frequency of voltage source is 50 Hz. The Stainless Steel Plant has the following loads: Highly resistive loads absorbing 13000 kW at a power factor of 0.93. Inductive loads absorbing 11000 KVAR at a power factor of 0.72 lagging. Capacitive loads absorbing 1500 kVA at a power factor of 0.57 leading. 22 20° KV (rms) Stainless Steel Plant Figure 3.2 (1) Find the total complex power of the Stainless Steel Plant. (ii) Find the value of the capacitor C in Figure 3.2 that will correct the power factor to 0.91 lagging as seen by the 22 kV voltage source. (13 Marks)
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a (b) Electrical power is delivered to a Stainless Steel Plant as shown in Figure 3.2. The frequency of voltage source is 50 Hz. The Stainless Steel Plant has the following loads: Highly resistive loads absorbing 13000 kW at a power factor of 0.93. Inductive loads absorbing 11000 KVAR at a power factor of 0.72 lagging. Capacitive loads absorbing 1500 kVA at a power factor of 0.57 leading. 22 20° KV (rms) Stainless Steel Plant Figure 3.2 (1) Find the total complex power of the Stainless Steel Plant. (ii) Find the value of the capacitor C in Figure 3.2 that will correct the power factor to 0.91 lagging as seen by the 22 kV voltage source. (13 Marks)