A 13.8-kV, 50-MVA, 0.9-power-factor-lagging, 60-Hz, four-pole Y-connected synchronous generator has a synchronous reactance of 2.5 Q and an armature resistance of 0.2 2. At 60 Hz, its friction and...


A 13.8-kV, 50-MVA, 0.9-power-factor-lagging, 60-Hz, four-pole Y-connected synchronous generator has<br>a synchronous reactance of 2.5 Q and an armature resistance of 0.2 2. At 60 Hz, its friction and windage<br>losses are 1 MW, and its core losses are 1.5 MW. The field circuit has a dc voltage of 120 V, and the<br>maximum Ir is 10 A. The current of the field circuit is adjustable over the range from 0 to 10 A. The<br>OCC of this generator is shown in Figure P4-1.<br>4.2<br>Open-circuit characteristic<br>20<br>18<br>(a) How much field current is required to make the terminal voltage V, (or line voltage V,) equal to<br>13.8 kV when the generator is running at no load?<br>16<br>(b) What is the internal generated voltage E, of this machine at rated conditions?<br>14<br>12<br>(c) What is the phase voltage V of this generator at rated conditions?<br>10<br>(d) How much field current is required to make the terminal voltage V, equal to 13.8 kV when the<br>generator is running at rated conditions?<br>(e) Suppose that this generator is running at rated conditions, and then the load is<br>changing the field current. What would the terminal voltage of the generator be?<br>ved without<br>O How much steady-state power and torque must the generator's prime mover be capable of<br>supplying to handle the rated conditions?<br>6.<br>10<br>Field cument (A)<br>

Extracted text: A 13.8-kV, 50-MVA, 0.9-power-factor-lagging, 60-Hz, four-pole Y-connected synchronous generator has a synchronous reactance of 2.5 Q and an armature resistance of 0.2 2. At 60 Hz, its friction and windage losses are 1 MW, and its core losses are 1.5 MW. The field circuit has a dc voltage of 120 V, and the maximum Ir is 10 A. The current of the field circuit is adjustable over the range from 0 to 10 A. The OCC of this generator is shown in Figure P4-1. 4.2 Open-circuit characteristic 20 18 (a) How much field current is required to make the terminal voltage V, (or line voltage V,) equal to 13.8 kV when the generator is running at no load? 16 (b) What is the internal generated voltage E, of this machine at rated conditions? 14 12 (c) What is the phase voltage V of this generator at rated conditions? 10 (d) How much field current is required to make the terminal voltage V, equal to 13.8 kV when the generator is running at rated conditions? (e) Suppose that this generator is running at rated conditions, and then the load is changing the field current. What would the terminal voltage of the generator be? ved without O How much steady-state power and torque must the generator's prime mover be capable of supplying to handle the rated conditions? 6. 10 Field cument (A)

Jun 10, 2022
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