cent regulation. 18. Assuming that the curves of Fig. 166 are for a 400-kva 2,200-volt three-phase alter- nator, calcula

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cent regulation. 18. Assuming that the curves of Fig. 166 are for a 400-kva 2,200-volt three-phase alter- nator, calcula

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Cent Regulation 18 Assuming That The Curves Of Fig 166 Are For A 400 Kva 2 200 Volt Three Phase Alter Nator Calcula 1
Cent Regulation 18 Assuming That The Curves Of Fig 166 Are For A 400 Kva 2 200 Volt Three Phase Alter Nator Calcula 1 (28.28 KiB) Viewed 24 times
no.18
Cent Regulation 18 Assuming That The Curves Of Fig 166 Are For A 400 Kva 2 200 Volt Three Phase Alter Nator Calcula 2
Cent Regulation 18 Assuming That The Curves Of Fig 166 Are For A 400 Kva 2 200 Volt Three Phase Alter Nator Calcula 2 (168.87 KiB) Viewed 24 times
cent regulation. 18. Assuming that the curves of Fig. 166 are for a 400-kva 2,200-volt three-phase alter- nator, calculate the synchronous impedance Za and the synchronous reactance Xs. The d-c resistance between terminals is 0.9 ohm. regulation for Proh. 18 when the alternator delivers its
full-load line current. 14. If the alternator of Prob. 13 delivers a load of 3,600 kw at a power factor of 0.82, calculate the line current. 15. The voltage of an alternator rises from 460 volts at full load to 535 volts at no load. Calculate the per cent regulation. 16. A three-phase Y-connected alternator delivers a unity power-factor load at 230 volts. If the synchronous-reactance voltage drop is 60 volts per phase, calculate the per cent regulation, neglecting the resistance voltage drop. per 17. If the resistance voltage drop per phase in Prob. 16 is 5 volts, calculate the cent regulation. 18. Assuming that the curves of Fig. 166 are for a 400-kva 2,200-volt three-phase alter- nator, calculate the synchronous impedance Za and the synchronous reactance Xs. The resistance between terminals is 0.9 ohm. 19. Calculate the per cent regulation for Prob. 18 when the alternator delivers its full-load kilovolt-amperes at a power factor of 0.6 lagging. 30. Repeat the solution of Prob. 19 for a power factor of 0.8 leading. 21. A three-phase 1,000-kva 2,300-volt alternator is short-circuited and is operated at rated speed to produce rated current. With the short circuit removed and the same excitation, the voltage between stator terminals is 1,300. The effective (corrected) resistance between stator terminals is 2 ohms. Determine the per cent regulation of the alternator at a power factor of 0.8 lagging. 22. Repeat Prob. 21 for a power factor of 0.8 leading. 23. A 1,000-kva 4,600-volt three-phase alternator is short-circuited, and, operating
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