Figure Q2(a): Synchronous Generator (i) Name the type of synchronous generator as shown in Figure Q2(a) and determine the most suitable application for this type of generator. (ii) Electromotive Force (EMF) generated per phase and power angle if power factor is lagging at 0.9. Make your own assumption for the value of synchronous impedance.

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(a)
Figure Q2(a) depicted a system of synchronous generator which suggest to be located
near the oil refining plant in Pantai Puteri, Melaka.
High Performance & Long Service Life
Original advanced technologies throughout
Capacity
Up to 100MVA
Speed
Voltage
Applicable type of protection Exp
3,000/3,600rpm
11/13.8/15kv
EC, NEMA, CSA, GOST, COST,
CCOE, API, ABS and others
IC81W TEWAC [option: IC616 TEAAC]
Standards compliance !
Cooling method
Applications
AC
?????
Figure Q2(a): Synchronous Generator
(i)
Name the type of synchronous generator as shown in Figure Q2(a) and
determine the most suitable application for this type of generator.
Electromotive Force (EMF) generated per phase and power angle if power factor
is lagging at 0.9. Make your own assumption for the value of synchronous
(ii)
impedance.
Transcribed Image Text:(a) Figure Q2(a) depicted a system of synchronous generator which suggest to be located near the oil refining plant in Pantai Puteri, Melaka. High Performance & Long Service Life Original advanced technologies throughout Capacity Up to 100MVA Speed Voltage Applicable type of protection Exp 3,000/3,600rpm 11/13.8/15kv EC, NEMA, CSA, GOST, COST, CCOE, API, ABS and others IC81W TEWAC [option: IC616 TEAAC] Standards compliance ! Cooling method Applications AC ????? Figure Q2(a): Synchronous Generator (i) Name the type of synchronous generator as shown in Figure Q2(a) and determine the most suitable application for this type of generator. Electromotive Force (EMF) generated per phase and power angle if power factor is lagging at 0.9. Make your own assumption for the value of synchronous (ii) impedance.
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