Q4: A power distribution station consisting of 100OKVA, 4500V/225V, and 50 cycles per second single-phase core type mutual inductance equipment is to have an approximate electromotive force per turn of 15V and operates witha maximum flux of1.4T. Based on the above scenario justify what will be the values of turns, currents, and cross-sectional area of the core? Analyze the range of load resistance of this equipment. If the load resistances are very high discuss the various methods on its heat reduction process.

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter3: Power Transformers
Section: Chapter Questions
Problem 3.25P: Consider a single-phase electric system shown in Figure 3.33. Transformers are rated as follows:...
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Q4: A power distribution station consisting of 100OKVA, 4500V/225V, and 50 cycles per second
single-phase core type mutual inductance equipment is to have an approximate electromotive
force per turn of 15V and operates witha maximum flux of1.4T. Based on the above scenario
justify what will be the values of turns, currents, and cross-sectional area of the core? Analyze
the range of load resistance of this equipment. If the load resistances are very high discuss
the various methods on its heat reduction process.
Transcribed Image Text:Q4: A power distribution station consisting of 100OKVA, 4500V/225V, and 50 cycles per second single-phase core type mutual inductance equipment is to have an approximate electromotive force per turn of 15V and operates witha maximum flux of1.4T. Based on the above scenario justify what will be the values of turns, currents, and cross-sectional area of the core? Analyze the range of load resistance of this equipment. If the load resistances are very high discuss the various methods on its heat reduction process.
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