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A generating station has a maximum demand of 25MW a load factor of 60% a plant capacity factor of 50% and a plant use factor of 72% .Find (i) the reserve capacity of the plant (ii) the daily energy produced and (iii) maximum energy that could be produced daily if the plant while running as per schedule were fully loaded.?
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A generating station has a maximum demand of 25MW a load factor of 60%...
Solution:

Given data:

Maximum demand = 25 MW

Load factor = 60%

Plant capacity factor = 50%

Plant use factor = 72%

(i) Reserve capacity of the plant:

Reserve capacity = Maximum demand - Connected load

Connected load = Maximum demand × Load factor

Connected load = 25 MW × 60/100

Connected load = 15 MW

Reserve capacity = 25 MW - 15 MW

Reserve capacity = 10 MW

Therefore, the reserve capacity of the plant is 10 MW.

(ii) Daily energy produced:

Daily energy produced = Plant capacity × Plant use factor

Plant capacity = Maximum demand/Plant capacity factor

Plant capacity = 25 MW/50%

Plant capacity = 50 MW

Daily energy produced = 50 MW × 72/100

Daily energy produced = 36 MWh

Therefore, the daily energy produced by the plant is 36 MWh.

(iii) Maximum energy that could be produced daily:

Maximum energy that could be produced daily = Plant capacity × 24 hours

Plant capacity = Maximum demand/Plant capacity factor

Plant capacity = 25 MW/50%

Plant capacity = 50 MW

Maximum energy that could be produced daily = 50 MW × 24 hours

Maximum energy that could be produced daily = 1200 MWh

Therefore, the maximum energy that could be produced daily if the plant while running as per schedule were fully loaded is 1200 MWh.

Explanation:

A generating station's reserve capacity refers to the additional capacity that is available beyond the connected load. In this case, the reserve capacity of the plant is calculated by subtracting the connected load from the maximum demand.

Daily energy produced refers to the amount of energy that is produced by the plant daily. It is calculated by multiplying the plant capacity by the plant use factor.

The maximum energy that could be produced daily refers to the maximum amount of energy that the plant could produce if it were running at full capacity for 24 hours. It is calculated by multiplying the plant capacity by 24 hours.
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A generating station has a maximum demand of 25MW a load factor of 60% a plant capacity factor of 50% and a plant use factor of 72% .Find (i) the reserve capacity of the plant (ii) the daily energy produced and (iii) maximum energy that could be produced daily if the plant while running as per schedule were fully loaded.?
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A generating station has a maximum demand of 25MW a load factor of 60% a plant capacity factor of 50% and a plant use factor of 72% .Find (i) the reserve capacity of the plant (ii) the daily energy produced and (iii) maximum energy that could be produced daily if the plant while running as per schedule were fully loaded.? for Electrical Engineering (EE) 2024 is part of Electrical Engineering (EE) preparation. The Question and answers have been prepared according to the Electrical Engineering (EE) exam syllabus. Information about A generating station has a maximum demand of 25MW a load factor of 60% a plant capacity factor of 50% and a plant use factor of 72% .Find (i) the reserve capacity of the plant (ii) the daily energy produced and (iii) maximum energy that could be produced daily if the plant while running as per schedule were fully loaded.? covers all topics & solutions for Electrical Engineering (EE) 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for A generating station has a maximum demand of 25MW a load factor of 60% a plant capacity factor of 50% and a plant use factor of 72% .Find (i) the reserve capacity of the plant (ii) the daily energy produced and (iii) maximum energy that could be produced daily if the plant while running as per schedule were fully loaded.?.
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