The average fridge power consumption per year is around 350-600 kilowatt-hours.
That varies widely among different refrigerators. But you should ask your question slightly differently. Kilowatts would refer to how much power the fridge is using at a single instance. I you are concerned with power usage over a year, you need to multiply by time, ie kilowatt-hours (commonly seen as kWh). This is the unit the power company charges you by. Look for a sticker on your fridge, all modern ones will have one that tells you the yearly kWh consumption.
The power consumption of this TV is 5 amps. It uses around 822 kilowatt hours a year average use.
The average power requirement for the US can be calculated by dividing the total annual energy consumption by the number of seconds in a year. The total number of seconds in a year is approximately 31,557,600. Therefore, the average power requirement for the US would be 0.67 watts (21020 joules / 31,557,600 seconds).
To calculate the power needed to supply a city for 10 minutes, you would need to know the average power consumption of the city in megawatts. Once you have the average power consumption, you can multiply it by 10 minutes to determine the total energy required.
Watts = joules / secondYou need to divide the total annual energy consumption by the number of seconds in a year (which is about 31.5 million).
The number of homes that 2400 megawatts can energize depends on the average power consumption of a home. On average, a US home uses about 11,000 kWh per year. Assuming a continuous power supply of 2400 megawatts, you could potentially power around 1.8 million homes.
New energy star models are about 470 kWh per year.
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In a year
Learn the power consumption of devices, they hours of operation and cost of power. Use this information to work out e.g. total power usage / year and cost / year.
The number of homes that 3000 megawatts can power depends on the average electricity consumption per home. On average, a home consumes around 10,972 kilowatt-hours per year, which is approximately 1.25 kilowatts. Therefore, 3000 megawatts could power around 2.4 million homes.
The number of homes that one windfarm can power varies depending on the size and location of the windfarm, as well as the average electricity consumption per household. On average, a typical onshore wind turbine with a capacity of 2-3 megawatts can power around 500-900 homes per year.