Determining Heat Pump Efficiency
Heat Pumps are utilized for both heating and cooling of the house. In this regard they are definitely better investments than air conditioners that can only provide you with cooling functions. For those of you who are conscious about energy conservation, these pumps are perfect, as they consume less power than other heating and cooling devices that run on electrical energy.
Various types of Heat Pumps:
1. Geothermal heat pump:
These pumps utilize energy from the ground, in the type of a series of closed looped pipes of water, or other techniques like an underground sink or reservoir. The most effective pumps are the Geothermal ones, and they are also very eco-friendly. This form of power exchange can be utilized to heat or cool your homes.
two. Air to Air heat pumps:
These pumps depend on the outdoors temperature in order to carry out proper heat exchange. These systems are much less effective than the Geothermal ones as the outside temperature can differ a great deal. Air to Air pumps also require back up sources of heat as well as defrost cycles. Gas furnaces and electric heating are the backup sources when the temperatures fall beneath 38 degrees Fahrenheit.
Heat pump efficiency can be determined by the following ways:
1. For the cooling function: The efficiency for this function can be calculated by the Seasonal Energy Efficiency Rating (SEER). In warmer climates, you want to make sure that the heat pumps SEER is higher as you would be utilizing its cooling function more than the heating 1, to cool you homes.
2. For the heating functions: The efficiency can be calculated by the Heating Seasonal Overall performance Factor (HSPF). If you live in a cooler climate region, you would want to make sure that your heat pumps HSPF is high in order to maintain your house warm.
3. Coefficient of overall performance (COP): The coefficient of performance (COP) is the ratio of useful heat movement to the function output, and is a way to determine the general efficiency. A regular heat pump has a coefficient of performance which is equal to three or 4. It means that for each units of electricity consumed, three units of heat energy are created.
The Air to Air systems usually have coefficients of performance reduce than the geothermal systems. During extremely cold days, the air supply pumps require more power to make the heat move inside the house, consequently their COP can get as low as 1. The geothermal systems on the other hand are more effective as their heat source comes from the ground, and on an typical, their COP remains in the variety of four to five throughout the year.
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Various types of Heat Pumps:
1. Geothermal heat pump:
These pumps utilize energy from the ground, in the type of a series of closed looped pipes of water, or other techniques like an underground sink or reservoir. The most effective pumps are the Geothermal ones, and they are also very eco-friendly. This form of power exchange can be utilized to heat or cool your homes.
two. Air to Air heat pumps:
These pumps depend on the outdoors temperature in order to carry out proper heat exchange. These systems are much less effective than the Geothermal ones as the outside temperature can differ a great deal. Air to Air pumps also require back up sources of heat as well as defrost cycles. Gas furnaces and electric heating are the backup sources when the temperatures fall beneath 38 degrees Fahrenheit.
Heat pump efficiency can be determined by the following ways:
1. For the cooling function: The efficiency for this function can be calculated by the Seasonal Energy Efficiency Rating (SEER). In warmer climates, you want to make sure that the heat pumps SEER is higher as you would be utilizing its cooling function more than the heating 1, to cool you homes.
2. For the heating functions: The efficiency can be calculated by the Heating Seasonal Overall performance Factor (HSPF). If you live in a cooler climate region, you would want to make sure that your heat pumps HSPF is high in order to maintain your house warm.
3. Coefficient of overall performance (COP): The coefficient of performance (COP) is the ratio of useful heat movement to the function output, and is a way to determine the general efficiency. A regular heat pump has a coefficient of performance which is equal to three or 4. It means that for each units of electricity consumed, three units of heat energy are created.
The Air to Air systems usually have coefficients of performance reduce than the geothermal systems. During extremely cold days, the air supply pumps require more power to make the heat move inside the house, consequently their COP can get as low as 1. The geothermal systems on the other hand are more effective as their heat source comes from the ground, and on an typical, their COP remains in the variety of four to five throughout the year.
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