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Absorbed power is the expected power drawn by the load. Most loads does not operate at its rated capacity, but at lower point. The motor is typically sized so that the rated capacity of the motor exceeds the expected absorbed load by some conservative design margin.
Absorbing power of a body is defined at constant temperature and wavelength. It is simply the ratio of the amount of heat energy absorbed by the body and the amount of heat energy incident on the body.
The following formula is used to calculate the Motor Absorbed Power. P a = ( n / 100 ) ? S Q R T ( 3 ) ? V ? I ? p .
The absorbed power of a motor ( electric input power) is higher than the load brake horsepower. The excess of power requirements are the motor losses developed due to the currents circulating in the rotor and stator windings, The friction and windage, the magnetic losses in the laminations and structural frame.
The total absorbed power can be calculated in two ways: Integrate the loss function over the entire simulation volume. Use the transmission function and a set of 2D power monitors to measure the amount of power flowing into and out of the Si layer. The difference between these values will be the material absorption.