When a fan operates as a load, the torque varies based on the speed and the characteristics of the fan itself. As the speed increases, the load torque typically increases due to the increased aerodynamic resistance and power requirements to move air. Conversely, when the speed decreases, the torque required also decreases. This relationship is crucial for understanding fan performance and efficiency in various applications.
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For AC system speed of generator will be decreased and then frequency decrease, if there is no trip the motor load will be automaticaly reduced as Load Power = torque x speed and speed of motor vary acc to frequency. Finally the motor will be run at new lower speed that load = power generation. The other effect is voltage in the system will be decreased and result of lower load consumption
The load on a fan refers to the amount of work the fan must perform to move air against resistance, which can be influenced by factors such as the fan's design, speed, and the environment it operates in. It is typically measured in terms of airflow (CFM - cubic feet per minute) and the pressure differential (inches of water column) created by the fan. Higher resistance, such as from ductwork or filters, increases the load on the fan, requiring more energy to maintain airflow. Understanding the load is crucial for selecting the right fan and ensuring efficient operation.
Torque is a measure of how much a force acting on an object causes that object to rotate. Speed is how fast something is going. Another way to think of this is as how far you can go in a certain amount of time.
Electromagnetic torque and load torque are different.Electromagnetic torque is the torque that is produced inside the machine which makes the machine rotate,while load torque is the torque that is applied externally with brake drum and and spring balance.Electromagnetic torque can be varied by varying the speed of the machine,but load torque is fixed.
The slip vary with load is a AC electric motor which the electric current in the rotor needed to make torque that is induced by electromagnetic induction. It does not repair mechanical commutation parts the energy and transferred from stator to rotor.
The full load torque of an induction motor is the maximum torque it can produce at its rated speed when operating at full load conditions. This torque is necessary to drive the load at the desired speed under normal operating conditions. It is an important parameter to consider when selecting a motor for a specific application.
torque load, generation load, power correction load
Pushing the load closer to the wheel in a wheelbarrow reduces the lever arm (distance between the load and the axis of rotation), which decreases the torque required to lift the load. This makes it easier to lift the load because the force needed to counteract the torque is reduced.
torque.
Torque is used when taking off or pulling a load. The more torque you have the faster the car will take off.
Torque=.2*F*Bolt Maj. Dim. F=axial force
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Because even on no load the motor has frictional losses in the bearings and windage around the rotor.
As the load increases, the speed reduces to deliver the increased torque required.
The formula to calculate the maximum torque on a beam subjected to a specific load is T F d, where T is the torque, F is the applied force, and d is the distance from the point of force application to the point of rotation.