Stray Losses of DC Shunt Generator given Converted Power Formula

Fx Copy
LaTeX Copy
Stray Loss refer to the losses of power that occur in the generator due to factors other than the intended electrical output. Check FAQs
Pstray=Pin-Pm-Pcore-Pconv
Pstray - Stray Loss?Pin - Input Power?Pm - Mechanical Losses?Pcore - Core Loss?Pconv - Converted Power?

Stray Losses of DC Shunt Generator given Converted Power Example

With values
With units
Only example

Here is how the Stray Losses of DC Shunt Generator given Converted Power equation looks like with Values.

Here is how the Stray Losses of DC Shunt Generator given Converted Power equation looks like with Units.

Here is how the Stray Losses of DC Shunt Generator given Converted Power equation looks like.

120.5Edit=500Edit-12Edit-112.5Edit-255Edit
You are here -
HomeIcon Home » Category Engineering » Category Electrical » Category Machine » fx Stray Losses of DC Shunt Generator given Converted Power

Stray Losses of DC Shunt Generator given Converted Power Solution

Follow our step by step solution on how to calculate Stray Losses of DC Shunt Generator given Converted Power?

FIRST Step Consider the formula
Pstray=Pin-Pm-Pcore-Pconv
Next Step Substitute values of Variables
Pstray=500W-12W-112.5W-255W
Next Step Prepare to Evaluate
Pstray=500-12-112.5-255
LAST Step Evaluate
Pstray=120.5W

Stray Losses of DC Shunt Generator given Converted Power Formula Elements

Variables
Stray Loss
Stray Loss refer to the losses of power that occur in the generator due to factors other than the intended electrical output.
Symbol: Pstray
Measurement: PowerUnit: W
Note: Value should be greater than 0.
Input Power
Input Power refers to the power input required to rotate the armature of the generator, which in turn generates electrical power. The mechanical power is provided by an external source.
Symbol: Pin
Measurement: PowerUnit: W
Note: Value should be greater than 0.
Mechanical Losses
Mechanical losses occur in the moving parts of the DC machine due to friction and windage. These losses are also called rotational losses. The mechanical losses depend upon the speed of the machine.
Symbol: Pm
Measurement: PowerUnit: W
Note: Value can be positive or negative.
Core Loss
Core loss, also known as iron loss, is a type of stray loss that occurs in the core of a DC generator.
Symbol: Pcore
Measurement: PowerUnit: W
Note: Value should be greater than 0.
Converted Power
Converted Power refers to the electrical power output that is generated by the conversion of mechanical energy into electrical energy.
Symbol: Pconv
Measurement: PowerUnit: W
Note: Value can be positive or negative.

Other formulas in Losses category

​Go Armature Copper Loss for DC Shunt Generator
Pcu=Ia2Ra
​Go Shunt Field Copper Loss for DC Shunt Generator
Pcu=Ish2Rsh
​Go Core Losses of DC Shunt Generator given Converted Power
Pcore=Pin-Pm-Pconv-Pstray

How to Evaluate Stray Losses of DC Shunt Generator given Converted Power?

Stray Losses of DC Shunt Generator given Converted Power evaluator uses Stray Loss = Input Power-Mechanical Losses-Core Loss-Converted Power to evaluate the Stray Loss, The Stray Losses of DC shunt Generator given Converted Power formula refer to the losses of power that occur in the generator due to factors other than the intended electrical output. These losses can include mechanical losses, such as friction and windage, as well as losses due to magnetic leakage and core losses. Stray Loss is denoted by Pstray symbol.

How to evaluate Stray Losses of DC Shunt Generator given Converted Power using this online evaluator? To use this online evaluator for Stray Losses of DC Shunt Generator given Converted Power, enter Input Power (Pin), Mechanical Losses (Pm), Core Loss (Pcore) & Converted Power (Pconv) and hit the calculate button.

FAQs on Stray Losses of DC Shunt Generator given Converted Power

What is the formula to find Stray Losses of DC Shunt Generator given Converted Power?
The formula of Stray Losses of DC Shunt Generator given Converted Power is expressed as Stray Loss = Input Power-Mechanical Losses-Core Loss-Converted Power. Here is an example- 120.5 = 500-12-112.5-255.
How to calculate Stray Losses of DC Shunt Generator given Converted Power?
With Input Power (Pin), Mechanical Losses (Pm), Core Loss (Pcore) & Converted Power (Pconv) we can find Stray Losses of DC Shunt Generator given Converted Power using the formula - Stray Loss = Input Power-Mechanical Losses-Core Loss-Converted Power.
Can the Stray Losses of DC Shunt Generator given Converted Power be negative?
No, the Stray Losses of DC Shunt Generator given Converted Power, measured in Power cannot be negative.
Which unit is used to measure Stray Losses of DC Shunt Generator given Converted Power?
Stray Losses of DC Shunt Generator given Converted Power is usually measured using the Watt[W] for Power. Kilowatt[W], Milliwatt[W], Microwatt[W] are the few other units in which Stray Losses of DC Shunt Generator given Converted Power can be measured.
Copied!