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Constant Overhead DC is defined as the constant of line of a Overhead supply system. Check FAQs
K=(4)(P2)ρ(L2)Ploss(Vm)
K - Constant Overhead DC?P - Power Transmitted?ρ - Resistivity?L - Length of Wire DC?Ploss - Line Losses?Vm - Maximum Voltage Overhead DC?

Constant(DC 3-Wire) Example

With values
With units
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Here is how the Constant(DC 3-Wire) equation looks like with Values.

Here is how the Constant(DC 3-Wire) equation looks like with Units.

Here is how the Constant(DC 3-Wire) equation looks like.

208.1762Edit=(4)(920Edit2)1.7E-5Edit(12.7Edit2)0.74Edit(60.26Edit)
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Constant(DC 3-Wire) Solution

Follow our step by step solution on how to calculate Constant(DC 3-Wire)?

FIRST Step Consider the formula
K=(4)(P2)ρ(L2)Ploss(Vm)
Next Step Substitute values of Variables
K=(4)(920W2)1.7E-5Ω*m(12.7m2)0.74W(60.26V)
Next Step Prepare to Evaluate
K=(4)(9202)1.7E-5(12.72)0.74(60.26)
Next Step Evaluate
K=208.176240973798
LAST Step Rounding Answer
K=208.1762

Constant(DC 3-Wire) Formula Elements

Variables
Constant Overhead DC
Constant Overhead DC is defined as the constant of line of a Overhead supply system.
Symbol: K
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Power Transmitted
Power Transmitted is defined as the product of current and voltage phasor in a overhead dc line at the receiving end.
Symbol: P
Measurement: PowerUnit: W
Note: Value should be greater than 0.
Resistivity
Resistivity is the measure of how strongly a material opposes the flow of current through them.
Symbol: ρ
Measurement: Electric ResistivityUnit: Ω*m
Note: Value can be positive or negative.
Length of Wire DC
Length of Wire DC is the total length of the wire from one end to other end.
Symbol: L
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Line Losses
Line Losses is defined as the total losses occurring in an Overhead DC line when in use.
Symbol: Ploss
Measurement: PowerUnit: W
Note: Value can be positive or negative.
Maximum Voltage Overhead DC
Maximum Voltage Overhead DC is defined as the peak amplitude of the AC voltage supplied to the line or wire.
Symbol: Vm
Measurement: Electric PotentialUnit: V
Note: Value can be positive or negative.

Other Formulas to find Constant Overhead DC

​Go Constant using Volume of Conductor Material (DC 3-Wire)
K=V(165)

Other formulas in Wire Parameters category

​Go Length using Line Losses(DC 3-Wire)
L=PlossA2(I2)ρ
​Go Area of X-Section using Line Losses(DC 3-Wire)
A=((I2)ρ)LPloss
​Go Volume of Conductor Material (DC 3-Wire)
V=((2.5)2)(I2)ρL2Ploss
​Go Area of X-Section using Volume of Conductor Material (DC 3-Wire)
A=V(2.5)L

How to Evaluate Constant(DC 3-Wire)?

Constant(DC 3-Wire) evaluator uses Constant Overhead DC = ((4)*(Power Transmitted^2)*Resistivity*(Length of Wire DC^2))/(Line Losses*(Maximum Voltage Overhead DC)) to evaluate the Constant Overhead DC, The Constant(DC 3-wire) formula is defined as the total constant variable in the DC three-wire system. Constant Overhead DC is denoted by K symbol.

How to evaluate Constant(DC 3-Wire) using this online evaluator? To use this online evaluator for Constant(DC 3-Wire), enter Power Transmitted (P), Resistivity (ρ), Length of Wire DC (L), Line Losses (Ploss) & Maximum Voltage Overhead DC (Vm) and hit the calculate button.

FAQs on Constant(DC 3-Wire)

What is the formula to find Constant(DC 3-Wire)?
The formula of Constant(DC 3-Wire) is expressed as Constant Overhead DC = ((4)*(Power Transmitted^2)*Resistivity*(Length of Wire DC^2))/(Line Losses*(Maximum Voltage Overhead DC)). Here is an example- 208.1762 = ((4)*(920^2)*1.7E-05*(12.7^2))/(0.74*(60.26)).
How to calculate Constant(DC 3-Wire)?
With Power Transmitted (P), Resistivity (ρ), Length of Wire DC (L), Line Losses (Ploss) & Maximum Voltage Overhead DC (Vm) we can find Constant(DC 3-Wire) using the formula - Constant Overhead DC = ((4)*(Power Transmitted^2)*Resistivity*(Length of Wire DC^2))/(Line Losses*(Maximum Voltage Overhead DC)).
What are the other ways to Calculate Constant Overhead DC?
Here are the different ways to Calculate Constant Overhead DC-
  • Constant Overhead DC=Volume of Conductor*(16/5)OpenImg
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