Length using Volume of Conductor Material (2-Wire Mid-Point DC US) Solution

STEP 0: Pre-Calculation Summary
Formula Used
Length of Wire DC = sqrt((Volume Of Conductor*Line Losses)/(4*(Current underground DC^2)*(Resistivity)))
l = sqrt((V*Pline)/(4*(C1^2)*(ρ)))
This formula uses 1 Functions, 5 Variables
Functions Used
sqrt - A square root function is a function that takes a non-negative number as an input and returns the square root of the given input number., sqrt(Number)
Variables Used
Length of Wire DC - (Measured in Meter) - Length of Wire DC is the measurement or extent of something from end to end.
Volume Of Conductor - (Measured in Cubic Meter) - Volume Of Conductor the 3-dimensional space enclosed by a conductor material.
Line Losses - (Measured in Watt) - Line Losses is defined as the losses that are produced in the line.
Current underground DC - (Measured in Ampere) - Current underground DC is defined as the current flowing through the overhead ac supply wire.
Resistivity - (Measured in Ohm Meter) - Resistivity is the measure of how strongly a material opposes the flow of current through them.
STEP 1: Convert Input(s) to Base Unit
Volume Of Conductor: 35 Cubic Meter --> 35 Cubic Meter No Conversion Required
Line Losses: 0.6 Watt --> 0.6 Watt No Conversion Required
Current underground DC: 3 Ampere --> 3 Ampere No Conversion Required
Resistivity: 1.7E-05 Ohm Meter --> 1.7E-05 Ohm Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
l = sqrt((V*Pline)/(4*(C1^2)*(ρ))) --> sqrt((35*0.6)/(4*(3^2)*(1.7E-05)))
Evaluating ... ...
l = 185.239643408737
STEP 3: Convert Result to Output's Unit
185.239643408737 Meter --> No Conversion Required
FINAL ANSWER
185.239643408737 185.2396 Meter <-- Length of Wire DC
(Calculation completed in 00.004 seconds)

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Vishwakarma Government Engineering College (VGEC), Ahmedabad
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Wire Parameters Calculators

Line Losses using Area of X-Section (2-Wire Mid-Point Earthed DC US)
​ LaTeX ​ Go Line Losses = (2*Resistivity*Length of Wire DC*(Power Transmitted^2))/(Area of underground dc wire*(Maximum Voltage^2*cos(Theta)^2))
Length using Area of X-Section (2-Wire Mid-Point Earthed DC US)
​ LaTeX ​ Go Length of Wire DC = Area of underground dc wire*Line Losses*(Maximum Voltage^2)/(2*(Power Transmitted^2)*Resistivity)
Line Losses using Volume of Conductor Material (2-Wire Mid-Point DC US)
​ LaTeX ​ Go Line Losses = 4*Resistivity*(Power Transmitted^2*Length of Wire DC^2)/(Maximum Voltage^2*Volume Of Conductor)
Length using Volume of Conductor Material (2-Wire Mid-Point DC US)
​ LaTeX ​ Go Length of Wire DC = sqrt((Volume Of Conductor*Line Losses)/(4*(Current underground DC^2)*(Resistivity)))

Length using Volume of Conductor Material (2-Wire Mid-Point DC US) Formula

​LaTeX ​Go
Length of Wire DC = sqrt((Volume Of Conductor*Line Losses)/(4*(Current underground DC^2)*(Resistivity)))
l = sqrt((V*Pline)/(4*(C1^2)*(ρ)))

Does resistivity change with length?

Resistivity is an intrinsic property of any material. It stays the same, no matter how long or thick your conductor is. Temperature coefficient*original resistivity*change in temperature. So there is no change with length in resistivity but resistance changes in direct proportion with length of the conductor.

How to Calculate Length using Volume of Conductor Material (2-Wire Mid-Point DC US)?

Length using Volume of Conductor Material (2-Wire Mid-Point DC US) calculator uses Length of Wire DC = sqrt((Volume Of Conductor*Line Losses)/(4*(Current underground DC^2)*(Resistivity))) to calculate the Length of Wire DC, The Length using Volume of Conductor Material (2-wire Mid-point DC US) formula is defined as the total length of the wire that used in the 2-wire Mid-point earthed DC system. Length of Wire DC is denoted by l symbol.

How to calculate Length using Volume of Conductor Material (2-Wire Mid-Point DC US) using this online calculator? To use this online calculator for Length using Volume of Conductor Material (2-Wire Mid-Point DC US), enter Volume Of Conductor (V), Line Losses (Pline), Current underground DC (C1) & Resistivity (ρ) and hit the calculate button. Here is how the Length using Volume of Conductor Material (2-Wire Mid-Point DC US) calculation can be explained with given input values -> 185.2396 = sqrt((35*0.6)/(4*(3^2)*(1.7E-05))).

FAQ

What is Length using Volume of Conductor Material (2-Wire Mid-Point DC US)?
The Length using Volume of Conductor Material (2-wire Mid-point DC US) formula is defined as the total length of the wire that used in the 2-wire Mid-point earthed DC system and is represented as l = sqrt((V*Pline)/(4*(C1^2)*(ρ))) or Length of Wire DC = sqrt((Volume Of Conductor*Line Losses)/(4*(Current underground DC^2)*(Resistivity))). Volume Of Conductor the 3-dimensional space enclosed by a conductor material, Line Losses is defined as the losses that are produced in the line, Current underground DC is defined as the current flowing through the overhead ac supply wire & Resistivity is the measure of how strongly a material opposes the flow of current through them.
How to calculate Length using Volume of Conductor Material (2-Wire Mid-Point DC US)?
The Length using Volume of Conductor Material (2-wire Mid-point DC US) formula is defined as the total length of the wire that used in the 2-wire Mid-point earthed DC system is calculated using Length of Wire DC = sqrt((Volume Of Conductor*Line Losses)/(4*(Current underground DC^2)*(Resistivity))). To calculate Length using Volume of Conductor Material (2-Wire Mid-Point DC US), you need Volume Of Conductor (V), Line Losses (Pline), Current underground DC (C1) & Resistivity (ρ). With our tool, you need to enter the respective value for Volume Of Conductor, Line Losses, Current underground DC & Resistivity and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Length of Wire DC?
In this formula, Length of Wire DC uses Volume Of Conductor, Line Losses, Current underground DC & Resistivity. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Length of Wire DC = Area of underground dc wire*Line Losses*(Maximum Voltage^2)/(2*(Power Transmitted^2)*Resistivity)
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