Cost given Most Economical Pipe Diameter of Distribution System Formula

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Cost for Distribution System indicates the price associated with the making of the product. Check FAQs
Cds=0.215(f(Qec3)PPAI(dpipe7)hAvghead)
Cds - Cost for Distribution System?f - Darcy Friction Factor?Qec - Discharge for Economical Pipe?P - Hydroelectric Power?PA - Allowable Unit Stress?I - Initial Investment?dpipe - Pipe Diameter for Weir?hAvghead - Average Head?

Cost given Most Economical Pipe Diameter of Distribution System Example

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Here is how the Cost given Most Economical Pipe Diameter of Distribution System equation looks like with Values.

Here is how the Cost given Most Economical Pipe Diameter of Distribution System equation looks like with Units.

Here is how the Cost given Most Economical Pipe Diameter of Distribution System equation looks like.

1223.2042Edit=0.215(0.5Edit(0.16Edit3)170Edit50Edit1890Edit(1.01Edit7)1.51Edit)
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Cost given Most Economical Pipe Diameter of Distribution System Solution

Follow our step by step solution on how to calculate Cost given Most Economical Pipe Diameter of Distribution System?

FIRST Step Consider the formula
Cds=0.215(f(Qec3)PPAI(dpipe7)hAvghead)
Next Step Substitute values of Variables
Cds=0.215(0.5(0.16m³/s3)170W50N/mm²1890(1.01m7)1.51m)
Next Step Convert Units
Cds=0.215(0.5(0.16m³/s3)170W5E+7Pa1890(1.01m7)1.51m)
Next Step Prepare to Evaluate
Cds=0.215(0.5(0.163)1705E+71890(1.017)1.51)
Next Step Evaluate
Cds=1223.20421798714
LAST Step Rounding Answer
Cds=1223.2042

Cost given Most Economical Pipe Diameter of Distribution System Formula Elements

Variables
Cost for Distribution System
Cost for Distribution System indicates the price associated with the making of the product.
Symbol: Cds
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Darcy Friction Factor
The Darcy Friction Factor is a dimensionless parameter used to describe the resistance to fluid flow in pipes or channels.
Symbol: f
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Discharge for Economical Pipe
Discharge for Economical Pipe is the discharge calculated from the most Economical Pipe.
Symbol: Qec
Measurement: Volumetric Flow RateUnit: m³/s
Note: Value can be positive or negative.
Hydroelectric Power
Hydroelectric Power is electricity generated by the flow of water through turbines, harnessing the energy of falling or flowing water.
Symbol: P
Measurement: PowerUnit: W
Note: Value should be greater than 0.
Allowable Unit Stress
Allowable Unit Stress is the maximum load or stress allowed per unit area of the column.
Symbol: PA
Measurement: PressureUnit: N/mm²
Note: Value can be positive or negative.
Initial Investment
The initial investment is the amount required to start a business or a project.
Symbol: I
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Pipe Diameter for Weir
Pipe Diameter for Weiris the diameter of the pipe in which the liquid is flowing.
Symbol: dpipe
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Average Head
Average Head is defined as level of water flowing in pipe at different points.
Symbol: hAvghead
Measurement: LengthUnit: m
Note: Value can be positive or negative.

Other formulas in Most Economical Pipe category

​Go Most Economical Pipe Diameter for Distribution System of Water
dpipe=0.215(f(Qec3)PPACdsIhAvghead)17
​Go Darcy Weisbach Friction Factor for Most Economical Pipe Diameter for Distribution System
f=(dpipe7)(CdsIhAvghead)0.215(((Qec3)PPA))

How to Evaluate Cost given Most Economical Pipe Diameter of Distribution System?

Cost given Most Economical Pipe Diameter of Distribution System evaluator uses Cost for Distribution System = 0.215*((Darcy Friction Factor*(Discharge for Economical Pipe^3)*Hydroelectric Power*Allowable Unit Stress)/(Initial Investment*(Pipe Diameter for Weir^7)*Average Head)) to evaluate the Cost for Distribution System, The Cost given Most economical pipe diameter of distribution system is defined as cost of maintenance and laying. Cost for Distribution System is denoted by Cds symbol.

How to evaluate Cost given Most Economical Pipe Diameter of Distribution System using this online evaluator? To use this online evaluator for Cost given Most Economical Pipe Diameter of Distribution System, enter Darcy Friction Factor (f), Discharge for Economical Pipe (Qec), Hydroelectric Power (P), Allowable Unit Stress (PA), Initial Investment (I), Pipe Diameter for Weir (dpipe) & Average Head (hAvghead) and hit the calculate button.

FAQs on Cost given Most Economical Pipe Diameter of Distribution System

What is the formula to find Cost given Most Economical Pipe Diameter of Distribution System?
The formula of Cost given Most Economical Pipe Diameter of Distribution System is expressed as Cost for Distribution System = 0.215*((Darcy Friction Factor*(Discharge for Economical Pipe^3)*Hydroelectric Power*Allowable Unit Stress)/(Initial Investment*(Pipe Diameter for Weir^7)*Average Head)). Here is an example- 1155.928 = 0.215*((0.5*(0.16^3)*170*50000000)/(1890*(1.01^7)*1.51)).
How to calculate Cost given Most Economical Pipe Diameter of Distribution System?
With Darcy Friction Factor (f), Discharge for Economical Pipe (Qec), Hydroelectric Power (P), Allowable Unit Stress (PA), Initial Investment (I), Pipe Diameter for Weir (dpipe) & Average Head (hAvghead) we can find Cost given Most Economical Pipe Diameter of Distribution System using the formula - Cost for Distribution System = 0.215*((Darcy Friction Factor*(Discharge for Economical Pipe^3)*Hydroelectric Power*Allowable Unit Stress)/(Initial Investment*(Pipe Diameter for Weir^7)*Average Head)).
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