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Work is done when a force that is applied to an object moves that object. Check FAQs
W=(2ρALN60)(hs+hdel+0.66hfs+0.66hfd)
W - Work?ρ - Density?A - Area of cylinder?L - Length of Stroke?N - Speed in RPM?hs - Suction Head?hdel - Delivery Head?hfs - Head Loss due to Friction in Suction Pipe?hfd - Head loss due to friction in delivery pipe?

Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes Example

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Here is how the Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes equation looks like with Values.

Here is how the Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes equation looks like with Units.

Here is how the Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes equation looks like.

33.556Edit=(21.225Edit0.6Edit0.88Edit100Edit60)(7Edit+5Edit+0.662.4Edit+0.663Edit)
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Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes Solution

Follow our step by step solution on how to calculate Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes?

FIRST Step Consider the formula
W=(2ρALN60)(hs+hdel+0.66hfs+0.66hfd)
Next Step Substitute values of Variables
W=(21.225kg/m³0.60.88m10060)(7m+5m+0.662.4m+0.663m)
Next Step Prepare to Evaluate
W=(21.2250.60.8810060)(7+5+0.662.4+0.663)
Next Step Evaluate
W=33.555984J
Next Step Convert to Output's Unit
W=33.555984N*m
LAST Step Rounding Answer
W=33.556N*m

Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes Formula Elements

Variables
Work
Work is done when a force that is applied to an object moves that object.
Symbol: W
Measurement: EnergyUnit: N*m
Note: Value can be positive or negative.
Density
The Density of a material shows the denseness of that material in a specific given area. This is taken as mass per unit volume of a given object.
Symbol: ρ
Measurement: DensityUnit: kg/m³
Note: Value should be greater than 0.
Area of cylinder
Area of cylinder is defined as the total space covered by the flat surfaces of the bases of the cylinder and the curved surface.
Symbol: A
Measurement: AreaUnit:
Note: Value can be positive or negative.
Length of Stroke
Length of stroke is the range of movement of piston.
Symbol: L
Measurement: LengthUnit: m
Note: Value can be positive or negative.
Speed in RPM
Speed in RPM is the number of turns of the object divided by time, specified as revolutions per minute (rpm).
Symbol: N
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Suction Head
Suction Head is the vertical height of the center line of the pump shaft.
Symbol: hs
Measurement: LengthUnit: m
Note: Value should be greater than 0.
Delivery Head
Delivery head is vertical height of the liquid surface in the tank/reservoir to which the liquid is delivered.
Symbol: hdel
Measurement: LengthUnit: m
Note: Value can be positive or negative.
Head Loss due to Friction in Suction Pipe
Head loss due to friction in suction pipe is ratio of product of friction coeff, length of suction pipe, and velocity squared to product of diameter of pipe and acceleration due to gravity.
Symbol: hfs
Measurement: LengthUnit: m
Note: Value can be positive or negative.
Head loss due to friction in delivery pipe
Head loss due to friction in delivery pipe is ratio of product of friction coeff, length of delivery pipe, and velocity squared to product of diameter of delivery pipe and acceleration due to gravity.
Symbol: hfd
Measurement: LengthUnit: m
Note: Value can be positive or negative.

Other Formulas to find Work

​Go Work Done by Double Acting Reciprocating Pump
W=2SWApL(N60)(hcoc+hd)
​Go Work Done by Double-acting Pump considering all Head Losses
W=(2SWALN60)(hs+hdel+((23)hfd)+((23)hfs))

Other formulas in Double Acting Pumps category

​Go Discharge of Double Acting Reciprocating Pump
Q=(π4)L((2(dp2))-(d2))(N60)
​Go Discharge of Double Acting Reciprocating Pump neglecting Diameter of Piston Rod
Q=2ApLN60

How to Evaluate Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes?

Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes evaluator uses Work = ((2*Density*Area of cylinder*Length of Stroke*Speed in RPM)/60)*(Suction Head+Delivery Head+0.66*Head Loss due to Friction in Suction Pipe+0.66*Head loss due to friction in delivery pipe) to evaluate the Work, The Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes formula is defined as a measure of energy transfer that occurs when fluid is moved over a distance by an external force at least part of which is applied in the direction of the displacement. Work is denoted by W symbol.

How to evaluate Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes using this online evaluator? To use this online evaluator for Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes, enter Density (ρ), Area of cylinder (A), Length of Stroke (L), Speed in RPM (N), Suction Head (hs), Delivery Head (hdel), Head Loss due to Friction in Suction Pipe (hfs) & Head loss due to friction in delivery pipe (hfd) and hit the calculate button.

FAQs on Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes

What is the formula to find Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes?
The formula of Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes is expressed as Work = ((2*Density*Area of cylinder*Length of Stroke*Speed in RPM)/60)*(Suction Head+Delivery Head+0.66*Head Loss due to Friction in Suction Pipe+0.66*Head loss due to friction in delivery pipe). Here is an example- 33.55598 = ((2*1.225*0.6*0.88*100)/60)*(7+5+0.66*2.4+0.66*3).
How to calculate Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes?
With Density (ρ), Area of cylinder (A), Length of Stroke (L), Speed in RPM (N), Suction Head (hs), Delivery Head (hdel), Head Loss due to Friction in Suction Pipe (hfs) & Head loss due to friction in delivery pipe (hfd) we can find Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes using the formula - Work = ((2*Density*Area of cylinder*Length of Stroke*Speed in RPM)/60)*(Suction Head+Delivery Head+0.66*Head Loss due to Friction in Suction Pipe+0.66*Head loss due to friction in delivery pipe).
What are the other ways to Calculate Work?
Here are the different ways to Calculate Work-
  • Work=2*Specific Weight*Area of Piston*Length of Stroke*(Speed in RPM/60)*(Height of centre of cylinder+Height to which liquid is raised)OpenImg
  • Work=(2*Specific Weight*Area of cylinder*Length of Stroke*Speed in RPM/60)*(Suction Head+Delivery Head+((2/3)*Head loss due to friction in delivery pipe)+((2/3)*Head Loss due to Friction in Suction Pipe))OpenImg
  • Work=Specific Weight*Area of Piston*Length of Stroke*Speed in RPM*(Height of centre of cylinder+Height to which liquid is raised)/60OpenImg
Can the Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes be negative?
Yes, the Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes, measured in Energy can be negative.
Which unit is used to measure Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes?
Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes is usually measured using the Newton Meter[N*m] for Energy. Joule[N*m], Kilojoule[N*m], Gigajoule[N*m] are the few other units in which Work Done by Double Acting Pump due to Friction in Suction and Delivery Pipes can be measured.
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