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Work is done when a force that is applied to an object moves that object. Check FAQs
W=SWApLNhcoc+hd60
W - Work?SW - Specific Weight?Ap - Area of Piston?L - Length of Stroke?N - Speed in RPM?hcoc - Height of Centre of Cylinder?hd - Height to which Liquid is Raised?

Work Done by Reciprocating Pumps Example

With values
With units
Only example

Here is how the Work Done by Reciprocating Pumps equation looks like with Values.

Here is how the Work Done by Reciprocating Pumps equation looks like with Units.

Here is how the Work Done by Reciprocating Pumps equation looks like.

222.75Edit=0.75Edit0.05Edit0.88Edit100Edit1.45Edit+2.6Edit60
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Work Done by Reciprocating Pumps Solution

Follow our step by step solution on how to calculate Work Done by Reciprocating Pumps?

FIRST Step Consider the formula
W=SWApLNhcoc+hd60
Next Step Substitute values of Variables
W=0.75kN/m³0.050.88m1001.45m+2.6m60
Next Step Convert Units
W=750N/m³0.050.88m1001.45m+2.6m60
Next Step Prepare to Evaluate
W=7500.050.881001.45+2.660
Next Step Evaluate
W=222.75J
LAST Step Convert to Output's Unit
W=222.75N*m

Work Done by Reciprocating Pumps 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.
Specific Weight
Specific Weight the ratio of a body’s weight P to its volume V.
Symbol: SW
Measurement: Specific WeightUnit: kN/m³
Note: Value should be greater than 0.
Area of Piston
Area of piston is the value of area of the piston in a piston pump.
Symbol: Ap
Measurement: AreaUnit:
Note: Value should be greater than 0.
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.
Height of Centre of Cylinder
Height of centre of cylinder in meters.
Symbol: hcoc
Measurement: LengthUnit: m
Note: Value can be positive or negative.
Height to which Liquid is Raised
Height to which liquid is raised in meters.
Symbol: hd
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 Reciprocating Pumps?

Work Done by Reciprocating Pumps evaluator uses Work = Specific Weight*Area of Piston*Length of Stroke*Speed in RPM*(Height of Centre of Cylinder+Height to which Liquid is Raised)/60 to evaluate the Work, Work Done by Reciprocating Pumps formula is defined as the total energy transferred by a reciprocating pump in a unit of time, which is a critical parameter in evaluating the performance of pumps in various industrial and engineering applications. Work is denoted by W symbol.

How to evaluate Work Done by Reciprocating Pumps using this online evaluator? To use this online evaluator for Work Done by Reciprocating Pumps, enter Specific Weight (SW), Area of Piston (Ap), Length of Stroke (L), Speed in RPM (N), Height of Centre of Cylinder (hcoc) & Height to which Liquid is Raised (hd) and hit the calculate button.

FAQs on Work Done by Reciprocating Pumps

What is the formula to find Work Done by Reciprocating Pumps?
The formula of Work Done by Reciprocating Pumps is expressed as Work = Specific Weight*Area of Piston*Length of Stroke*Speed in RPM*(Height of Centre of Cylinder+Height to which Liquid is Raised)/60. Here is an example- 222.75 = 750*0.05*0.88*100*(1.45+2.6)/60.
How to calculate Work Done by Reciprocating Pumps?
With Specific Weight (SW), Area of Piston (Ap), Length of Stroke (L), Speed in RPM (N), Height of Centre of Cylinder (hcoc) & Height to which Liquid is Raised (hd) we can find Work Done by Reciprocating Pumps using the formula - Work = Specific Weight*Area of Piston*Length of Stroke*Speed in RPM*(Height of Centre of Cylinder+Height to which Liquid is Raised)/60.
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=((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)OpenImg
Can the Work Done by Reciprocating Pumps be negative?
Yes, the Work Done by Reciprocating Pumps, measured in Energy can be negative.
Which unit is used to measure Work Done by Reciprocating Pumps?
Work Done by Reciprocating Pumps 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 Reciprocating Pumps can be measured.
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