Work done against friction in suction pipe Solution

STEP 0: Pre-Calculation Summary
Formula Used
Work done against friction in suction pipe = (2/3)*Length of Stroke*Head Loss due to Friction in Suction Pipe
Wfs = (2/3)*L*hfs
This formula uses 3 Variables
Variables Used
Work done against friction in suction pipe - (Measured in Joule) - Work done against friction in suction pipe is the energy lost due to friction in the suction pipe of a single acting pump during its operation.
Length of Stroke - (Measured in Meter) - Length of Stroke is the distance of the piston's movement in a single acting pump, which affects the pump's overall performance and efficiency.
Head Loss due to Friction in Suction Pipe - (Measured in Meter) - Head Loss due to Friction in Suction Pipe is the pressure drop that occurs in the suction pipe of a single acting pump due to frictional resistance.
STEP 1: Convert Input(s) to Base Unit
Length of Stroke: 0.88 Meter --> 0.88 Meter No Conversion Required
Head Loss due to Friction in Suction Pipe: 0.654872 Meter --> 0.654872 Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Wfs = (2/3)*L*hfs --> (2/3)*0.88*0.654872
Evaluating ... ...
Wfs = 0.384191573333333
STEP 3: Convert Result to Output's Unit
0.384191573333333 Joule -->0.384191573333333 Newton Meter (Check conversion ​here)
FINAL ANSWER
0.384191573333333 0.384192 Newton Meter <-- Work done against friction in suction pipe
(Calculation completed in 00.004 seconds)

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Created by Sagar S Kulkarni
Dayananda Sagar College of Engineering (DSCE), Bengaluru
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Institute of Aeronautical Engineering (IARE), Hyderabad
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Single Acting Pumps Calculators

Work Done by Single Acting Pump due to Friction in Suction and Delivery Pipes
​ LaTeX ​ Go Work done against friction in suction pipe = ((Density*[g]*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)
Work Done by Single-acting Pump considering all Head Losses
​ LaTeX ​ Go Work done against friction in delivery pipe = (Specific Weight*Area of cylinder*Length of Stroke*Speed in RPM/60)*(Suction Head+Delivery Head+((2/3)*Head Loss due to Friction in Suction Pipe)+((2/3)*Head loss due to friction in delivery pipe))
Work done against friction in delivery pipe
​ LaTeX ​ Go Work done against friction in delivery pipe = (2/3)*Length of Stroke*Head loss due to friction in delivery pipe
Work done against friction in suction pipe
​ LaTeX ​ Go Work done against friction in suction pipe = (2/3)*Length of Stroke*Head Loss due to Friction in Suction Pipe

Work done against friction in suction pipe Formula

​LaTeX ​Go
Work done against friction in suction pipe = (2/3)*Length of Stroke*Head Loss due to Friction in Suction Pipe
Wfs = (2/3)*L*hfs

What is Work Done against Friction?

Work done against friction is the energy expended to overcome the resistance caused by friction when an object moves over a surface. It involves applying a force to move the object, with part of the energy being used to counteract the frictional force. This energy is typically converted into heat, causing the object and surface to warm up. Work against friction is important in systems where energy loss due to friction needs to be minimized for efficiency.






How to Calculate Work done against friction in suction pipe?

Work done against friction in suction pipe calculator uses Work done against friction in suction pipe = (2/3)*Length of Stroke*Head Loss due to Friction in Suction Pipe to calculate the Work done against friction in suction pipe, Work done against friction in suction pipe formula is defined as the energy lost due to frictional resistance in a suction pipe of a reciprocating pump, which affects the pump's overall efficiency and performance. Work done against friction in suction pipe is denoted by Wfs symbol.

How to calculate Work done against friction in suction pipe using this online calculator? To use this online calculator for Work done against friction in suction pipe, enter Length of Stroke (L) & Head Loss due to Friction in Suction Pipe (hfs) and hit the calculate button. Here is how the Work done against friction in suction pipe calculation can be explained with given input values -> 0.384192 = (2/3)*0.88*0.654872.

FAQ

What is Work done against friction in suction pipe?
Work done against friction in suction pipe formula is defined as the energy lost due to frictional resistance in a suction pipe of a reciprocating pump, which affects the pump's overall efficiency and performance and is represented as Wfs = (2/3)*L*hfs or Work done against friction in suction pipe = (2/3)*Length of Stroke*Head Loss due to Friction in Suction Pipe. Length of Stroke is the distance of the piston's movement in a single acting pump, which affects the pump's overall performance and efficiency & Head Loss due to Friction in Suction Pipe is the pressure drop that occurs in the suction pipe of a single acting pump due to frictional resistance.
How to calculate Work done against friction in suction pipe?
Work done against friction in suction pipe formula is defined as the energy lost due to frictional resistance in a suction pipe of a reciprocating pump, which affects the pump's overall efficiency and performance is calculated using Work done against friction in suction pipe = (2/3)*Length of Stroke*Head Loss due to Friction in Suction Pipe. To calculate Work done against friction in suction pipe, you need Length of Stroke (L) & Head Loss due to Friction in Suction Pipe (hfs). With our tool, you need to enter the respective value for Length of Stroke & Head Loss due to Friction in Suction Pipe 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 Work done against friction in suction pipe?
In this formula, Work done against friction in suction pipe uses Length of Stroke & Head Loss due to Friction in Suction Pipe. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Work done against friction in suction pipe = ((Density*[g]*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)
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