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Velocity of Gas through Port is the velocity with which the gases are flowing through the port. Check FAQs
vp=a2Nls60ap
vp - Velocity of Gas through Port?a - Cross Section Area of Piston?N - Engine Speed?ls - Stroke Length?ap - Area of Port?

Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port Example

With values
With units
Only example

Here is how the Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port equation looks like with Values.

Here is how the Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port equation looks like with Units.

Here is how the Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port equation looks like.

2.26Edit=622.75Edit24687.83Edit275Edit601240Edit

Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port Solution

Follow our step by step solution on how to calculate Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port?

FIRST Step Consider the formula
vp=a2Nls60ap
Next Step Substitute values of Variables
vp=622.75mm²24687.83rev/min275mm601240mm²
Next Step Convert Units
vp=0.00062490.9084rad/s0.275m600.0012
Next Step Prepare to Evaluate
vp=0.00062490.90840.275600.0012
Next Step Evaluate
vp=2.25997670227348m/s
LAST Step Rounding Answer
vp=2.26m/s

Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port Formula Elements

Variables
Velocity of Gas through Port
Velocity of Gas through Port is the velocity with which the gases are flowing through the port.
Symbol: vp
Measurement: SpeedUnit: m/s
Note: Value should be greater than 0.
Cross Section Area of Piston
Cross Section Area of Piston is the area of the circular cross section of an IC Engine piston.
Symbol: a
Measurement: AreaUnit: mm²
Note: Value should be greater than 0.
Engine Speed
Engine Speed in rpm is the speed at which the crankshaft of the engine rotates.
Symbol: N
Measurement: Angular VelocityUnit: rev/min
Note: Value should be greater than 0.
Stroke Length
Stroke length is the distance traveled by piston in cylinder from BDC to TDC or vice versa.
Symbol: ls
Measurement: LengthUnit: mm
Note: Value should be greater than 0.
Area of Port
Area of Port is the area of opening of a port.
Symbol: ap
Measurement: AreaUnit: mm²
Note: Value should be greater than 0.

Other Formulas to find Velocity of Gas through Port

​Go Mean Velocity of Gas through IC Engine Port given Velocity of Piston
vp=aspap

Other formulas in Valve Port category

​Go Cross-Section Area of IC Engine Piston given Area of Port
a=apvpsp
​Go Area of IC Engine Port given Cross-Section Area of Piston
ap=aspvp
​Go Mean Velocity of IC Engine Piston given Velocity of Gas through Port
sp=apvpa
​Go Diameter of IC Engine Port given Area of Port
dp=4apπ

How to Evaluate Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port?

Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port evaluator uses Velocity of Gas through Port = (Cross Section Area of Piston*(2*Engine Speed*Stroke Length)/60)/(Area of Port) to evaluate the Velocity of Gas through Port, Mean velocity of gas through IC Engine Port given engine speed, stroke, area of piston and port is the average velocity of an IC engine piston with which it reciprocates inside the cylinder. Velocity of Gas through Port is denoted by vp symbol.

How to evaluate Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port using this online evaluator? To use this online evaluator for Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port, enter Cross Section Area of Piston (a), Engine Speed (N), Stroke Length (ls) & Area of Port (ap) and hit the calculate button.

FAQs on Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port

What is the formula to find Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port?
The formula of Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port is expressed as Velocity of Gas through Port = (Cross Section Area of Piston*(2*Engine Speed*Stroke Length)/60)/(Area of Port). Here is an example- 21.2661 = (0.00062275*(2*490.908409617596*0.275)/60)/(0.00124).
How to calculate Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port?
With Cross Section Area of Piston (a), Engine Speed (N), Stroke Length (ls) & Area of Port (ap) we can find Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port using the formula - Velocity of Gas through Port = (Cross Section Area of Piston*(2*Engine Speed*Stroke Length)/60)/(Area of Port).
What are the other ways to Calculate Velocity of Gas through Port?
Here are the different ways to Calculate Velocity of Gas through Port-
  • Velocity of Gas through Port=(Cross Section Area of Piston*Mean Piston Speed)/(Area of Port)OpenImg
Can the Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port be negative?
No, the Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port, measured in Speed cannot be negative.
Which unit is used to measure Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port?
Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port is usually measured using the Meter per Second[m/s] for Speed. Meter per Minute[m/s], Meter per Hour[m/s], Kilometer per Hour[m/s] are the few other units in which Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port can be measured.
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