Area of IC Engine Port given Cross-Section Area of Piston Solution

STEP 0: Pre-Calculation Summary
Formula Used
Area of Port = (Cross Section Area of Piston*Mean Piston Speed)/(Velocity of Gas through Port)
ap = (a*sp)/(vp)
This formula uses 4 Variables
Variables Used
Area of Port - (Measured in Square Meter) - Area of Port is the area of opening of a port.
Cross Section Area of Piston - (Measured in Square Meter) - Cross Section Area of Piston is the area of the circular cross section of an IC Engine piston.
Mean Piston Speed - (Measured in Meter per Second) - Mean Piston Speed is the average speed of the piston over one engine revolution.
Velocity of Gas through Port - (Measured in Meter per Second) - Velocity of Gas through Port is the velocity with which the gases are flowing through the port.
STEP 1: Convert Input(s) to Base Unit
Cross Section Area of Piston: 5860 Square Millimeter --> 0.00586 Square Meter (Check conversion ​here)
Mean Piston Speed: 4.5 Meter per Second --> 4.5 Meter per Second No Conversion Required
Velocity of Gas through Port: 20 Meter per Second --> 20 Meter per Second No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
ap = (a*sp)/(vp) --> (0.00586*4.5)/(20)
Evaluating ... ...
ap = 0.0013185
STEP 3: Convert Result to Output's Unit
0.0013185 Square Meter -->1318.5 Square Millimeter (Check conversion ​here)
FINAL ANSWER
1318.5 Square Millimeter <-- Area of Port
(Calculation completed in 00.004 seconds)

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Shri Govindram Seksaria Institute of Technology and Science (SGSITS ), Indore
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11 Valve Port Calculators

Diameter of IC Engine Port
​ Go Diameter of Port = sqrt((4*Cross Section Area of Piston*Mean Piston Speed)/(Velocity of Gas through Port*pi))
Mean Velocity of Gas through IC Engine Port given Engine Speed, Stroke, Area of Piston and Port
​ Go Velocity of Gas through Port = (Cross Section Area of Piston*(2*Engine Speed in rpm*Stroke Length)/60)/(Area of Port)
Mean Velocity of IC Engine Piston given Velocity of Gas through Port
​ Go Mean Piston Speed = (Area of Port*Velocity of Gas through Port)/(Cross Section Area of Piston)
Mean Velocity of Gas through IC Engine Port given Velocity of Piston
​ Go Velocity of Gas through Port = (Cross Section Area of Piston*Mean Piston Speed)/(Area of Port)
Cross-Section Area of IC Engine Piston given Area of Port
​ Go Cross Section Area of Piston = (Area of Port*Velocity of Gas through Port)/(Mean Piston Speed)
Area of IC Engine Port given Cross-Section Area of Piston
​ Go Area of Port = (Cross Section Area of Piston*Mean Piston Speed)/(Velocity of Gas through Port)
Diameter of IC Engine Port given Area of Port
​ Go Diameter of Port = sqrt((4*Area of Port)/pi)
Stroke Length of Piston given Mean Velocity of Piston and Engine Speed
​ Go Stroke Length = (60*Mean Piston Speed)/(2*Engine Speed in rpm)
Engine Speed given Mean Velocity of Piston and Stroke Length
​ Go Engine Speed in rpm = 60*(Mean Piston Speed)/(2*Stroke Length)
Mean Velocity of IC Engine Piston given Engine Speed and Stroke Length
​ Go Mean Piston Speed = (2*Engine Speed in rpm*Stroke Length)/60
Acceleration of Exhaust Valve
​ Go Acceleration of Valve = Inertia Force on Valve/Mass of Valve

Area of IC Engine Port given Cross-Section Area of Piston Formula

Area of Port = (Cross Section Area of Piston*Mean Piston Speed)/(Velocity of Gas through Port)
ap = (a*sp)/(vp)

Ports vs Valves in IC Engine

A Port is the best and simplest one to suck the air or air-fuel mixture into the cylinder and kick the exhaust out. Ports are used in two-stroke reciprocating petrol engines and also in rotary engines. Valves are mainly used in 4 strokes reciprocating diesel/petrol engines, etc. Valves need a cam and rocker arm mechanism for the opening and closing of valves. But in the case of ports, it does not need any other mechanism for the opening and closing of ports. It simply opens and closes by the piston (positioning).

How to Calculate Area of IC Engine Port given Cross-Section Area of Piston?

Area of IC Engine Port given Cross-Section Area of Piston calculator uses Area of Port = (Cross Section Area of Piston*Mean Piston Speed)/(Velocity of Gas through Port) to calculate the Area of Port, The area of IC Engine Port given cross-section area of piston is the area of opening of the port of an IC Engine. Area of Port is denoted by ap symbol.

How to calculate Area of IC Engine Port given Cross-Section Area of Piston using this online calculator? To use this online calculator for Area of IC Engine Port given Cross-Section Area of Piston, enter Cross Section Area of Piston (a), Mean Piston Speed (sp) & Velocity of Gas through Port (vp) and hit the calculate button. Here is how the Area of IC Engine Port given Cross-Section Area of Piston calculation can be explained with given input values -> 1.3E+9 = (0.00586*4.5)/(20).

FAQ

What is Area of IC Engine Port given Cross-Section Area of Piston?
The area of IC Engine Port given cross-section area of piston is the area of opening of the port of an IC Engine and is represented as ap = (a*sp)/(vp) or Area of Port = (Cross Section Area of Piston*Mean Piston Speed)/(Velocity of Gas through Port). Cross Section Area of Piston is the area of the circular cross section of an IC Engine piston, Mean Piston Speed is the average speed of the piston over one engine revolution & Velocity of Gas through Port is the velocity with which the gases are flowing through the port.
How to calculate Area of IC Engine Port given Cross-Section Area of Piston?
The area of IC Engine Port given cross-section area of piston is the area of opening of the port of an IC Engine is calculated using Area of Port = (Cross Section Area of Piston*Mean Piston Speed)/(Velocity of Gas through Port). To calculate Area of IC Engine Port given Cross-Section Area of Piston, you need Cross Section Area of Piston (a), Mean Piston Speed (sp) & Velocity of Gas through Port (vp). With our tool, you need to enter the respective value for Cross Section Area of Piston, Mean Piston Speed & Velocity of Gas through Port and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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