Volume of Fuel Injected Per Cycle Solution

STEP 0: Pre-Calculation Summary
Formula Used
Volume of Fuel Injected per Cycle = Fuel Consumption per Cycle/Specific Gravity of Fuel
Vcycle = fccycle/Sg
This formula uses 3 Variables
Variables Used
Volume of Fuel Injected per Cycle - (Measured in Cubic Meter) - Volume of Fuel Injected per Cycle is defined as the amount of fuel that is burnt up in a single cylinder in one working cycle.
Fuel Consumption per Cycle - (Measured in Kilogram) - Fuel Consumption per Cycle is defined as the fuel consumed by the engine cylinder in one working cycle of the IC engine that is two rotations of crankshaft for four stroke completes one cycle.
Specific Gravity of Fuel - Specific Gravity of Fuel is the ratio of the density of fuel to the density of a given reference material.
STEP 1: Convert Input(s) to Base Unit
Fuel Consumption per Cycle: 4E-05 Kilogram --> 4E-05 Kilogram No Conversion Required
Specific Gravity of Fuel: 0.85 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Vcycle = fccycle/Sg --> 4E-05/0.85
Evaluating ... ...
Vcycle = 4.70588235294118E-05
STEP 3: Convert Result to Output's Unit
4.70588235294118E-05 Cubic Meter --> No Conversion Required
FINAL ANSWER
4.70588235294118E-05 4.7E-5 Cubic Meter <-- Volume of Fuel Injected per Cycle
(Calculation completed in 00.004 seconds)

Credits

Created by Syed Adnan
Ramaiah University of Applied Sciences (RUAS), bangalore
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Verified by Kartikay Pandit
National Institute Of Technology (NIT), Hamirpur
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12 Fuel Injection in IC Engine Calculators

Actual Fuel Velocity of Injection Considering Orifice Flow Coefficient
Go Actual Fuel Velocity of Injection = Flow Coefficient of Orifice*sqrt((2*(Injection Pressure in pascals-Pressure in Cylinder during Fuel Injection)*100000)/Density of Fuel)
Volume of Fuel Injected Per Second in Diesel Engine
Go Volume of Fuel Injected per Second = Area of All Orifices of Fuel Injectors*Actual Fuel Velocity of Injection*Total Time Taken for Fuel Injection*Number of Injections per Minute/60
Energy Content per Unit Cylinder Volume of Mixture Formed in Cylinder of Diesel Engine
Go Energy Content per Unit Cylinder in Diesel Engine = (Density of Air*Lower Heating Value of Fuel)/(Relative Air Fuel Ratio*Stoichiometric Air Fuel Ratio)
Energy Content Per Unit Cylinder Volume of Mixture Formed Prior to Induction into Cylinder
Go Energy Content per Unit Cylinder = (Density of Mixture*Lower Heating Value of Fuel)/(Relative Air Fuel Ratio*Stoichiometric Air Fuel Ratio+1)
Fuel Velocity at Time of Release into Engine Cylinder
Go Fuel Velocity at Tip of Nozzle = sqrt(2*Specific Volume of Fuel*(Injection Pressure in pascals-Pressure in Cylinder during Fuel Injection))
Area of all Orifices of Fuel Injectors
Go Area of All Orifices of Fuel Injectors = pi/4*Diameter of Fuel Orifice^2*Number of Orifices
Total Time Taken for Fuel Injection in One Cycle
Go Total Time Taken for Fuel Injection = Time of Fuel Injection in Crank Angle/360*60/Engine RPM
Fuel Consumption Per Cycle
Go Fuel Consumption per Cycle = Fuel Consumption per Cylinder/(60*Number of Cycles per Minute)
Volume of Fuel Injected Per Cycle
Go Volume of Fuel Injected per Cycle = Fuel Consumption per Cycle/Specific Gravity of Fuel
Fuel Consumption per Cylinder
Go Fuel Consumption per Cylinder = Fuel Consumption per Hour/Number of Orifices
Fuel Consumption Per Hour in Diesel Engine
Go Fuel Consumption per Hour = Brake Specific Fuel Consumption*Brake Power
Number of Fuel Injections Per Minute for Four Stroke Engine
Go Number of Injections per Minute = Engine RPM/2

Volume of Fuel Injected Per Cycle Formula

Volume of Fuel Injected per Cycle = Fuel Consumption per Cycle/Specific Gravity of Fuel
Vcycle = fccycle/Sg

What is volume of fuel injected per cycle?

The volume of fuel that is burnt in the engine cylinder in one working cycle is the volume of fuel per cycle. It is usually a very small value as the time taken to complete one cycle is very small in modern engines and the fuel is also injected in very minute amounts for one cycle.

How to Calculate Volume of Fuel Injected Per Cycle?

Volume of Fuel Injected Per Cycle calculator uses Volume of Fuel Injected per Cycle = Fuel Consumption per Cycle/Specific Gravity of Fuel to calculate the Volume of Fuel Injected per Cycle, The Volume of fuel injected per cycle formula is defined as the amount of fuel that is burnt up in a single cylinder in one working cycle. Volume of Fuel Injected per Cycle is denoted by Vcycle symbol.

How to calculate Volume of Fuel Injected Per Cycle using this online calculator? To use this online calculator for Volume of Fuel Injected Per Cycle, enter Fuel Consumption per Cycle (fccycle) & Specific Gravity of Fuel (Sg) and hit the calculate button. Here is how the Volume of Fuel Injected Per Cycle calculation can be explained with given input values -> 4.7E-5 = 4E-05/0.85.

FAQ

What is Volume of Fuel Injected Per Cycle?
The Volume of fuel injected per cycle formula is defined as the amount of fuel that is burnt up in a single cylinder in one working cycle and is represented as Vcycle = fccycle/Sg or Volume of Fuel Injected per Cycle = Fuel Consumption per Cycle/Specific Gravity of Fuel. Fuel Consumption per Cycle is defined as the fuel consumed by the engine cylinder in one working cycle of the IC engine that is two rotations of crankshaft for four stroke completes one cycle & Specific Gravity of Fuel is the ratio of the density of fuel to the density of a given reference material.
How to calculate Volume of Fuel Injected Per Cycle?
The Volume of fuel injected per cycle formula is defined as the amount of fuel that is burnt up in a single cylinder in one working cycle is calculated using Volume of Fuel Injected per Cycle = Fuel Consumption per Cycle/Specific Gravity of Fuel. To calculate Volume of Fuel Injected Per Cycle, you need Fuel Consumption per Cycle (fccycle) & Specific Gravity of Fuel (Sg). With our tool, you need to enter the respective value for Fuel Consumption per Cycle & Specific Gravity of Fuel 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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