Volumetric Efficiency of Diesel Engine Power Plant Solution

STEP 0: Pre-Calculation Summary
Formula Used
Volumetric Efficiency = Volume of Air Induced/Volume of Cylinder
VE = V/Vc
This formula uses 3 Variables
Variables Used
Volumetric Efficiency - Volumetric efficiency is a measure of how effectively an internal combustion engine (ICE) is able to draw in and use the air/fuel mixture that is required for the combustion process.
Volume of Air Induced - (Measured in Cubic Meter) - Volume of Air Induced refers to the amount of air that is drawn into the engine's cylinders during the intake stroke.e a given power output.
Volume of Cylinder - (Measured in Cubic Meter) - Volume of Cylinder is the total space occupied by the cylinder in a diesel engine.
STEP 1: Convert Input(s) to Base Unit
Volume of Air Induced: 1.794 Cubic Meter --> 1.794 Cubic Meter No Conversion Required
Volume of Cylinder: 2.3 Cubic Meter --> 2.3 Cubic Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
VE = V/Vc --> 1.794/2.3
Evaluating ... ...
VE = 0.78
STEP 3: Convert Result to Output's Unit
0.78 --> No Conversion Required
FINAL ANSWER
0.78 <-- Volumetric Efficiency
(Calculation completed in 00.004 seconds)

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25 Diesel Engine Power Plant Calculators

Overall Efficiency or Brake Thermal Efficiency using Brake Mean Effective Pressure
​ Go Brake Thermal Efficiency = (Brake Mean Effective Pressure*Piston Area*Stroke of Piston*(RPM/2)*Number of Cylinders)/(Fuel Consumption Rate*Calorific Value*60)
Break Power given Bore and Stroke
​ Go Brake Power of 4 Stroke = (Mechanical Efficiency*Indicated Mean Effective Pressure*Piston Area*Stroke of Piston*(RPM/2)*Number of Cylinders)/60
Indicated Power of 2 Stroke Engine
​ Go Indicated Power of 2 Stroke Engine = (Indicated Mean Effective Pressure*Piston Area*Stroke of Piston*RPM*Number of Cylinders)/60
Indicated Power of 4 Stroke Engine
​ Go Indicated Power of 4 Stroke = (Indicated Mean Effective Pressure*Piston Area*Stroke of Piston*(RPM/2)*Number of Cylinders)/60
Brake Power using Break Mean Effective Pressure
​ Go Brake Power of 4 Stroke = (Brake Mean Effective Pressure*Piston Area*Stroke of Piston*(RPM/2)*Number of Cylinders)/60
Overall Efficiency or Brake Thermal Efficiency using Mechanical Efficiency
​ Go Brake Thermal Efficiency = (Mechanical Efficiency*Indicated Power of 4 Stroke)/(Fuel Consumption Rate*Calorific Value)
Overall Efficiency or Brake Thermal Efficiency using Friction Power and Indicated Power
​ Go Brake Thermal Efficiency = (Indicated Power of 4 Stroke-Friction Power)/(Fuel Consumption Rate*Calorific Value)
Thermal Efficiency using Indicated Mean Effective Pressure and Break Mean Effective Pressure
​ Go Indicated Thermal Efficiency = Brake Thermal Efficiency*Indicated Mean Effective Pressure/Brake Mean Effective Pressure
Thermal Efficiency using Indicated Power and Brake Power
​ Go Indicated Thermal Efficiency = Brake Thermal Efficiency*Indicated Power of 4 Stroke/Brake Power of 4 Stroke
Thermal Efficiency using Indicated Power and Fuel Consumption Rate
​ Go Indicated Thermal Efficiency = Indicated Power of 4 Stroke/(Fuel Consumption Rate*Calorific Value)
Mechanical Efficiency using Indicated Power and Friction Power
​ Go Mechanical Efficiency = (Indicated Power of 4 Stroke-Friction Power)/Indicated Power of 4 Stroke
Brake Thermal Efficiency of Diesel Engine Power Plant
​ Go Brake Thermal Efficiency = Brake Power of 4 Stroke/(Fuel Consumption Rate*Calorific Value)
Mechanical Efficiency using Break Power and Friction Power
​ Go Mechanical Efficiency = Brake Power of 4 Stroke/(Brake Power of 4 Stroke+Friction Power)
Work Done per Cycle
​ Go Work = Indicated Mean Effective Pressure*Piston Area*Stroke of Piston
Brake Mean Effective Pressure
​ Go Brake Mean Effective Pressure = Mechanical Efficiency*Indicated Mean Effective Pressure
Break Power of 4 Stroke Diesel Engine
​ Go Brake Power of 4 Stroke = (2*pi*Torque*(RPM/2))/60
Brake Specific Fuel Consumption given Brake Power and Fuel Consumption Rate
​ Go Brake Specific Fuel Consumption = Fuel Consumption Rate/Brake Power of 4 Stroke
Break Power of 2 Stroke Diesel Engine
​ Go Brake Power of 2 Stroke = (2*pi*Torque*RPM)/60
Thermal Efficiency of Diesel Engine Power Plant
​ Go Indicated Thermal Efficiency = Brake Thermal Efficiency/Mechanical Efficiency
Break Power given Mechanical Efficiency and Indicated Power
​ Go Brake Power of 4 Stroke = Mechanical Efficiency*Indicated Power of 4 Stroke
Mechanical Efficiency of Diesel Engine
​ Go Mechanical Efficiency = Brake Power of 4 Stroke/Indicated Power of 4 Stroke
Indicated Power using Brake Power and Friction Power
​ Go Indicated Power of 4 Stroke = Brake Power of 4 Stroke+Friction Power
Friction Power of Diesel Engine
​ Go Friction Power = Indicated Power of 4 Stroke-Brake Power of 4 Stroke
Brake Mean Effective Pressure given Torque
​ Go Brake Mean Effective Pressure = Proportionality Constant*Torque
Area of Piston given Piston Bore
​ Go Piston Area = (pi/4)*Piston Bore^2

Volumetric Efficiency of Diesel Engine Power Plant Formula

Volumetric Efficiency = Volume of Air Induced/Volume of Cylinder
VE = V/Vc

What is the relation between indicated power brake power and friction power?

The difference between indicated power and brake power is as follows. First of all, by indicated power we mean GROSS indicated power, the total work done by gas on piston during compression and power strokes. The brake power is the power available at the dynamometer. The difference is called friction power.

How to Calculate Volumetric Efficiency of Diesel Engine Power Plant?

Volumetric Efficiency of Diesel Engine Power Plant calculator uses Volumetric Efficiency = Volume of Air Induced/Volume of Cylinder to calculate the Volumetric Efficiency, The Volumetric Efficiency of Diesel Engine Power Plant formula is defined as a measure of how effectively an internal combustion engine (ICE) of the Diesel Engine Power Plant is able to draw in and use the air/fuel mixture that is required for the combustion process. Volumetric Efficiency is denoted by VE symbol.

How to calculate Volumetric Efficiency of Diesel Engine Power Plant using this online calculator? To use this online calculator for Volumetric Efficiency of Diesel Engine Power Plant, enter Volume of Air Induced (V) & Volume of Cylinder (Vc) and hit the calculate button. Here is how the Volumetric Efficiency of Diesel Engine Power Plant calculation can be explained with given input values -> 0.78 = 1.794/2.3.

FAQ

What is Volumetric Efficiency of Diesel Engine Power Plant?
The Volumetric Efficiency of Diesel Engine Power Plant formula is defined as a measure of how effectively an internal combustion engine (ICE) of the Diesel Engine Power Plant is able to draw in and use the air/fuel mixture that is required for the combustion process and is represented as VE = V/Vc or Volumetric Efficiency = Volume of Air Induced/Volume of Cylinder. Volume of Air Induced refers to the amount of air that is drawn into the engine's cylinders during the intake stroke.e a given power output & Volume of Cylinder is the total space occupied by the cylinder in a diesel engine.
How to calculate Volumetric Efficiency of Diesel Engine Power Plant?
The Volumetric Efficiency of Diesel Engine Power Plant formula is defined as a measure of how effectively an internal combustion engine (ICE) of the Diesel Engine Power Plant is able to draw in and use the air/fuel mixture that is required for the combustion process is calculated using Volumetric Efficiency = Volume of Air Induced/Volume of Cylinder. To calculate Volumetric Efficiency of Diesel Engine Power Plant, you need Volume of Air Induced (V) & Volume of Cylinder (Vc). With our tool, you need to enter the respective value for Volume of Air Induced & Volume of Cylinder 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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