Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor Solution

STEP 0: Pre-Calculation Summary
Formula Used
Total Volume of Refrigerant in Compressor = Stroke Volume of Compressor+Clearance volume
V1 = Vp+Vc
This formula uses 3 Variables
Variables Used
Total Volume of Refrigerant in Compressor - (Measured in Cubic Meter) - Total Volume of Refrigerant in Compressor is the volume of refrigerant in compressor before compression.
Stroke Volume of Compressor - (Measured in Cubic Meter) - The stroke volume of compressor is the displacement volume of the piston, between the top dead center and the bottom dead center of the compressor.
Clearance volume - (Measured in Cubic Meter) - The clearance volume is the volume remaining above the piston of an engine when it reaches top dead center.
STEP 1: Convert Input(s) to Base Unit
Stroke Volume of Compressor: 1.5 Cubic Meter --> 1.5 Cubic Meter No Conversion Required
Clearance volume: 0.1 Cubic Meter --> 0.1 Cubic Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
V1 = Vp+Vc --> 1.5+0.1
Evaluating ... ...
V1 = 1.6
STEP 3: Convert Result to Output's Unit
1.6 Cubic Meter --> No Conversion Required
FINAL ANSWER
1.6 Cubic Meter <-- Total Volume of Refrigerant in Compressor
(Calculation completed in 00.004 seconds)

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15 Volumetric Efficiency of a Reciprocating Compressor Calculators

Work Done given Polytropic Index for Compression and Expansion
Go Work Done per cycle = (Polytropic index of compression/(Polytropic index of compression-1))*Suction pressure*Total Volume of Refrigerant in Compressor*((Discharge Pressure of Refrigerant/Suction pressure)^((Polytropic index of compression-1)/Polytropic index of compression)-1)-(Polytropic index of Expansion/(Polytropic index of Expansion-1))*Suction pressure*Expanded clearance volume*((Discharge Pressure of Refrigerant/Suction pressure)^((Polytropic index of Expansion-1)/Polytropic index of Expansion)-1)
Work Done by Reciprocating Compressor given Volume before Compression and after Expansion
Go Work Done per cycle = (Polytropic index of compression/(Polytropic index of compression-1))*(Suction pressure*(Total Volume of Refrigerant in Compressor-Expanded clearance volume))*((Discharge Pressure of Refrigerant/Suction pressure)^((Polytropic index of compression-1)/Polytropic index of compression)-1)
Work done by Reciprocating Compressor given Suction Temperature
Go Work Done per cycle = (Polytropic index of compression/(Polytropic index of compression-1))*Mass of refrigerant in kg per minute*[R]*Suction Temperature of Refrigerant*((Discharge Pressure of Refrigerant/Suction pressure)^((Polytropic index of compression-1)/Polytropic index of compression)-1)
Suction Temperature given Work done by Compressor
Go Suction Temperature of Refrigerant = (Polytropic index of compression-1)/(Polytropic index of compression*Mass of refrigerant in kg per minute*[R]*((Discharge Pressure of Refrigerant/Suction pressure)^((Polytropic index of compression-1)/Polytropic index of compression)-1))
Volumetric Efficiency in Compressor given Clearance Factor
Go Volumetric Efficiency of Compressor = 1+Clearance factor-(Clearance factor*(Discharge Pressure of Refrigerant/Suction pressure)^(1/Polytropic Index for Compression))
Total Volume of Refrigerant in Compressor given Clearance Factor
Go Total Volume of Refrigerant in Compressor = (Clearance volume/Clearance factor)+Clearance volume
Clearance factor
Go Clearance factor = Clearance volume/(Total Volume of Refrigerant in Compressor-Clearance volume)
Total Volume of Refrigerant in Compressor given Actual Volume
Go Total Volume of Refrigerant in Compressor = Actual volume of Refrigerant+Expanded clearance volume
Expanded Clearance Volume given Actual Volume of Compressor
Go Expanded clearance volume = Total Volume of Refrigerant in Compressor-Actual volume of Refrigerant
Actual volume of refrigerant
Go Actual volume of Refrigerant = Total Volume of Refrigerant in Compressor-Expanded clearance volume
Actual Volume of Refrigerant given Volumetric Efficiency
Go Actual volume of Refrigerant = Volumetric Efficiency of Compressor*Stroke Volume of Compressor
Stroke Volume of Compressor given Volumetric efficiency
Go Stroke Volume of Compressor = Actual volume of Refrigerant/Volumetric Efficiency of Compressor
Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor
Go Total Volume of Refrigerant in Compressor = Stroke Volume of Compressor+Clearance volume
Clearance Volume of Compressor given Stroke Volume
Go Clearance volume = Total Volume of Refrigerant in Compressor-Stroke Volume of Compressor
Stroke Volume of Compressor
Go Stroke Volume of Compressor = Total Volume of Refrigerant in Compressor-Clearance volume

Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor Formula

Total Volume of Refrigerant in Compressor = Stroke Volume of Compressor+Clearance volume
V1 = Vp+Vc

Volumetric efficiency of compressor

Volumetric efficiency of compressor is the measure of the deviation from volume handling capacity of the compressor. Mathematically, the volumetric efficiency is given by the ratio of the actual volume of air sucked and swept volume of the cylinder.

How to Calculate Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor?

Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor calculator uses Total Volume of Refrigerant in Compressor = Stroke Volume of Compressor+Clearance volume to calculate the Total Volume of Refrigerant in Compressor, The Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor formula is defined as the volume of the refrigerant sucked in the compressor or volume of refrigerant before compression. Total Volume of Refrigerant in Compressor is denoted by V1 symbol.

How to calculate Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor using this online calculator? To use this online calculator for Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor, enter Stroke Volume of Compressor (Vp) & Clearance volume (Vc) and hit the calculate button. Here is how the Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor calculation can be explained with given input values -> 1.6 = 1.5+0.1.

FAQ

What is Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor?
The Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor formula is defined as the volume of the refrigerant sucked in the compressor or volume of refrigerant before compression and is represented as V1 = Vp+Vc or Total Volume of Refrigerant in Compressor = Stroke Volume of Compressor+Clearance volume. The stroke volume of compressor is the displacement volume of the piston, between the top dead center and the bottom dead center of the compressor & The clearance volume is the volume remaining above the piston of an engine when it reaches top dead center.
How to calculate Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor?
The Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor formula is defined as the volume of the refrigerant sucked in the compressor or volume of refrigerant before compression is calculated using Total Volume of Refrigerant in Compressor = Stroke Volume of Compressor+Clearance volume. To calculate Total Volume of Refrigerant in Compressor given Stroke Volume of Compressor, you need Stroke Volume of Compressor (Vp) & Clearance volume (Vc). With our tool, you need to enter the respective value for Stroke Volume of Compressor & Clearance volume 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 Total Volume of Refrigerant in Compressor?
In this formula, Total Volume of Refrigerant in Compressor uses Stroke Volume of Compressor & Clearance volume. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Total Volume of Refrigerant in Compressor = Actual volume of Refrigerant+Expanded clearance volume
  • Total Volume of Refrigerant in Compressor = (Clearance volume/Clearance factor)+Clearance volume
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