Isentropic Work done given Isentropic Power for Single-acting Compressor Solution

STEP 0: Pre-Calculation Summary
Formula Used
Work done during Isentropic Compression = (Isentropic Power*60)/Speed in RPM
WIsentropic = (PIsentropic*60)/N
This formula uses 3 Variables
Variables Used
Work done during Isentropic Compression - (Measured in Joule) - Work done during Isentropic Compression per minute is the Work done on the system during the isentropic compression of refrigerant.
Isentropic Power - (Measured in Watt) - Isentropic power is the power that is theoretically required to compress refrigerants under constant entropy.
Speed in RPM - Speed in RPM is the number of turns of the object divided by time, specified as revolutions per minute (rpm).
STEP 1: Convert Input(s) to Base Unit
Isentropic Power: 16 Watt --> 16 Watt No Conversion Required
Speed in RPM: 58.5 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
WIsentropic = (PIsentropic*60)/N --> (16*60)/58.5
Evaluating ... ...
WIsentropic = 16.4102564102564
STEP 3: Convert Result to Output's Unit
16.4102564102564 Joule --> No Conversion Required
FINAL ANSWER
16.4102564102564 16.41026 Joule <-- Work done during Isentropic Compression
(Calculation completed in 00.004 seconds)

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12 Power Required to Drive a Single-Stage Reciprocating Compressor Calculators

Isothermal Work done given Isothermal Power for Double-acting Compressor
Go Work Done during Isothermal Compression = (Isothermal Power*60)/(2*Speed in RPM)
Isentropic Work done given Isentropic Power for double-acting Compressor
Go Work done during Isentropic Compression = (Isentropic Power*60)/(2*Speed in RPM)
Polytropic Work done given Indicated Power for Double-acting Compressor
Go Work done during Polytropic Compression = (Indicated Power*60)/(Speed in RPM*2)
Isothermal Power for Double-acting Compressor
Go Isothermal Power = (Work Done during Isothermal Compression*2*Speed in RPM)/60
Isentropic Power for Double-acting Compressor
Go Isentropic Power = (Work done during Isentropic Compression*2*Speed in RPM)/60
Indicated Power for Double-acting Compressor
Go Indicated Power = (Work done during Polytropic Compression*2*Speed in RPM)/60
Isothermal Work done given Isothermal Power for Single-acting Compressor
Go Work Done during Isothermal Compression = (Isothermal Power*60)/Speed in RPM
Isentropic Work done given Isentropic Power for Single-acting Compressor
Go Work done during Isentropic Compression = (Isentropic Power*60)/Speed in RPM
Isothermal Power for Single-acting Compressor
Go Isothermal Power = (Work Done during Isothermal Compression*Speed in RPM)/60
Isentropic Power for Single-acting Compressor
Go Isentropic Power = (Work done during Isentropic Compression*Speed in RPM)/60
Polytropic Work done given Indicated Power for Single-acting Compressor
Go Work done during Polytropic Compression = (Indicated Power*60)/Speed in RPM
Indicated Power for Single-acting Compressor
Go Indicated Power = (Work done during Polytropic Compression*Speed in RPM)/60

Isentropic Work done given Isentropic Power for Single-acting Compressor Formula

Work done during Isentropic Compression = (Isentropic Power*60)/Speed in RPM
WIsentropic = (PIsentropic*60)/N

What is single-acting compressor?

With a single-acting compressor, the air is compressed only on the up-stroke of the piston inside the cylinder. The double-acting compressor compresses the air on both the up-stroke and the down-stroke of the piston, doubling the capacity of given cylinder size.

How to Calculate Isentropic Work done given Isentropic Power for Single-acting Compressor?

Isentropic Work done given Isentropic Power for Single-acting Compressor calculator uses Work done during Isentropic Compression = (Isentropic Power*60)/Speed in RPM to calculate the Work done during Isentropic Compression, The Isentropic Work done given Isentropic Power for Single-acting Compressor formula is defined as the work done on the system during the isentropic compression of refrigerant. Work done during Isentropic Compression is denoted by WIsentropic symbol.

How to calculate Isentropic Work done given Isentropic Power for Single-acting Compressor using this online calculator? To use this online calculator for Isentropic Work done given Isentropic Power for Single-acting Compressor, enter Isentropic Power (PIsentropic) & Speed in RPM (N) and hit the calculate button. Here is how the Isentropic Work done given Isentropic Power for Single-acting Compressor calculation can be explained with given input values -> 16.41026 = (16*60)/58.5.

FAQ

What is Isentropic Work done given Isentropic Power for Single-acting Compressor?
The Isentropic Work done given Isentropic Power for Single-acting Compressor formula is defined as the work done on the system during the isentropic compression of refrigerant and is represented as WIsentropic = (PIsentropic*60)/N or Work done during Isentropic Compression = (Isentropic Power*60)/Speed in RPM. Isentropic power is the power that is theoretically required to compress refrigerants under constant entropy & Speed in RPM is the number of turns of the object divided by time, specified as revolutions per minute (rpm).
How to calculate Isentropic Work done given Isentropic Power for Single-acting Compressor?
The Isentropic Work done given Isentropic Power for Single-acting Compressor formula is defined as the work done on the system during the isentropic compression of refrigerant is calculated using Work done during Isentropic Compression = (Isentropic Power*60)/Speed in RPM. To calculate Isentropic Work done given Isentropic Power for Single-acting Compressor, you need Isentropic Power (PIsentropic) & Speed in RPM (N). With our tool, you need to enter the respective value for Isentropic Power & Speed in RPM 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 Work done during Isentropic Compression?
In this formula, Work done during Isentropic Compression uses Isentropic Power & Speed in RPM. We can use 1 other way(s) to calculate the same, which is/are as follows -
  • Work done during Isentropic Compression = (Isentropic Power*60)/(2*Speed in RPM)
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