Work done by Compressor given Load on Condenser Formula

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Compressor work done is the work done by the compressor. Check FAQs
W=QC-RE
W - Compressor Work Done?QC - Load on Condenser?RE - Refrigeration Capacity?

Work done by Compressor given Load on Condenser Example

With values
With units
Only example

Here is how the Work done by Compressor given Load on Condenser equation looks like with Values.

Here is how the Work done by Compressor given Load on Condenser equation looks like with Units.

Here is how the Work done by Compressor given Load on Condenser equation looks like.

600Edit=1600Edit-1000Edit
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Work done by Compressor given Load on Condenser Solution

Follow our step by step solution on how to calculate Work done by Compressor given Load on Condenser?

FIRST Step Consider the formula
W=QC-RE
Next Step Substitute values of Variables
W=1600J/min-1000J/min
Next Step Convert Units
W=26.6667J/s-16.6667J/s
Next Step Prepare to Evaluate
W=26.6667-16.6667
Next Step Evaluate
W=10J/s
LAST Step Convert to Output's Unit
W=600J/min

Work done by Compressor given Load on Condenser Formula Elements

Variables
Compressor Work Done
Compressor work done is the work done by the compressor.
Symbol: W
Measurement: Rate of Heat TransferUnit: J/min
Note: Value can be positive or negative.
Load on Condenser
The Load on condenser is the amount of heat that must be removed from the inlet stream to attain the specified removal efficiency.
Symbol: QC
Measurement: Rate of Heat TransferUnit: J/min
Note: Value can be positive or negative.
Refrigeration Capacity
Refrigeration capacity is a measure of the effective cooling capacity of a refrigerator.
Symbol: RE
Measurement: Rate of Heat TransferUnit: J/min
Note: Value can be positive or negative.

Other formulas in Heat Transfer category

​Go Heat Rejection Factor
HRF=RE+WRE
​Go Heat Rejection Factor given COP
HRF=1+(1COPr)
​Go Load on Condenser
QC=RE+W
​Go Refrigeration Capacity given Load on Condenser
RE=QC-W

How to Evaluate Work done by Compressor given Load on Condenser?

Work done by Compressor given Load on Condenser evaluator uses Compressor Work Done = Load on Condenser-Refrigeration Capacity to evaluate the Compressor Work Done, Work done by Compressor given Load on Condenser formula is defined as the energy transferred to the refrigerant in the condenser during a refrigeration cycle, which is a critical parameter in evaluating the performance of a vapor compression refrigeration system. Compressor Work Done is denoted by W symbol.

How to evaluate Work done by Compressor given Load on Condenser using this online evaluator? To use this online evaluator for Work done by Compressor given Load on Condenser, enter Load on Condenser (QC) & Refrigeration Capacity (RE) and hit the calculate button.

FAQs on Work done by Compressor given Load on Condenser

What is the formula to find Work done by Compressor given Load on Condenser?
The formula of Work done by Compressor given Load on Condenser is expressed as Compressor Work Done = Load on Condenser-Refrigeration Capacity. Here is an example- 36000 = 26.6666666666667-16.6666666666667.
How to calculate Work done by Compressor given Load on Condenser?
With Load on Condenser (QC) & Refrigeration Capacity (RE) we can find Work done by Compressor given Load on Condenser using the formula - Compressor Work Done = Load on Condenser-Refrigeration Capacity.
Can the Work done by Compressor given Load on Condenser be negative?
Yes, the Work done by Compressor given Load on Condenser, measured in Rate of Heat Transfer can be negative.
Which unit is used to measure Work done by Compressor given Load on Condenser?
Work done by Compressor given Load on Condenser is usually measured using the Joule per Minute[J/min] for Rate of Heat Transfer. Joule per Second[J/min], Megajoule per Second[J/min], Kilojoule per Second[J/min] are the few other units in which Work done by Compressor given Load on Condenser can be measured.
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