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Refrigerating Effect is the cooling capacity of a refrigerant in a vapour compression refrigeration cycle, measured in terms of heat energy absorbed from the surroundings. Check FAQs
RE=h1-hf3
RE - Refrigerating Effect?h1 - Enthalpy of The Vapour Refrigerant at T1?hf3 - Sensible Heat at Temperature T3?

Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser Example

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Here is how the Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser equation looks like with Values.

Here is how the Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser equation looks like with Units.

Here is how the Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser equation looks like.

170Edit=260Edit-90Edit
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Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser Solution

Follow our step by step solution on how to calculate Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser?

FIRST Step Consider the formula
RE=h1-hf3
Next Step Substitute values of Variables
RE=260kJ/kg-90kJ/kg
Next Step Convert Units
RE=260000J/kg-90000J/kg
Next Step Prepare to Evaluate
RE=260000-90000
Next Step Evaluate
RE=170000J/kg
LAST Step Convert to Output's Unit
RE=170kJ/kg

Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser Formula Elements

Variables
Refrigerating Effect
Refrigerating Effect is the cooling capacity of a refrigerant in a vapour compression refrigeration cycle, measured in terms of heat energy absorbed from the surroundings.
Symbol: RE
Measurement: Heat of Combustion (per Mass)Unit: kJ/kg
Note: Value can be positive or negative.
Enthalpy of The Vapour Refrigerant at T1
Enthalpy of The Vapour Refrigerant at T1 is the total heat content of the refrigerant vapour at the initial temperature point in a vapour compression refrigeration cycle.
Symbol: h1
Measurement: Heat of Combustion (per Mass)Unit: kJ/kg
Note: Value can be positive or negative.
Sensible Heat at Temperature T3
Sensible Heat at Temperature T3 is the heat energy required to change the temperature of a substance at a specific temperature point T3.
Symbol: hf3
Measurement: Heat of Combustion (per Mass)Unit: kJ/kg
Note: Value can be positive or negative.

Other Formulas to find Refrigerating Effect

​Go Refrigerating Effect(for given h1 and h4)
RE=h1-h4

Other formulas in Enthalpy of Vapour Compression Refrigeration Cycle category

​Go Work done during isentropic compression(per Kg of refrigerant)
w=h2-h1
​Go Coefficient of Performance given enthalpy of liquid refrigerant leaving condenser (hf3)
COPth=h1-hf3h2-h1
​Go Entropy at point 1
s1=sf1+(x1hfgT1)
​Go Enthalpy at point 1 given Liquid enthalpy at point 1
h1=hf1+x1hfg

How to Evaluate Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser?

Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser evaluator uses Refrigerating Effect = Enthalpy of The Vapour Refrigerant at T1-Sensible Heat at Temperature T3 to evaluate the Refrigerating Effect, Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser formula is defined as the measure of the cooling effect produced by a refrigeration system, which is a critical parameter in evaluating the performance of a refrigeration cycle in various industrial and commercial applications. Refrigerating Effect is denoted by RE symbol.

How to evaluate Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser using this online evaluator? To use this online evaluator for Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser, enter Enthalpy of The Vapour Refrigerant at T1 (h1) & Sensible Heat at Temperature T3 (hf3) and hit the calculate button.

FAQs on Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser

What is the formula to find Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser?
The formula of Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser is expressed as Refrigerating Effect = Enthalpy of The Vapour Refrigerant at T1-Sensible Heat at Temperature T3. Here is an example- 0.17 = 260000-90000.
How to calculate Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser?
With Enthalpy of The Vapour Refrigerant at T1 (h1) & Sensible Heat at Temperature T3 (hf3) we can find Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser using the formula - Refrigerating Effect = Enthalpy of The Vapour Refrigerant at T1-Sensible Heat at Temperature T3.
What are the other ways to Calculate Refrigerating Effect?
Here are the different ways to Calculate Refrigerating Effect-
  • Refrigerating Effect=Enthalpy of The Vapour Refrigerant at T1-Enthalpy of The Vapour Refrigerant at T4OpenImg
Can the Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser be negative?
Yes, the Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser, measured in Heat of Combustion (per Mass) can be negative.
Which unit is used to measure Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser?
Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser is usually measured using the Kilojoule per Kilogram[kJ/kg] for Heat of Combustion (per Mass). Joule per Kilogram[kJ/kg], Calorie (IT) per Gram[kJ/kg] are the few other units in which Refrigerating Effect given Enthalpy at Inlet of Compressor and Exit of Condenser can be measured.
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