Paritian

Construction & DIY

Radiator Output Calculator

The real heat output of a radiator at your actual flow and return temperatures, against its catalogue rating.

Results

Actual output 1122.3 W
Temperature difference 40.00 K
Share of rated output 74.82 %
Output lost 377.7 W

What this tool does

Radiator catalogues quote output at delta T 50, meaning a mean water temperature fifty degrees above the room. Very few systems run that hot, and a heat pump certainly does not. Drop the mean water temperature from 70 to 45 °C and a radiator gives back barely half its rated output — which is precisely why replacing a boiler with a heat pump so often means replacing radiators too.

Formula

Q = Qn (dT / 50)^1.3 ; dT = (one way + return)/2 - temperature ambient

Variables

SymbolMeaningUnit
qnCatalogue output at delta T 50W
tfFlow temperature°C
trReturn temperature°C
taRoom temperature°C
exRadiator exponent
QQActual outputW
DTTemperature differenceK
PCShare of rated output%
LOOutput lostW

Worked example

  • Catalogue output at delta T 501500 W
  • Flow temperature65 °C
  • Return temperature55 °C
  • Room temperature20 °C
  • Radiator exponent1.3
  • Actual output1122.3 W
  • Temperature difference40.00 K
  • Share of rated output74.82 %
  • Output lost377.7 W

Limitations

  • Coverage and consumption figures vary between products. Take the values from the manufacturer's datasheet for the product you are actually using.
  • The result is an estimate based only on the values you type. Real situations often include factors this calculator does not know about.
  • For work that must comply with a standard or be signed off, check the result against the applicable code and have it reviewed by a qualified engineer.

Frequently asked questions

Why is the exponent 1.3?

Because a radiator does not transfer heat in proportion to its temperature difference: part of the output is natural convection, which strengthens more than linearly as the surface gets hotter, and part is radiation, which follows a fourth-power law. The combined behaviour is fitted with a single exponent, and manufacturers publish it with the rated output. Panel radiators are usually around 1.3, while fan-assisted emitters are closer to 1.0.