Paritian

Heat & Fluids

Stefan-Boltzmann Radiation Calculator

Heat radiated by a hot surface, the net loss to its surroundings and the wavelength it peaks at.

Results

Power 18,235.15 W
Power 17,858.26 W
Heat flux 18,235.15 W/m²
Wavelength 3.7480 µm

What this tool does

Radiated power goes with the fourth power of absolute temperature, so doubling the temperature multiplies the heat by sixteen — which is why radiation dominates above a few hundred degrees and can be ignored below room temperature. Emissivity is close to 0.95 for paint, brick and skin, but as low as 0.05 for polished metal, which is exactly why insulation is shiny.

Formula

P = ε × σ × A × T⁴ (σ = 5,670 374 419 × 10⁻⁸ W/m²K⁴)

Variables

SymbolMeaningUnit
tTemperature°C
aArea
emEmissivity
taSurrounding temperature°C
PPowerW
PNPowerW
PAHeat fluxW/m²
WLWavelengthµm

Worked example

  • Temperature500 °C
  • Area1 m²
  • Emissivity0.9
  • Surrounding temperature20 °C
  • Power18,235.15 W
  • Power17,858.26 W
  • Heat flux18,235.15 W/m²
  • Wavelength3.7480 µm

Limitations

  • The formula assumes ideal conditions: no friction losses, no air resistance and no efficiency losses unless you enter them.
  • Temperatures below absolute zero (−273.15 °C) do not exist physically. The converter will still show the arithmetic result.
  • The default values are typical reference figures, not measurements of your situation. Replace them with your own data whenever you have it.