Pipe Insulation Heat Loss Calculator

Energy

Pipe Insulation Heat Loss Calculator

Calculate heat loss through insulated piping from pipe diameter, insulation thickness, thermal conductivity and temperature difference.

Use thermal conductivity at a representative mean insulation temperature where available.
Editable combined external coefficient assumption. Actual value depends on air movement, orientation and radiation effects.
Optional. Leave blank if you only need heat-loss rate.
Optional cost per kWh of supplied heat or energy.
Pipe Heat Loss
Estimated heat loss per metre of insulated pipe.
Heat loss per metre
Total heat loss
Annual energy loss
Annual energy cost
Outer insulation diameter
Insulation resistance
External resistance
Temperature difference
Method: Heat loss through cylindrical insulation is estimated using thermal resistance. Insulation conduction resistance is: Rins = ln(r₂ / r₁) ÷ (2πkL) External heat-transfer resistance is: Rext = 1 ÷ (h × 2πr₂L) Total heat loss is: Q = (Tpipe − Tambient) ÷ (Rins + Rext) where: r₁ = pipe outside radius r₂ = outer insulation radius k = insulation thermal conductivity h = external heat-transfer coefficient L = pipe length Heat loss per metre is calculated using the same equations for a one-metre pipe length. If operating hours are entered: Energy Loss = Heat Loss × Operating Hours If energy cost is also entered: Annual Cost = Energy Loss × Energy Cost This is a simplified steady-state model. It assumes one uniform insulation layer, constant thermal conductivity, uniform pipe surface temperature and a single external heat-transfer coefficient. Radiation is not calculated separately. If the entered external coefficient is intended to represent combined convection and radiation, it should be selected accordingly. Real installations can differ because of insulation joints, supports, valves, flanges, weather cladding, wind, moisture ingress, surface emissivity, thermal bridges and temperature-dependent insulation properties.