
Guide · Furnace energy
Specific energy consumption in a smelting furnace: what it is and what moves it.
Energy is the largest controllable cost in a submerged-arc furnace, yet many plants see specific energy only when the monthly power bill arrives.

Energy is the largest controllable cost in a submerged-arc furnace, yet many plants see specific energy only when the monthly power bill arrives.
Specific energy consumption (SEC) is the electrical energy used per tonne of product, usually in kWh per tonne of metal or alloy tapped. It is the single number that connects the power bill to the furnace’s operation.
| Driver | How it affects energy |
|---|---|
| Charge chemistry | Ore grade and gangue change how much slag must be melted per tonne of metal |
| Reductant ratio | Too little leaves oxides unreduced; too much changes resistance and wastes carbon |
| Slag basicity | Changes slag melting behaviour, viscosity and how much metal is lost to slag |
| Electrode position and condition | Changes where heat is released in the burden |
| Burden size and moisture | Affects gas flow and the energy spent drying and heating the charge |
| Tapping practice | Irregular taps change bath level and heat balance |
| Downtime and restarts | Energy spent reheating without producing |
See mass and energy balance for a smelting furnace.
Furnace Twin is a physics model of your furnace (mass and energy balance, slag chemistry, reduction kinetics, an electrical model and furnace zones) calibrated on your heat history and re-calibrated as new heats arrive. It estimates energy, grade and recovery every heat and flags drift with its likely cause, such as basicity, reductant or electrodes. A scenario engine compares reductant, basicity, temperature and feed changes side by side so only the best goes to a short trial on the real furnace. Anyone on shift can ask questions in plain language and get answers that cite records, model runs and literature, and shift handover can be captured by voice in Hindi or English. Every model version is evaluated and logged. Delivery runs baseline, calibrate, then operate, starting with one furnace.
The electrical energy used per tonne of product, usually kWh per tonne of metal or alloy tapped.
Changes in charge chemistry, reductant ratio, slag basicity, electrode condition and position, burden size and moisture, irregular tapping and downtime.
Per heat. Monthly tracking arrives too late to link an overrun to its cause.
See it on your own data. Furnace Twin — Ask the furnace, see the proof. Book a 30-minute working session with an engineer.