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ToggleHeat decides how much load a transformer can carry, and the cooling method decides how fast that heat can escape.
Transformer cooling methods describe how heat moves from the windings to the oil and from the oil to the outside air or water. The four letter code on the nameplate tells you exactly how that happens.

What Are Transformer Cooling Methods?
Transformer cooling methods are the ways a transformer removes the heat produced by its core and winding losses. Every watt lost in the efficiency calculation ends up as heat that must leave the tank.
If that heat is not removed, winding temperature rises and insulation ages quickly. Paper insulation life roughly halves for every few degrees above its design hotspot temperature.

Small dry type units rely on air alone, while most power transformers use mineral oil as both insulation and coolant. The oil carries heat from the windings to radiators, where air or water takes it away.
Many transformers carry two or three ratings on one nameplate, such as ONAN/ONAF. Each rating matches a different cooling stage.
4 Letters of a Cooling Code
So ONAN means oil natural, air natural, with no pumps or fans at all. ONAF means oil natural, air forced, where fans blow across the radiators.
The coding follows IEC 60076 Part 2 and IEEE C57.12.00. Older American nameplates may still show codes such as OA and FA.
6 Common Transformer Cooling Methods
Oil and air both circulate naturally through radiators.
Fans push air across radiators for a higher rating.
Pumps circulate oil and fans cool the heat exchanger.
Oil is directed through winding ducts for better hotspot control.
Oil to water heat exchanger with forced flow.
High fire point ester fluid with natural cooling.
Cooling moves from passive to active as size grows. A small distribution transformer from our kVA rating guide is almost always ONAN.
K class ester fluids have a fire point of at least 300 °C, compared with roughly 160 to 180 °C for mineral oil. That makes KNAN popular for buildings, schools and vaults.
How Cooling Stages Raise the Rating
| Transformer Size | ONAF Stage 1 | ONAF Stage 2 |
|---|---|---|
| Below 2500 kVA | About 15 percent more | Not used |
| 2500 to 10000 kVA | About 25 percent more | Not used |
| Above 10000 kVA | About 33 percent more | About 67 percent more |
These typical increases come from Giga Energy guidance based on IEEE practice. A 10 MVA ONAN unit might therefore carry about 12.5 MVA with fans running.
Fans usually start automatically from the winding or oil temperature indicator. A temperature switch with two set points can switch stage 1 and stage 2 fans in sequence.
Heat Flow Inside an Oil Filled Transformer
This natural loop works because hot oil is lighter than cool oil, and oil has useful thermal conductivity. Radiators are mounted high enough to keep the thermal head strong.
Forced and directed oil methods add pumps to speed up this loop. Directed flow sends oil straight through the winding ducts, lowering the hotspot compared with the average winding temperature.
Transformer Loss and Heat Formula
P0 = no load loss, constant
Pk = load loss at rated power
S = actual load, Sr = rated load
Worked example, 10 MVA ONAN rating:
P0 = 8 kW, Pk = 60 kW
At 10 MVA: 8 + 60 × 1² = 68 kW
At 12.5 MVA with fans: (12.5 ÷ 10)² = 1.5625
Total loss = 8 + 60 × 1.5625 = 101.75 kW
A 25 percent higher load produces about 50 percent more heat. That is why the fan stage must be working whenever the transformer runs above its ONAN rating.
Monitor oil and winding temperatures with suitable sensors. Many utilities fit RTD sensors for remote temperature indication.
Choosing the Right Cooling Class
Check cooling equipment during routine and type tests. The temperature rise test proves each rating on the nameplate.
Remember that fans and pumps are auxiliaries that can fail. Their supply and alarms should be monitored just like the main protection.
Transformer Loss Calculator
Use the test report values for P0 and Pk. Compare the result with what each cooling stage can remove.
- Higher usable rating from the same tank.
- Longer insulation life.
- Safe handling of peak loads.
- Lower risk of hotspot failures.
- Failed fans reduce the rating instantly.
- Blocked radiators trap heat.
- Pumps add maintenance and noise.
- Water coolers risk leaks into oil.
ONAN and ONAF Radiator Brochure
ONAN vs ONAF Video Explanation
Transformer Cooling Methods FAQ
Related Articles
- Transformer Efficiency Calculation
- Transformer Routine and Type Tests
- Transformer kVA Rating Calculation
- Transformer Vector Group Explained
- Protective Relays Explained
External References
- Understanding Transformer Cooling Methods, Giga Energy
- Transformer Cooling System and Methods, Electrical4U
- Guide to Transformer Cooling Classes, Maddox
- T REX ONAN ONAF Radiators, Thermofin
- Transformer Oil, Wikipedia
What We Learn Today
- The four letter code shows internal and external cooling medium and circulation.
- Fan and pump stages raise the rating by removing heat faster.
- Load loss rises with the square of load, so cooling must keep up with peaks.
