Distribution Transformer Sizing for Buildings
Undersize the transformer and it runs hot and limits expansion; oversize it and you pay for iron losses and a larger protective scheme forever. Here is the sizing method.
From demand load to kVA
Take the total demand load from the load schedule (after PEC demand factors), not the connected load. Convert to apparent power:
Use the measured or specified power factor โ 0.85 is a common design assumption for mixed commercial load.
Add a load-growth allowance
Transformers last 25โ30 years. Add 20โ25% for future load unless the client specifies otherwise:
Select a standard rating
Pick the next standard size at or above Srequired: 25, 50, 75, 100, 112.5, 150, 167, 200, 250, 300, 400, 500, 750, 1000 kVA. Example: a 315 kW demand at 0.85 PF is 371 kVA; with growth, 463 kVA → select 500 kVA.
Loading check
Target 60โ80% at initial occupancy. Below 40% is wasteful; above 90% leaves no margin for imbalance or harmonics.
Specify for the BOQ
- Primary / secondary voltage (e.g. 13.8 kV / 400โ230 V)
- Vector group (Dyn11 is typical for distribution)
- Impedance (~4โ6%; lower impedance means higher fault current downstream)
- Cooling / type โ oil-immersed (ONAN) or cast-resin dry type for indoor vaults
- Taps โ off-circuit ±2 × 2.5%
These affect the price materially and feed the downstream fault-current and protection design.
EngEst Pro sizes the transformer from your electrical load schedule โ it converts demand load to kVA at your specified power factor, applies the growth allowance, snaps to the next standard rating, and adds the transformer plus primary and secondary protection to the BOM.
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