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By Force Solar Engineering Team · Published 1 October 2026 · Updated 6 October 2026

ENGINEERING

Sizing Solar for Cold Storage Loads

Cold storage is one of the most demanding loads we size for — compressor starts, thermal risk and backup hours change the whole design.

Cold storage facility interior served by a solar power system in Mangaldan, Philippines

Short answer

Cold storage solar is sized from the compressor list first, not from the monthly bill. Simultaneous compressor starting current sets the inverter and battery power rating (kW); the backup-hours target — 2 hours, 4 hours or overnight — sets the battery energy (kWh). Thermal mass buys coasting time, but only as much as the insulation, door traffic and how full the room is will allow.

Cold storage facilities look simple on a bill: a steady block of refrigeration load, day and night. In engineering terms they are anything but simple. Compressors start with a surge several times their running power, the product inside the room carries real financial value, and an outage at the wrong hour can cost more than a year of electricity savings.

Recent cold storage projects in the Philippines — a 300 kW system in Isabela and an installation in Mangaldan — show how the sizing logic changes when refrigeration is the load.

The load profile comes first

A monthly kWh figure hides everything that matters. What we ask for instead: the number and rating of compressors, their start sequence, defrost cycles, door traffic patterns and the facility’s operating hours. Interval data from the utility meter is even better.

Compressor starting current is the first constraint. The inverter and, if present, the battery system must ride through simultaneous starts without tripping — this sets the power (kW) side of the design before energy (kWh) is discussed.

Rooftop solar array installed for a cold storage facility in Isabela, Philippines
Rooftop solar array installed for a cold storage facility in Isabela, Philippines
What a cold storage sizing needs
InputWhy it mattersWhat it sets
Compressor list: number, rating, start sequenceStarting surge is several times running powerInverter and battery power rating (kW)
Defrost cycles, door traffic, operating hoursExplains load spikes the monthly bill hidesRealistic load profile for the design
Utility interval data (if available)Shows when the load actually runsDaytime self-consumption share
Backup hours targetA business decision about product riskBattery energy: critical load × hours
Cost of an outage per hourPuts a price on continuityHow much storage is justified

Targets are project inputs, not fixed values — every system is sized against its own load data.

Backup hours are a business decision

A cold room coasts for a while thanks to thermal mass, but how long it can coast depends on insulation, door openings and how full the room is. The backup target — 2 hours, 4 hours, overnight — is a business decision about product risk, and it directly sets battery capacity.

In practice, most cold storage projects we size land on a hybrid architecture: solar offsets the heavy daytime refrigeration load, the battery carries compressor starts and outage cover, and the grid or a generator remains the last resort.

What to send for a sizing

For a cold storage proposal, the useful starting package is: 12 months of electricity bills, a compressor list with ratings, the facility’s operating schedule, and a statement of what an outage costs per hour. With those four items, a meaningful configuration can be prepared quickly.

Photographs from Force Solar installation records. Figures describe the referenced project configuration; every new system is sized against its own load data.

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Frequently asked questions

Why not size cold storage solar from the monthly bill?

A monthly kWh figure hides everything that matters: compressor starting surge, defrost cycles, door traffic and operating hours. The compressor list comes first, not the bill.

What sets the kW rating on a cold storage system?

Compressor starting current. The inverter and, if present, the battery must ride through simultaneous starts without tripping. That sets the power side of the design before energy is discussed.

What sets the kWh rating?

The backup-hours target: critical load multiplied by hours of cover. Two hours, four hours or overnight are three very different batteries, and the choice is a business decision about product risk.

What information is needed for a cold storage sizing?

The number and rating of compressors and their start sequence, defrost cycles, door traffic patterns and operating hours, plus a backup-hours target. Utility interval data is better still because it shows when the load actually runs.

Does thermal mass reduce the battery needed?

It buys coasting time, but only as much as the insulation, door traffic and how full the room is will allow. It is a buffer, not a substitute for storage sized against the critical load.

Does the cost of an outage change the design?

Yes. Putting a price on one hour of outage is what shows how much storage is justified. Facilities that quote an outage cost per hour get a better-sized bank than those that only quote an annual kWh figure.

Sizing a similar system?

Send the load details, outage pattern and destination — we will respond with the engineering inputs needed for a proposal.

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