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Generator size for 7000 running watts with a none HP motor on natural gas

Generator size
12,000watts
7,000 W running on natural gas at 2,000 ft
Three numbers, not one7,000 Wrunningeverything on7,000 Wstarting surgelargest motor12,000 Wgeneratorrated sizeOnly the largest motor’s surge is counted — adding them all doubles the machine
Running wattseverything on at once7,000W
Starting surgeno motor load entered7,000W
After the 80% rulea generator should not run continuously above 80% of its rating8,750W
Natural gas deratenever runs out, but about 20% less output and needs a gas line−20%
Altitude derate2,000 ft at 3% per 1,000 ft−6%
Rated size needed11,636W
Nearest size sold3% headroom left12,000W
Running watts
7000 W
Largest motor
none HP
Fuel
natural gas
Altitude
2000 ft

Read this before the numbers

Carbon monoxide kills people every storm season. Outdoors only, at least 20 feet from any door, window or vent, exhaust pointed away from the house. Not in a garage, not even with the door open. Fit CO alarms indoors and treat a headache during an outage as CO until proven otherwise.

Never back-feed. Plugging a generator into a wall socket energises the utility line outside and can kill a lineman restoring your power. A transfer switch or interlock kit is the only correct connection, and it is an electrician's job.

Two numbers, not one

7,000 W running — everything on at once. 7,000 W starting — the running load plus the inrush of the single largest motor.

Only one motor's surge is counted, and that is deliberate. A motor draws about three times its running watts for a second or two on start; adding every motor's surge together, which is what most sizing tables do, buys a generator twice the size you need.

Then the derates

The 80% rule first: a generator should not run continuously above 80% of its rating, because heat is what ends them. Then fuel — natural gas costs 20% of output against gasoline on the same engine. Then altitude, about 3% per 1,000 ft.

That comes to 11,636 W of rated capacity, so the size to buy is 12,000 W, leaving 3% headroom.

Inverter or conventional

Inverter generators are quieter, produce clean power for electronics, and throttle down under light load. They cost more per watt and top out lower. For a fridge, a furnace fan and lights, an inverter unit is usually the better buy. For a well pump and central air, it usually is not.

Fuel choice is a storage decision

Gasoline makes the most power and stores the worst — it needs stabilizer and rotation. Propane stores indefinitely and costs about 10% of output. Natural gas never runs out but costs 20% and needs a gas line. Diesel lasts longest and starts worst in cold.

Notes

  • **Carbon monoxide kills people every storm season.** Run it outdoors only, at least 20 feet from any door, window or vent, with the exhaust pointed away from the house. Not in a garage — not even with the door open. Fit CO alarms indoors, and treat a headache during a power cut as CO until proven otherwise.
  • **Never back-feed.** Plugging a generator into a wall socket to power the house energises the utility line outside and can kill a lineman working to restore your power. It is illegal almost everywhere for that reason. A transfer switch or an interlock kit is the only correct connection, and it is an electrician's job.
  • No motor load entered. If a well pump, air conditioner, compressor or refrigerator will be on this generator, add it — a motor's starting surge is about three times its running watts, and it is what actually decides the size.
  • Natural gas: never runs out, but about 20% less output and needs a gas line. The 20% derate is real — the same engine makes less power on this fuel, and it is already in the number above.
  • The 80% rule is not caution. A generator held at its nameplate rating runs hot, and heat is what ends them. Sizing to 8,750 W of rated capacity for 7,000 W of load is what the machine is designed around.
  • Inverter generators change the arithmetic. They are quieter, produce clean power for electronics, and throttle down under light load — but they cost more per watt and top out lower. For a fridge, a furnace fan and some lights, an inverter unit is usually the better buy; for a well pump and central air, it usually is not.

Nearby sizes

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