How do I measure what my heat pump can actually deliver, rather than trusting the headline capacity?
Our heat pump is quoted at a particular kilowatt output, and that is the number everyone repeats — the installer, the paperwork, the sticker on the unit.
On the coldest days this winter the house did not quite hold temperature, and I want to know whether that is because the unit cannot deliver its rated output in those conditions, because the emitters cannot get the heat into the rooms, or because something is set up wrong.
I have a decent monitoring setup: I can see electrical input, flow and return temperatures, and I can add a flow meter if that is what it takes.
What should I actually be measuring, and against what?
@flow_meter_fiona · 4h ago
The headline number is real but it is quoted at a specific operating point, and neither of the two variables that define that point is the one you care about.
Capacity is a function of outdoor temperature and flow temperature, and it moves a lot. Colder outside means less heat available to pick up, so capacity falls. Hotter flow temperature means a bigger lift for the compressor, so capacity falls again and efficiency falls with it. A unit rated at a mild outdoor temperature and a modest flow temperature can deliver appreciably less at your actual design condition — a cold day with the flow temperature high enough to make your radiators work.
So the number you want is capacity at your design outdoor temperature and your actual flow temperature, and it is in the manufacturer's full technical data rather than the brochure. Look for the capacity tables that vary both axes. The brochure figure and the table figure for your conditions are frequently not close.
Measuring the real thing. Heat output is flow rate multiplied by the temperature difference across the unit, multiplied by the specific heat capacity of the fluid. In practice:
Then the comparison that answers your actual question. Take a genuinely cold period and record: outdoor temperature, flow temperature, measured heat output, electrical input.
On the emitters, because it is the likeliest answer to "the house did not hold temperature": a radiator's output depends on the difference between its surface and the room, so a radiator sized for a high-temperature boiler delivers substantially less at heat pump flow temperatures. The unit can be delivering exactly its rated output into a system that cannot get that heat into the rooms. You would see this as the unit running continuously, hitting its flow target, and the rooms still being cool — and no amount of measuring the heat pump will reveal it. Compare each room's radiator output at your actual flow temperature against that room's heat loss.
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