This guide contains Amazon links. As an Amazon Associate, Backyard Pool Tips earns from qualifying purchases — see our affiliate disclosure. Recommendations are based on suitability and running cost, not commission.
Heat pump vs gas heater: the real trade-off
This is the single biggest decision in pool heating, and most buying guides gloss over exactly what you're trading away with each choice. Both raise pool temperature — how they do it, what they cost to run, and what they're actually good at are genuinely different.
- Heat pumps
- Pull heat from the surrounding air (like a reverse air conditioner) and transfer it into the water. Much cheaper to run per degree of heating, but slow — typically 1–3°F per day — and effectiveness drops sharply below around 50°F ambient air temperature, becoming essentially non-functional below 45°F.
- Gas heaters
- Burn propane or natural gas to heat water directly and fast, regardless of air temperature. Can raise a pool several degrees in hours rather than days, but running cost per hour is substantially higher than a heat pump doing the equivalent job.
The practical upshot: a heat pump suits an owner maintaining a consistent swim temperature across a full season, run continuously and left to do its slow, efficient job. A gas heater suits an owner who wants the pool ready on demand — heating it up for a weekend, an event, or unpredictable use — where running cost matters less than speed. Some owners with the budget for it run both: a heat pump for baseline temperature maintenance, gas for a fast boost when needed.
What running each one actually costs
Exact numbers vary heavily by local electricity/gas pricing, pool size, climate, and how consistently the pool is used — but the relative gap between the two technologies is consistent enough to plan around.
- Heat pump running cost
- Typically $50–150 a month to maintain a consistent swim temperature through a moderate-climate season, for an average residential pool with reasonable coverage/shade. Inverter models (which modulate output rather than running full-blast or off) run noticeably more efficiently than older single-speed heat pumps.
- Gas heater running cost
- Often 3–5 times higher than an equivalent heat pump for the same heating job, since it's converting a more expensive energy source directly to heat rather than moving already-present ambient heat. A gas heater run continuously all season, rather than used for occasional fast boosts, gets expensive quickly.
- What actually moves the number most
- A pool cover, used consistently. Evaporation is the single largest source of heat loss from an uncovered pool — a solar or thermal cover cuts that loss dramatically and is the cheapest, highest-impact addition to any heating setup. See our pool covers guide for options.
Sizing a heater correctly
Undersizing is the most common heater-buying mistake we see — an undersized unit runs constantly, struggles to hold target temperature against wind and evaporation, and shortens its own working life from the extra strain. Sizing depends on pool volume, climate, wind exposure, and desired temperature rise, but as a rough baseline for heat pumps:
- Mild climate, well-sheltered pool
- Roughly 3,500 BTU per 1,000 gallons is often sufficient.
- Cooler climate or exposed, windy location
- Budget closer to 5,000+ BTU per 1,000 gallons to hold temperature reliably against faster heat loss.
- Gas heaters
- Sized differently — around 100,000–400,000 BTU depending on pool size and how fast you want it to heat, since gas heaters are generally chosen specifically for speed rather than efficient continuous maintenance.
When in doubt, size up rather than down — an oversized heat pump costs a little more upfront but runs less continuously and lasts longer; an undersized one never fully catches up on cooler days.
Understanding efficiency ratings
Heat pump efficiency is usually expressed as COP (coefficient of performance) — the ratio of heat output to electricity consumed. A COP of 5 means the unit delivers roughly 5 units of heat energy for every 1 unit of electrical energy it uses, since it's moving existing ambient heat rather than generating heat directly the way a gas heater or electric resistance heater does. Most modern residential heat pumps sit somewhere between COP 4 and COP 7 depending on model, ambient temperature, and water temperature differential — the number is genuinely useful for comparing two heat pumps of similar output, since a higher COP model will cost less to run for the same heating job. Gas heaters don't use COP; their efficiency is usually expressed as a percentage (how much of the fuel's energy converts to usable heat), typically 80–95% for a modern unit, but this doesn't change the underlying cost gap versus a heat pump, since gas itself is a more expensive energy source per unit of heat than the ambient air a heat pump draws from for free.
COP drops as ambient air temperature drops, which is the underlying reason heat pumps lose effectiveness in cold weather — there's simply less ambient heat available to extract. A published COP figure is normally measured at a specific reference air and water temperature, so real-world performance on a cooler day will be lower than the headline number suggests. This is worth keeping in mind when comparing published specs between models, rather than assuming the number applies unchanged across every condition.
Warranty and expected lifespan
A well-maintained heat pump typically lasts 8–12 years, and a gas heater somewhat less on average given the more demanding combustion environment — though both figures vary a lot based on climate, water chemistry (especially for salt pools without a titanium exchanger), and how consistently the unit is run within its rated capacity. Most heat pumps carry a compressor warranty in the 5–10 year range separate from a shorter warranty on the rest of the unit — check both figures rather than assuming the longer compressor warranty covers everything. Registering the warranty promptly after installation and keeping installation/service records is worth doing, since warranty claims on major components can require proof of professional installation and regular maintenance.
Other factors that matter
Titanium heat exchanger
Standard on most modern heat pumps and worth insisting on for a salt pool specifically — titanium resists the corrosive effect of salt far better than older copper or cupronickel exchangers, which can fail prematurely in a salt system.
Inverter vs single-speed compressor
Inverter heat pumps modulate their output to match demand rather than cycling fully on and off, which improves both efficiency and how consistently they hold temperature. Worth the modest price premium over older single-speed technology for most owners running a heat pump as a season-long fixture rather than occasional use.
WiFi and app control
Genuinely useful rather than just a gimmick for a heat pump specifically, since scheduling it to start ahead of a warm stretch or checking status remotely fits how these units are actually used — set-and-monitor over days, not switched on and off per swim.
Noise level
Heat pumps run more or less continuously during active heating, so decibel rating matters more here than for equipment used briefly — worth checking if the unit will sit near a bedroom window or a neighboring property line.
Installation considerations that affect the buying decision
- Electrical supply
- Most residential heat pumps need a dedicated 220–240V circuit, and larger units draw enough current that an electrician needs to confirm your panel has capacity before installation — factor this into total project cost, not just the unit price.
- Placement and airflow clearance
- Heat pumps need open airflow on at least three sides to work efficiently — boxing one into a tight enclosure or against a wall on multiple sides reduces performance and can trip the unit's own safety cutoffs. Manufacturers publish minimum clearance specs; leave more room than the bare minimum if space allows.
- Gas line or propane supply
- A gas heater needs either an existing natural gas line sized correctly for its BTU draw, or a propane tank and regulator sized appropriately — undersized gas supply is a common cause of a gas heater underperforming its rated output, and it's a licensed-installer job, not a DIY one.
- Bypass valve plumbing
- Both heat pumps and gas heaters are typically installed with a bypass valve so water flow through the heater can be adjusted independently of total pump flow — this protects the heater from excessive flow rates and is worth confirming is part of the installation, not an optional extra.
Most owners buying a heater have it professionally installed rather than DIY, given the electrical and plumbing work involved — factor installation cost into the total budget, which can add several hundred dollars on top of the unit price depending on how much existing infrastructure (gas line, electrical circuit, plumbing) is already in place.
Mistakes that waste money on heating
Running a heat pump without a cover
Heating an uncovered pool with a heat pump means fighting evaporation constantly — a large share of the heat the unit adds overnight can be lost to evaporation by morning. A cover isn't optional if minimizing heat pump running cost actually matters to you.
Undersizing to save on upfront cost
A heat pump sized too small for the pool runs constantly, struggles to hold temperature on cooler or windier days, and works harder over its lifespan — often costing more in wasted running time and shortened equipment life than the upfront saving from buying a smaller unit.
Expecting a heat pump to heat fast for a same-day event
Heat pumps are built for slow, continuous maintenance of a set temperature, not fast heating — expecting one to raise pool temperature significantly in a few hours before a weekend gathering is a common source of disappointment. A gas heater, or starting the heat pump days in advance, are the actual solutions.
Skipping the titanium heat exchanger on a salt pool
Non-titanium heat exchangers corrode meaningfully faster in a salt pool's chemistry, sometimes failing within a couple of seasons. The modest cost difference for a titanium exchanger is worth it for any salt pool owner, and most current heat pump models include it as standard — worth double-checking on any older or unusually cheap listing.
Buying advice by climate
- Hot, consistently warm climate
- A heat pump alone is usually all you need — ambient air rarely drops low enough to meaningfully hurt efficiency, and the low running cost lets you maintain a comfortable temperature essentially year-round without a large ongoing bill.
- Mild climate with a defined swim season
- A heat pump extends the usable swim season on both ends (spring and fall) at reasonable running cost, without needing gas backup for most owners — this is the most common scenario where a heat pump alone covers the whole need well.
- Cold climate or short swim season
- A heat pump's effectiveness drops sharply below 50°F ambient and stops working below around 45°F, meaning it can't extend the season into genuinely cold shoulder months on its own — a gas heater, used for shoulder-season boosts specifically, fills that gap where a heat pump alone can't.
- Unpredictable or occasional-use pool
- If the pool sits unheated most of the time and gets heated for specific occasions rather than maintained continuously, a gas heater's fast heat-up time suits that pattern better than a heat pump, which is built for slow, continuous maintenance rather than heating on demand.
Five heaters worth considering
Spanning efficient heat pumps for season-long maintenance through to a fast gas option for on-demand heating.
FibroPool FH255 Electric Pool Heat Pump
Heat pump · 55,000 BTU · FibroPool
Strengths
- Strong output-to-price ratio for inground pools up to around 10,000 gallons
- Also suits larger above-ground pools, giving it flexibility across pool types
Trade-offs
- Single-speed compressor rather than inverter — less efficient than premium inverter models
Best for: a straightforward, well-priced heat pump for a mid-size inground pool.
Check current price on Amazon →AQUASTRONG 80,000 BTU Inverter Pool Heat Pump
Heat pump · Inverter · AQUASTRONG
Strengths
- High output suits larger pools and frequent swimmers wanting consistent temperature
- Inverter compressor runs more efficiently than single-speed units
Trade-offs
- More heater than a smaller pool needs — sizing down saves money if volume doesn't call for it
Best for: larger pools in warm climates run at consistent temperature through a long swim season.
Check current price on Amazon →TURBRO Beluga Series 50,000 BTU Inverter Heat Pump
Heat pump · Inverter · TURBRO
Strengths
- Inverter technology gives strong efficiency for a mid-priced unit
- Titanium heat exchanger suits salt pools
Trade-offs
- Newer brand in the market than Pentair or Hayward — shorter track record
Best for: owners wanting inverter efficiency without paying premium-brand pricing.
Check current price on Amazon →FibroPool FH122 Electric Pool Heat Pump
Heat pump · FibroPool
Strengths
- Lower price and smaller footprint suit above-ground and smaller inground pools
- Same brand reliability as the larger FH255 at a lower entry cost
Trade-offs
- Not enough output for a larger inground pool — check volume before buying
Best for: above-ground pools or smaller inground pools on a tighter budget.
Check current price on Amazon →Pentair MasterTemp 400 Gas Pool Heater
Gas heater · 400,000 BTU · Pentair
Strengths
- Heats fast regardless of air temperature, unlike any heat pump
- Established, widely serviced brand with easy-to-source parts
Trade-offs
- Meaningfully higher running cost than a heat pump for continuous use
- Requires a gas line or propane supply, adding install complexity
Best for: occasional or on-demand heating, cold-climate quick boosts, or pairing with a heat pump for baseline-plus-boost heating.
Check current price on Amazon →Our verdict by scenario
- Mid-size inground pool, best value
- The FibroPool FH255 covers most residential inground pools well without overpaying.
- Large pool, warm climate, frequent use
- The AQUASTRONG 80,000 BTU inverter unit has the output and efficiency for consistent season-long running.
- Salt pool, mid-size, want inverter efficiency
- The TURBRO Beluga's titanium exchanger and inverter compressor suit salt systems well.
- Above-ground or smaller pool, tight budget
- The FibroPool FH122 is sized and priced appropriately without overbuying capacity.
- Want the pool ready fast, cost is secondary
- The Pentair MasterTemp 400 gas heater is built for exactly that job.
Common questions
Should I get a heat pump or a gas heater?
A heat pump is cheaper to run and better for maintaining temperature over a full swim season, but it heats slowly and stops working effectively below around 45–50°F ambient air temperature. A gas heater heats fast regardless of air temperature but costs significantly more to run continuously — most owners who want a pool ready on demand for occasional use lean gas, while owners maintaining consistent temperature all season lean heat pump.
How long does a heat pump take to actually heat a pool?
Roughly 1–3°F per day for a correctly sized heat pump on an average residential pool, meaning raising temperature 10°F can take several days to a week. This is why heat pumps are built for maintaining a set temperature continuously rather than heating on demand right before swimming.
What size heat pump do I need for my pool?
As a rough baseline, budget around 3,500–4,500 BTU per 1,000 gallons of pool water for moderate climates, more for consistently cooler climates or pools that need to hold temperature against wind and shade. Undersizing is the most common mistake — an undersized unit runs constantly and still struggles to hold target temperature.
Does a pool cover actually make a heater more worthwhile?
Significantly — evaporation is the single biggest source of heat loss from an uncovered pool, so a solar or thermal cover used consistently alongside a heater cuts running cost noticeably and helps the heater actually hold temperature overnight rather than losing most of the day's gain.