Well Pump Sizing Chart

Quick-reference HP and GPM by well depth and bathroom count — and when to size past the table

The well pump sizing calculator computes total dynamic head (TDH) from well depth, fixture lift, pipe friction, and pressure, then picks HP from a curve. That is the right way. This page is the quick chart: HP class and approximate GPM by well depth and bathroom count, assuming typical residential conditions (1 in pipe, 120 ft run, 40/60 pressure, 15 ft fixture lift). Use the chart to get in the ballpark, then confirm with the calculator if your install has long pipe runs, high pressure, or unusual lift.

How TDH, GPM, and HP translate: sizing guide. Submersible vs jet pump: comparison. Low pressure, short-cycling: troubleshooting. Plumbing index: plumbing calculators hub.

Starting point only — not a pump curve. This chart uses typical residential assumptions: 1 in supply pipe, 120 ft length, 40/60 PSI pressure switch, 15 ft additional lift to second floor. If your install differs (long run, high pressure, 3/4 in pipe, single-story), the calculator is the tool. Horsepower classes are catalog-order bands, not named models. Confirm the published curve at your actual TDH.

Need exact HP for your well?Depth, lift, GPM, pipe, pressure. Computed TDH and HP.

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Well Pump HP and GPM by Depth and Bathroom Count

This table shows recommended HP class and approximate available GPM for common residential well depths and bathroom counts. GPM demand: 1–2 baths = 8 GPM, 3–4 baths = 12 GPM, 5+ baths = 18 GPM. TDH = well depth + 15 ft fixture lift + ~4 ft friction (1 in × 120 ft at mid-range flow) + 138.6 ft pressure head (60 PSI cut-out). HP is the smallest typical band that covers demand at that TDH. Tank size from 40/60 switch drawdown factor and 1-minute buffer.

Well Depth (ft)1–2 Bathrooms (8 GPM)3–4 Bathrooms (12 GPM)5+ Bathrooms (18 GPM)
HP~GPMTankHP~GPMTankHP~GPMTank
20 ft1/210323/4134411862
50 ft1/29323/4134411862
100 ft3/49323/4124411662
150 ft3/4932113441.51862
200 ft110321.515441.5+1862
250 ft1.512441.51562Above 1.5——
300 ft1.59321.51244Above 1.5——

HP is horsepower class (1/2, 3/4, 1, 1.5). ~GPM is approximate pump capacity at the computed TDH for that depth (not demand, but what the pump delivers — confirm it exceeds demand). Tank is nominal gallon size (20, 32, 44, 62, 86 common residential). \"Above 1.5\" means this depth/demand combination is past typical 1.5 HP residential territory; options include 2 HP, multi-stage, or reduce TDH (lower pressure, larger pipe, less lift).

Reading the table100 ft well, 3–4 baths (12 GPM demand). Recommended HP: 3/4. That HP at the computed TDH (~272 ft) makes about 12 GPM. Pressure tank: 44 gal (1-minute buffer at 12 GPM with 40/60 switch). If your actual install has 200 ft of pipe instead of 120 ft, friction is higher, TDH is higher, and you may need 1 HP instead. Use the calculator to confirm.

When to Size Past the Chart

This table assumes typical residential: 1 in pipe, 120 ft run, 40/60 pressure, 15 ft fixture lift. If your install differs, the HP recommendation will shift. Common scenarios that make the chart wrong:

  • Long pipe run (over 150 ft). Friction is higher. TDH goes up. You may need the next HP class. Enter actual pipe length in the calculator.
  • High pressure setting (50/70 or 60/80 PSI). Pressure head is the cut-out × 2.31. A 70 PSI cut-out is 161.7 ft of head instead of 138.6. That pushes shallow wells into higher HP. Common on hillside lots or where the second floor needs strong pressure.
  • Undersized pipe (3/4 in or smaller). Friction at 12+ GPM through 3/4 in pipe is much higher than 1 in. TDH increases. You may need more HP or upsize the pipe first.
  • No additional fixture lift (single-story on slab). TDH is lower (no 15 ft to second floor). You may be able to drop to a smaller HP class than the table shows. Confirm with the calculator — do not just trust the lower number if you still have long horizontal runs.
  • Very deep wells (over 300 ft). Multi-stage submersibles, voltage drop on the cable, and site-specific well conditions. Do not use a generic chart. Work with a well installer and confirm wire gauge, motor rating, and curve at that depth.
  • Low well yield. If the driller said \"this well makes 5 GPM,\" you cannot size a pump for 12 GPM demand no matter what HP you pick. The well will run dry. Either reduce demand (low-flow fixtures, stagger use, cistern buffer) or accept the limitation. The chart assumes yield exceeds demand.
Irrigation, livestock, or commercial. Outdoor zones, barn fill, or commercial fixture counts are outside this chart. Residential bathroom-count estimates do not apply. Calculate actual peak GPM (all zones open, or fixture-unit table from IPC), then use the calculator with that GPM. Do not guess.

Pressure Tank Sizing Notes

The tank sizes in the table (20, 32, 44, 62 gal) are based on a 40/60 PSI switch (28% usable drawdown) and 1 minute of demand as a conservative residential buffer. Larger tanks lengthen pump cycles and reduce wear. Smaller tanks may short-cycle if someone showers while the dishwasher fills. If you already have a tank, confirm it matches or exceeds the table recommendation. If the installed tank is too small, upsize the tank before you upsize the pump — short-cycling is often a tank problem, not an HP problem.

Pre-charge: the tank's air-side pressure must be set to about 2 PSI below the cut-in. A 40/60 switch wants ~38 PSI pre-charge. If the bladder is flat or the pre-charge is wrong, the tank has no usable volume and the pump will short-cycle no matter what size tank you installed. Check pre-charge with a tire gauge at the tank's Schrader valve (power off, tank drained). Detailed tank math: sizing guide.

Submersible vs Jet Pump by Depth

Under ~25 ft: shallow-well jet pump is viable (motor at surface, pulls with suction). Budget and service access favor jet. Noise and aesthetics favor submersible if the well is near living space.

25–80 ft: convertible (deep-well) jet pump possible, but 4-inch submersibles are the residential default. Efficiency and operating cost favor submersible. Jet pumps in this range need a two-pipe ejector setup and lose efficiency with depth.

Over 80 ft: submersible only, practically speaking. Jet pumps at that depth are marginal. Confirm wire gauge and voltage drop if depth is over ~200 ft or the pump will not make rated HP. Full comparison: submersible vs jet pump.

FAQ

Can I use this chart for a shallow well under 25 ft?

Yes, but TDH is lower (less well depth). You may be able to use a smaller HP class than the table shows, especially if you have no second-floor lift. Run the calculator with your actual depth and lift to confirm. Do not oversize just because the table says so — extra HP costs more to run and does not help if the curve already covers demand.

What if I have more than 5 bathrooms?

Estimate peak GPM from fixture units (IPC Table 604.3) or add ~3–4 GPM per additional full bath beyond 5. Enter that GPM manually in the calculator. The table's 18 GPM for \"5+ baths\" is a conservative residential cap; larger homes or commercial may be 20–30+ GPM. Confirm the well yield supports that demand before sizing the pump.

The table says 1 HP but I have a 3/4 HP that seems fine. Do I need to upsize?

If the installed pump is meeting demand (no low pressure, no short-cycling, reaches all fixtures), it may be adequate. The table uses conservative assumptions (typical pipe length, 1.5× margin on some parameters). Real-world installs with shorter runs, lower pressure, or less lift can sometimes get by on less HP. Do not replace a working pump just to match a chart. If you have symptoms (low pressure, won't reach upstairs), then size with the calculator using actual measured conditions.

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Well Pump Install Gear

TDH and HP pick the pump. Torque arrestors, well-rated cable, and a pressure switch calibrated to the tank you actually have are why a “right-size” pump still cycles every 15 seconds or can't reach the second floor.

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Prevents submersible pump from spinning on start-stop. Unanchored motors twist the drop pipe and stress wiring.

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Submersible-rated, UV-resistant jacket. Must handle depth, voltage drop, and wet environments. Size by depth and pump load.

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