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Sheet P-102
PPDPDD PACE

Plumbingconcept

Hot water supply: temperature standards, heater types, and expansion

One-line orientation

Hot-water design has three separate decisions: delivery temperature, how the water is heated and stored, and how pipes or a closed system accommodate thermal expansion.

Key points

  • Temperature standards:
    • 140°F — kitchens and laundry (sanitization requirement)
    • 120°F — showers/tubs (IPC §412.3 / ASSE 1016 limit-stop; scald prevention maximum)
    • Public lavatories / handwashing — tempered water is capped at 110°F max (ASSE 1070); ~105°F is a comfortable delivery temperature, not an ADA temperature requirement.
  • How water is heated:
    • Direct: a dedicated heater transfers heat directly to the domestic water.
    • Indirect: a boiler heats domestic water through a heat exchanger.
  • How water is stored and delivered:
    • Storage: keeps a tank of hot water ready but has standby heat loss.
    • Tankless: heats water on demand and needs enough fuel or electrical capacity for peak flow.
  • Fuel sources:
    • Electric — suitable for small-scale applications.
    • Gas or oil — used for various sizes; higher output rate than electric in most configurations.
  • Thermal expansion: hot water and hot-water piping expand as temperature rises. Use the appropriate expansion control for the system; a pipe loop is one option, not a universal rule.

Hot water — compare the three paths, then apply delivery limits

Schematic

Stacked rows keep cold supply, heating equipment, hot delivery, and the energy tradeoff in separate lanes.

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Scroll horizontally to explore

Stacked storage, tankless, and indirect water-heater paths with temperatures and a cause-and-effect expansion-bend comparison Three full-width rows compare storage, tankless, and indirect heaters. Each row separates cold-water entry, equipment, hot-water exit, and explanatory text. The indirect row uses a teal closed boiler loop and a blue domestic hot-water outlet. A temperature rail marks 140 degrees Fahrenheit for kitchens and laundry, 120 degrees for showers and tubs, and 110 degrees maximum for public lavatories. At the bottom, a straight heated run pushes outward at fixed ends, while a paired welded-bend detail overlays a dashed cool position and solid blue heated position to show the bend changing shape and relieving end stress. HEATER TYPES · EACH ROW FOLLOWS COLD WATER TO HOT DELIVERYStorage (tank)direct heater · stored volumeCOLD INHOT OUTSTANDBY HEAT LOSSReady hot-water volumeMain tradeoff:energy is lost while idle.Tankless (demand)direct heater · no storageHEAT EXCHANGERCOLD INHOT OUTHeats only during drawNo stored volume.No standby loss.Indirectstored DHW · shared heat plantboilerCOLD INHOT OUTBoiler heats stored DHWHeat crosses the coil;the two water paths stay separate.DELIVERY TEMPERATURES · APPLIES AFTER ANY HEATER TYPE140°Fkitchen / laundry120°Fshower / tub110°F maxpublic lavatoryWHY A LONG HOT-WATER RUN NEEDS A WELDED EXPANSION BENDStraight run — nowhere to flexthermal growth pushes directly against fixed endsFIXEDFIXEDstress concentrates at the endsWelded bend — room to flexthe offset changes shape instead of pushing at the endsdashed = cool · blue = heated / flexed
  • domestic hot-water path / heated position
  • separate building-boiler heat loop
  • cool reference position of the welded bend

Trap: indirect is not tankless — it stores domestic hot water, but a separate building-boiler loop supplies heat through a coil.

Fuel: electric suits small-scale use; gas or oil gives a higher output rate in most configurations.

Confusions / comparison

Heater typeStorage tank?Standby loss?Energy sourceBest for
Storage (tank)YesYesGas / oil / electricHigh simultaneous demand; low first-cost
Demand (tankless)NoNoGas / electricLow–moderate demand; space savings
IndirectUsuallyVaries with tank and controlsBuilding boilerBuildings with a suitable central boiler; performance depends on the whole system
TemperatureUseWhy that number
140°FKitchens, laundryKills bacteria (Legionella); sanitization
120°FShowers / tubsIPC §412.3 / ASSE 1016 limit-stop; scald prevention maximum
110°F maxPublic lavatories / handwashingASSE 1070 tempered-water maximum; ~105°F is comfort, not ADA

→ Plumbing: water pressure & supply (heater fuel types, building size) · piping materials (copper L most common for hot supply; insulation of hot pipes) · valves (temperature/pressure relief valve on storage heaters) .