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Sheet FP-102
PPDPDD PACE

Fire Protectionconcept

Sprinkler systems: wet pipe, dry pipe, pre-action, deluge, and quick-response

One-line orientation

Sprinkler systems differ primarily in whether pipes hold water, pressurized gas, or nothing — and whether heads activate individually or all at once — matching the hazard level and freeze/damage risk of the occupancy.

Key points

  • Wet pipe (most common): pipes permanently filled with water; each head activates independently when its thermal element reaches the trigger temperature. Immediate response. Cannot be used where pipes might freeze.
  • Dry pipe: pipes filled with pressurized gas (air or nitrogen); heat opens a head, gas escapes, then water follows. Suitable for unheated spaces (loading docks, parking garages, unconditioned attics). Slightly slower response than wet pipe.
  • Pre-action: in a common single-interlock system, a separate detection event opens the valve and fills the piping; water discharges only when a sprinkler head also opens. Other pre-action configurations use different interlocks. These systems protect water-sensitive spaces such as server rooms, museums, and archives.
  • Deluge: pipes are open (no heat-sensitive element at each head); all heads discharge simultaneously when a detector triggers the deluge valve. Used in high-hazard occupancies where fire spreads faster than individual heads can respond (aircraft hangars, chemical plants, flammable-liquid areas).
  • Quick-response sprinklers: quick-response describes the sprinkler head’s thermal response, not one universal occupancy or pipe system.

Sprinkler systems — what is in the pipe, and what releases water?

All four specimens are shown at standby. The key decodes pipe contents; the numbered lines show the release sequence.

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Wet, dry, single-interlock preaction, and deluge sprinkler systems at standby Four equal schematic panels reuse the same supply riser, branch pipe, and two sprinkler outlets. Blue fill shows water position at standby. Wet pipe has water throughout the branch and closed heat-responsive heads. Dry pipe has water below the dry valve and pressurized gas in the branch. Single-interlock preaction has water below the valve and otherwise empty piping until a separate detection event admits water; a sprinkler must also be open to discharge. Deluge has water below the valve, empty piping, and open outlets, so a detector opening the valve causes all outlets to discharge. Each panel directly labels pipe contents, outlet state, and the two-step release sequence. Wet pipestandard occupied spaceswater at every headclosed heads · open one by oneRELEASE SEQUENCE1heat opens one head2water discharges nowDry pipeunheated / freeze riskwater waits below valvepressurized gas · closed headsRELEASE SEQUENCE1head opens → gas escapes2dry valve opens → waterPreactionsingle-interlock shownwater waits below valveempty pipe · closed headsRELEASE SEQUENCE1detection → valve opens2open head releases waterDelugehigh-hazard, fast-spreadwater waits below valveempty pipe · OPEN outletsRELEASE SEQUENCE1detection → valve opens2ALL outlets discharge
  • blue fill = water
  • gray fill = pressurized air / nitrogen
  • white interior = empty pipe

Quick-response is a faster sprinkler head, not a fifth pipe-system type. The preaction specimen shows the common single-interlock sequence.

Confusions / comparison

SystemPipe contentsHead activationWater release triggerBest use
Wet pipeWater (always)Individual, by heatDirect — head opens on heatStandard occupied spaces
Dry pipePressurized gasIndividual, by heatGas out → water inUnheated / freeze-risk spaces
Pre-actionEmpty (gas opt.)Individual, by heatDetection fills pipe; open head dischargesSensitive equipment rooms
DelugeEmpty (open heads)All simultaneouslyDetector / alarm panelHigh-hazard, fast-spread areas
Quick-responseWater (wet pipe)Individual, fastFaster thermal elementLight hazard / life-safety occupancies

→ Fire Protection: fire classes & detection (classes A–K, extinguisher types, ionization vs photoelectric detectors) · Code: fire-rated construction, occupancy separation requirements.

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