Internal hydrant DN52 with φ52 mm lay-flat fire hose in a cradle. Mounted on the wall (C) or recessed (B). Depth 180 mm. Universal design: possible to connect to water supply as left or right side. Holes for water connection are blanked, possibility to connect from the side. Working pressure from 0,2 to 0,7 MPa.
HYDRANT DIMENSION:
Height:520 mm
Width:390 mm
Depth:180 mm
Height:520 mm
Width:390 mm
Depth:180 mm
RECESS DIMENSION:
Height:540 mm
Width:410 mm
Depth:190 mm
Height:540 mm
Width:410 mm
Depth:190 mm
Files to download
HYDRANT DIMENSION:
Height:520 mm
Width:390 mm
Depth:180 mm
Height:520 mm
Width:390 mm
Depth:180 mm
RECESS DIMENSION:
Height:540 mm
Width:410 mm
Depth:190 mm
Height:540 mm
Width:410 mm
Depth:190 mm
Files to download
Standard design:
- hydrant cabinet STANDARD – steel sheet lacquered with Facade type polyester powder paint in red (RAL 3000) or white (RAL 9003) color; thanks to cover hinge cabinet door are opening for 180º
- hydrant in a suspended (C) or recessed (B) version. Recessed version supplied with flange
- 52 hydrant valve
- hose support – cradle in RAL 3000 color
- lay flat hose φ52mm 15m or 20m length according to PN-EN 14540:2005(U)
- hydrant nozzle type PWh-52 according to PN-EN-671-2, fixed connection to fire hose by crimping the nozzle with aluminum sleeve
- hose couplings crimped with aluminum sleeve
- Patent lock
- marking: sign “Hydrant” according to PN-EN ISO 7010:2012 + information plate according to PN-EN 671-2
- documentation: instruction of assembly and maintenance, guarantee card
- identification number
HYDRAULIC PROPERTIES
Working pressure: from 0,2 MPa to 0,7 MPa
Diffused conical water stream – not less than 45 degree.
Flow rate /efficiency/ | Pressure [MPa] | Dispersed stream | Compact stream |
Equivalent diameter 13 mm | 0,2 | 172 l/min | 155 l/min |
0,4 | 244 l/min | 220 l/min | |
0,6 | 299 l/min | 270 l/min | |
Factor K | – | 122 |
110 |
Effective range of the water jet projection (plus the length of the hose 15 m or 20 m) | |||
Equivalent diameter 13 mm | 0,2 | 5,4 m | 10,8 m |
0,4 | 8,1 m | 17,1 m | |
0,6 | 9,9 m | 19,8 m |
Attention! The dependence of the flow rate Q on the pressure P is given by the equation: Q = K√10P, where Q is expressed in liters / minute and P in megapascals.