forede Portable Water Cannon is suitable for the space where the fire field is far from the water source and the fire truck cannot enter;It is used to extinguish general solid material fires and oil fires. It is also used to cool and cool oil tanks;
Key Features
* Stainless Steel 304 Construction;
* Automatic Nozzle;
* Vertical travel of 50°, from 30 ° to + 80°;
* Simple to operate;
* Easy to service and repair.
Key Users
* Fire & Rescue Services
* Oil & Gas
* Petrochemicals
* Fuel Storage Sites
* Major Industrials
* Aviation
Model |
PSY10/80W |
Control |
Double Hand wheel |
Working Pressure |
10 bar |
Flow Rate |
2400-4800 LPM (Automatic Nozzle) |
Jetting Range @ 10 bar |
85 m @ 4800 LPM |
Max. Fog Angle |
120° |
Water Way Size |
3" |
Inlet |
2×2.5" GOST,STORZ,Instantaneous,NH,etc (Optional) |
Outlet |
3" NH |

1. Double Hand Wheel Control
Q: The "Double Hand Wheel" control-how does it improve manual operation compared to single - wheel designs?
A: Dual hand wheels allow independent adjustment of horizontal rotation and vertical elevation, enabling precise, simultaneous control. This reduces the time to align the jet with the fire, especially in dynamic scenarios where quick repositioning is critical.
2. Automatic Nozzle Flow Adaptation
Q: "Flow Rate: 80 LPS (Automatic Nozzle)"-how does the automatic nozzle adjust flow rate, and what triggers the change?
A: The automatic nozzle uses a pressure - responsive mechanism: as system pressure changes, the nozzle orifice adjusts to maintain a consistent 80 LPS flow (or adapt to pressure - driven variations). This ensures stable performance across different water - supply conditions.
3. Coupling Standard Combinations
Q: "Coupling standard: GOST,STORZ,Instantaneous,NH,etc."-can multiple coupling types be used simultaneously (e.g., dual inlets with different standards)?
A: Yes, the "2×2.5" inlets support mixed coupling standards (e.g., one GOST, one NH) for connecting to diverse hose systems. This flexibility is ideal for large - scale operations where multiple water sources (with varying standards) are available.
4. SS304 Stainless Steel in Chemical Environments
Q: "SS304 stainless steel construction"-how does it resist corrosion in chemical - plant fires (e.g., exposure to acids/alkalis)?
A: SS304 offers good corrosion resistance to mild chemicals but may be vulnerable to strong acids/alkalis. In such environments, rinse the monitor with neutralizing agents post - use and apply protective coatings (e.g., PTFE) to extend durability.
5. Jetting Range at Max Flow
Q: "Jetting Range @ 10 bar: 85 m @ 4800 LPM"-how does flow rate affect jet distance, and why is 4800 LPM the peak?
A: Higher flow rates increase jet momentum, extending range-up to 85 m at 4800 LPM. The peak is limited by the nozzle design and working pressure (10 bar); exceeding this may cause nozzle damage or unstable jet patterns.
6. Max. Fog Angle Practical Use
Q: "Max. Fog Angle: 120°/3°"-how to choose between wide fog (120°) and narrow fog (3°) in real fires?
A: 120° fog cools large areas or creates smoke barriers; 3° fog penetrates deep into fires or reaches distant targets. Use wide fog for perimeter protection and narrow fog for direct fire suppression, switching via the hand - wheel controls.
7. Portable Setup on Soft Ground
Q: The monitor is portable-how to stabilize it on soft surfaces (e.g., grass, mud), and what accessories help?
A: Use the tripod's extendable legs to distribute weight and add stabilizer mats (optional) under the feet. For extreme softness, fill sandbags and attach them to the tripod legs to prevent sinking.
8. Water Way Size Impact
Q: "Water Way Size: 3" NH"-how does this affect water flow and pressure loss in long - hose deployments?
A: A 3" water way minimizes pressure loss over long hoses, ensuring sufficient flow (up to 4800 LPM) reaches the monitor. For very long hoses (>100 m), use larger - diameter hoses or booster pumps to maintain pressure.
9. Dual - Inlet Operation
Q: The "2×2.5" inlets-can they operate simultaneously to increase flow, and how to balance pressure?
A: Yes, dual inlets can operate in parallel to boost flow (beyond 4800 LPM if sources allow). Use pressure regulators on each inlet to balance flow and avoid uneven stress on the monitor.
10. Maintenance of Automatic Nozzle
Q: The "Automatic Nozzle"-what maintenance is needed to ensure smooth flow adjustment and prevent clogging?
A: Regularly clean the nozzle orifice to remove debris (e.g., after use in dirty water). Lubricate the pressure - responsive mechanism annually to ensure smooth adjustment. Test flow rates quarterly to verify automatic operation.
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