Key Details of Gas Fire Protection Design

  • Gas Fire Protection is Gaseous fire suppression is a term to describe the use of inert gases and chemical agents to extinguish a fire.
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Gas Fire Protection Design 0/4

Developer's Description

Gas Fire Protection is Gaseous fire suppression is a term to describe the use of inert gases and chemical agents to extinguish a fire.

Gas Fire Protection is Gaseous fire suppression is a term to describe the use of inert gases and chemical agents to extinguish a fire. Also called clean agent fire suppression. These agents are governed by the National Fire Protection Association (NFPA) Standard for Clean Agent Fire Extinguishing Systems - NFPA 2001 in the USA, with different standards and regulations in other parts of the world. The system typically consists of the agent, agent storage containers, agent release valves, fire detectors, fire detection system (wiring control panel, actuation signaling), agent delivery piping, and agent dispersion nozzles. Less typically, the agent may be delivered by means of solid propellant gas generators that produce either inert or chemically active gas.

Fire suppression for Appilcation

1. FM-200 = HFC-227ea ,Heptafluoropropane , CF3CHFCF3

2. NOVEC-1230 = FK-5-1-12, Dodecafluoro-2-methylpentan-3-one ,CF3CF2C(O)CF(CF3) 2

3. CO2 HIGH PRESSURE

4. FE-13 = HFC-23 , Trifluoromethane , CHF3

5. Inert Gas Design

IG-01= (ARGON) = ARGON (100%)

IG-55 = NITROGEN (50%) + ARGON (50%)

IG-100 (NITROGEN) = NITROGEN (100%)

IG-541 (INERGEN) = NITROGEN (52%) + ARGON (40%) + CO2 (8%)

Clean Agent Fire Extinguishing Systems use by and guidance of those charged with purchasing, designing, installing, testing, inspecting, approving, listing, operating, and maintaining engineered or pre engineer clean agent extinguishing systems, so that such equipment will function as intended throughout its life.

Download Manual Gas Fire Protection Design Link

https://drive.google.com/open?id=0BxaWWGlfYY6NXzFLcjlrQmxRTHM

FUNTION APPILCATION WORK 121 FUNTION

FUNTION APPILCATION

1. METHOD FOR DESIGN

2. NOVEC-1230

3. FM-200

4. INERT GAS

5. CO2 HIGH PRESSURE

6. FE-13

7. TABLE FOR DESIGN

8. GRAPH FOR DESIGN

METHOD FOR DESIGN

1. CLASS DESIGN OF NOVEC-1230

2. CLASS DESIGN OF FM-200

3. CLASS DESIGN OF FE-13

4. CLASS DESIGN OF INERT GAS

5. CLASS DESIGN OF CO2

6. OPERATION DIAGRAM FM-200,NOVEC-1230 & FE-13

7. SCHEMATIC DIAGTAM

8. CONTACT

NOVEC-1230

1. NOVEC-1230 CALCULATE

2. NOVEC-1230 ABOUT

3. DESIGN CONCENTRATION

4. NOZZLE DESIGN NOVEC-1230

5. PIPE NOVEC-1230 CALCULATE

6. PIPE SCHEDULE NOVEC-1230

7. TABLE FOR DESIGN

8. GRAPH FOR DESIGN

FM-200

1. FM-200 CALCULATE

2. FM-200 ABOUT

3. DESIGN CONCENTRATION

4. NOZZLE DESIGN FM-200

5. PIPE FM-200 CALCULATE

6. PIPE SCHEDULE FM-200

7. TABLE FOR DESIGN

8. GRAPH FOR DESIGN

INERT GAS

1. IG-01

2. IG-55

3. IG-100

4. IG-541

5. NOZZLE DESIGN INERT GAS

6. DAMPER CALCULATE

7. PIPE INERT DESIGN

CO2 HIGH PRESSURE

1. HPCO2 DEEP SEATED FIRE

2. HPCO2 TOTAL FLOODING SURFACE FIRE

3. HPCO2 SURFACE FIRE

4. NOZZLE & PIPE DESIGN CO2

5. PIPE SCHEDULE DESIGN

6. CONCENTRATION DESIGN

7. CALCULATE CO2% & O2%

8. VOLUME CALCULATE

9. ABOUT CO2

FE-13

1. FE-13 CALCULATE

2. FE-13 ABOUT

3. DESIGN CONCENTRATION

4. NOZZLE DESIGN FE-13

5. PIPE FE-13 CALCULATE

6. PIPE SCHEDULE FE-13

7. TABLE FOR DESIGN

8. GRAPH FOR DESIGN

TABLE FOR DESIGN

1. TABLE PIPE DESIGN OF NOVEC-1230

2. TABLE PIPE DESIGN OF FM-200

3. TABLE PIPE DESIGN OF FE-13

4. TABLE PIPE DESIGN OF CO2 HIGH PRESSURE

5. TABLE PIPE DESIGN OF IG-01

6. TABLE PIPE DESIGN OF IG-55

7. TABLE PIPE DESIGN OF IG-100

8. TABLE PIPE DESIGN OF IG-541

9. MANIFLOW SIZE ESTIMATION

GRAPH FOR DESIGN

1. AVERAGE NOZZLE PRESSURE NOVEC-1230

2. NITROGEN TEMPERATURE & PRESSURE FM-200

3. MINIMUM DESIGN CO2 CONCENTRATION

4. TEMPERTURE & PRESSURE FOR CO2 CYLINEDERS

5. FE-13 PRESSURE/ TEMPERTURE CUREVE

6. ISOMETRIC DIAGRAM OF IG-01

7. ISOMETRIC DIAGRAM OF IG-100

8. ISOMETRIC DIAGRAM OF IG-541

Download Manual Gas Fire Protection Design Link

https://drive.google.com/open?id=0BxaWWGlfYY6NXzFLcjlrQmxRTHM



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