Fire Protection Fluids II project one Essay Example
) for a given occupancy.2/ ___ft2Determine sprinkler design criteria (___ gpm/ft
Ordinary Group 2 Hazard occupancy?
0.15 gpm/ft and 130sq.ft
Transmission repair shop
0.40gpm.sq.ft and 100sq,ft
Plastics fabrication, no flammable or combustible liquids, occupancies
30gpm per sq.ft and 100 sq.ft
) for the common walkway areas in a mall.2/ ___ft2Provide the occupancy classification and the determine sprinkler design criteria (___ gpm/ft
It belongs to the ordinary group 1 occupancy with a 0.15gpm/ft and 130sq.ft.
Production area utilized for varnish dipping.
Extra hazard group 2 with a 0.40gpm/ft and 100sq.ft
Determine the required ESFR design utilizing K=25 sprinklers for open shelf rack storage to 25 feet in a 30 foot high building storing Group A plastics.
It requires 828gpm and a minimum of either 6 to 8ft aisles
Determine the required ESFR design utilizing K=14 sprinklers for open shelf rack storage to 20 feet in a 30 foot high building storing Class IV commodities.
It requires an inside hose of 100gm. When combined, the outside and inside hose will require 500gpm.
Determine the required CMSA design utilizing K=11.2 sprinklers on a dry pipe system for open shelf rack storage to 25 feet in a 30 foot high building storing Class III encapsulated commodities.
It will require a 500gmp and 1900 L/min with 150 minutes of water supply
.(Wenting Han, 2012)Determine the available (could be more than one acceptable design)CMSA designs utilizing Dry Pipe Sprinkler systems for open shelf rack storage to 35 feet in a 40 foot high building storing Class II commodities
Max vertical space of sq, min horizontal space of sq, and 2000ft of ceiling sprinklers operating area
II commodities.Class IDetermine the required Control Mode Area Density sprinkler design utilizing dry pipe sprinkler system with 286F heads for open shelf rack storage to 18 feet in a 24 foot high building storing encapsulated
It will require a 900gpm and 2000sq.ft
http://dx.doi.org/10.5897/ajar12.306(19). 7, AFRICAN JOURNAL OF AGRICULTURAL RESEEARCHWenting Han. (2012). Lateral-pipe layout design in fixed-pipeline sprinkler irrigation systems.
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