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At its annual convention at Dallas, TX, the NFPA formally adopted a standard with 2 + 1 ⁄ 2-inch hose with 7.5 threads per inch as the primary standard, with additional sizes of 3 and 3.5 inches (each with 6 threads per inch) and a 4.5 inch coupling with 4 threads per inch, with the fire hydrant standard specifying one 4.5 inch port and two 2 ...
Nominal Pipe Size (NPS) is a North American set of standard sizes for pipes used for high or low pressures and temperatures. [1] " Nominal" refers to pipe in non-specific terms and identifies the diameter of the hole with a non-dimensional number (for example – 2-inch nominal steel pipe" consists of many varieties of steel pipe with the only criterion being a 2.375-inch (60.3 mm) outside ...
A short piece of fire hose, usually 10 to 20 feet (6.1 m) long, of large diameter, greater than 2.5 inches (64 mm) and as large as 6 inches (150 mm), used to move water from a fire hydrant to the fire engine, when the fire apparatus is parked close to the hydrant. Solid stream A fire-fighting water stream emitted from a smooth-bore nozzle.
The turret was of multi-piece construction, with a water deflecting component attached to the end of the nozzle. This, combined with the adjusting handle, allowed the turret to have an infinitely variable spray pattern. Below the turret was a 90° pipe angle, connected to a 4 + 1 ⁄ 2 inches (110 mm) diameter hose visible in the cab. This hose ...
Ralph J. Scott carried breathing apparatus, forcible entry tools, heavy stream appliances, a bank of eighteen 50-pound (23 kg) CO 2 cylinders (now removed), flood light, smoke ejector equipment, syphon ejectors, drag and grappling hooks, two 3 + 1 ⁄ 2-inch (89 mm) Mystery nozzles, [clarification needed] and tips up to 6 inches for the largest ...
In a nozzle or other constriction, the discharge coefficient (also known as coefficient of discharge or efflux coefficient) is the ratio of the actual discharge to the ideal discharge, [1] i.e., the ratio of the mass flow rate at the discharge end of the nozzle to that of an ideal nozzle which expands an identical working fluid from the same initial conditions to the same exit pressures.
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Using metric units, the volumetric flow rate of a nozzle is given by =, [1] [2] where q is the flow rate in litres per minute ( l/min ), p is the pressure at the nozzle in bar and K is the K-factor is given in units of (/) /.
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