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Maximum water flow capacities in steel pipes - pipe dimensions ranging 2 - 24 inches

No single recommendation will be correct for all possible circumstances, but the table below can be used as a general guidance for water flow capacity in Steel pipes schedule 40.

Pipe Size
(inch)
Maximum Flow
(gal/min)
Velocity
(ft/s)
Head Loss
(ftH2O/100ft, m/100m)
2454.33.9
2 1/2755.04.1
31305.63.9
42606.64.0
68008.94.0
8160010.33.8
10300012.24.0
12470013.44.0
14600014.24.0
16800014.53.5
181000014.33.0
201200013.82.4
241800014.42.1

It is common to use maximum friction (head) loss to determine maximum flow and velocities in pipes. But be aware of that with

  • increased friction loss - the installation cost is decreased and the operating cost is increased
  • decreased friction loss - the installation cost is increased and the operating cost decreased

Related Topics

  • Fluid Flow and Pressure Loss - Pipe lines - fluid flow and pressure loss - water, sewer, steel pipes, pvc pipes, copper tubes and more

Related Documents

  • ASME/ANSI B36.10/19 - Carbon, Alloy and Stainless Steel Pipes - Dimensions - Pipe sizes, inside and outside diameters, wall thickness, schedules, moment of inertia, transverse area, weight of pipe filled with water - U.S. Customary Units
  • AWWA C115 - Ductile-Iron Threaded Pipe - Dimensions - Dimensions of threaded ductile-iron pipe according AWWA C115
  • AWWA C151 - Ductile-Iron Pipe Centrifugally Cast - Dimensions - Dimensions of ductile-iron pipes according AWWA C151/A.21.51
  • EN 10241 - Steel threaded pipe fittings - EN 10241 specifies requirements for screw threaded fittings
  • EN 10255 - Non-alloy steel tubes suitable for welding and threading - Dimensions - Dimensions and weights of steel tubes according BS EN 10255
  • Energy Equation - Pressure Head Loss in Ducts, Tubes and Pipes - Pressure and head loss in ducts, pipes and tubes
  • Fluid Flow Velocities in Pipes - Calculate fluid flow and pipe velocities in pipes and tubes
  • Hazen-Williams Equation - calculating Head Loss in Water Pipes - Friction head loss (ftH2O per 100 ft pipe) in water pipes can be estimated with the empirical Hazen-Williams equation
  • Pipes Relative Capacity - The relative capacity between larger and smaller pipes
  • Pressure Loss in Steel Pipes Schedule 40 - Water flow and pressure loss in schedule 40 steel pipes - Imperial and SI units - gallons per minute, liters per second and cubic meters per hour
  • Steel Pipe Dimensions - ANSI Schedule 40 - Internal and external diameters, areas, weights, volumes and number of threads for ANSI schedule 40 steel pipes
  • Steel Pipe Dimensions - ANSI Schedule 80 - Internal and external diameters, areas, weights, volumes and number of threads for schedule 80 steel pipes
  • Steel Pipes - Bundling Schedules - Bundling schedules for standard weight and extra strong steel pipes
  • Steel Pipes and Maximum Water Flow Capacity - Maximum water flow capacities in steel pipes - pipe dimensions ranging 2 - 24 inches
  • Steel Pipes Schedule 40 - Friction loss and Velocity Diagram - Friction loss and velocity diagrams - in imperial (psi/100 ft, ft/s) and SI (Pa/100m, m/s) units
  • Steel Pipes Schedule 80 - Friction loss and Velocity Diagrams - Water flow in steel pipes schedule 80 - pressure drop and velocity diagrams in SI and Imperial units
  • Water Flow - Delivery Velocity - Required maximum flow velocity in water systems - delivery side of the pump
  • Water Flow and Velocity Head in Steel Pipes - Schedule 40 - Velocity head used to calculate minor pressure or head loss in fluid flow systems
  • Water Flow in Tubes - Reynolds Number - Clean cold waterflow in pipes and the Reynolds number
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