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  2. Pipe drift - Wikipedia

    en.wikipedia.org/wiki/Pipe_drift

    Pipe drift is a measure of the roundness or eccentricity of the inside wall of a pipe. "API drift" refers to primary specifications set forth in API Specification 5CT (ISO 11960), "Specification for Casing and Tubing". "Alternate drift" refers to alternate drift specifications listed in API 5CT. "Special drift" refers to industry drift ...

  3. Moody chart - Wikipedia

    en.wikipedia.org/wiki/Moody_chart

    In engineering, the Moody chart or Moody diagram (also Stanton diagram) is a graph in non-dimensional form that relates the Darcy–Weisbach friction factor f D, Reynolds number Re, and surface roughness for fully developed flow in a circular pipe. It can be used to predict pressure drop or flow rate down such a pipe.

  4. Invert level - Wikipedia

    en.wikipedia.org/wiki/Invert_level

    Corrugated pipe will be measured differently than a smooth wall pipe. When trying to find the invert level of a corrugated pipe, you will want to use the ridge on the inside of the pipe as water will fill up the grooves before it will allow for a steady flow down the pipe. The diameter of the ridge on the inside of the pipe will also be the ...

  5. Category:Piping - Wikipedia

    en.wikipedia.org/wiki/Category:Piping

    Pipe (fluid conveyance) Pipe bursting; Pipe Cutting; Pipe drift; Pipe flow; Pipe marking; Pipe network analysis; Pipe wrench; Pipeline; Pipeline video inspection; Piping and instrumentation diagram; Piping and plumbing fitting; Plastic pipework; Plug (sanitation) Process flow diagram

  6. Darcy–Weisbach equation - Wikipedia

    en.wikipedia.org/wiki/Darcy–Weisbach_equation

    The Darcy-Weisbach equation, combined with the Moody chart for calculating head losses in pipes, is traditionally attributed to Henry Darcy, Julius Weisbach, and Lewis Ferry Moody. However, the development of these formulas and charts also involved other scientists and engineers over its historical development.

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  8. Water distribution system - Wikipedia

    en.wikipedia.org/wiki/Water_distribution_system

    An example of a water distribution system: a pumping station, a water tower, water mains, fire hydrants, and service lines [1] [2]. A water distribution system is a part of water supply network with components that carry potable water from a centralized treatment plant or wells to consumers to satisfy residential, commercial, industrial and fire fighting requirements.

  9. Water supply network - Wikipedia

    en.wikipedia.org/wiki/Water_supply_network

    The water is typically pressurised by pumping the water into storage tanks constructed at the highest local point in the network. One network may have several such service reservoirs. In small domestic systems, the water may be pressurised by a pressure vessel or even by an underground cistern (the latter however does need additional pressurizing).