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  2. Drip irrigation - Wikipedia

    en.wikipedia.org/wiki/Drip_irrigation

    Usage of a plastic emitter in drip irrigation was developed in Israel by Simcha Blass and his son Yeshayahu. [6] Instead of releasing water through tiny holes easily blocked by tiny particles, water was released through larger and longer passageways by using friction to slow water inside a plastic emitter.

  3. Simcha Blass - Wikipedia

    en.wikipedia.org/wiki/Simcha_Blass

    The first experimental system of this type was established in 1959. In the early 1960s, Blass developed and patented this method and the new dripper was the first practical surface drip irrigation emitter. During the years 1960 to 1965 Blass developed the drip-irrigation systems and sold them inside Israel and abroad.

  4. Irrigation sprinkler - Wikipedia

    en.wikipedia.org/wiki/Irrigation_sprinkler

    An irrigation sprinkler (also known as a water sprinkler or simply a sprinkler) is a device used to irrigate (water) agricultural crops, lawns, landscapes, golf courses, and other areas. They are also used for cooling and for the control of airborne dust.

  5. Drainage system (agriculture) - Wikipedia

    en.wikipedia.org/wiki/Drainage_system_(agriculture)

    The regular surface drainage systems, which start functioning as soon as there is an excess of rainfall or irrigation applied, operate entirely by gravity. They consist of reshaped or reformed land surfaces and can be divided into: Bedded systems, used in flat lands for crops other than rice;

  6. Subsurface textile irrigation - Wikipedia

    en.wikipedia.org/wiki/Subsurface_textile_irrigation

    A cross-sectional view of the wetting pattern provided by SSTI, as compared to drip irrigation. The systems rely on specific geotextiles to absorb the water from the drippers and to rapidly transport that water via mass flow and capillary action along the geotextile effectively turning those single drippers into billions of emitters.

  7. Watertable control - Wikipedia

    en.wikipedia.org/wiki/Watertable_control

    In geotechnical engineering, watertable control is the practice of controlling the height of the water table by drainage.Its main applications are in agricultural land (to improve the crop yield using agricultural drainage systems) and in cities to manage the extensive underground infrastructure that includes the foundations of large buildings, underground transit systems, and extensive ...

  8. Pulse drip irrigation - Wikipedia

    en.wikipedia.org/wiki/Pulse_drip_irrigation

    A one-US-gallon-per-hour (3.8 L) drip flow controller feeding an 82-foot-long (25 m) drip line with check valves comprising 82 drip points along its length so each drip point is putting out about 1 / 82 US gallon (46 mL) per hour. Crimson clover sprouts grown on 1 / 8-inch (0.32 cm) urethane foam mats and flagstone.

  9. Drainage equation - Wikipedia

    en.wikipedia.org/wiki/Drainage_equation

    the design drain spacing (L) can be found from the equation in dependence of the drain depth (Dd) and drain radius (r). Drainage criteria One would not want the water table to be too shallow to avoid crop yield depression nor too deep to avoid drought conditions. This is a subject of drainage research.

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