Sprinkling irrigation system capable of increasing irrigation coverage rate of gridiron beam slopes, and use method of sprinkling irrigation system
A technology of sash beams and coverage, applied in the direction of botanical equipment and methods, applications, watering devices, etc., can solve problems such as difficulty in realizing full-slope irrigation, missing irrigation dead spots, and limited plant growth, achieving less The number of sprinkler irrigation units, the elimination of irrigation dead ends, and the effect of strong practicability
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[0034] Example 1:
[0035] see Figure 2-10 , a sprinkler irrigation system for improving the irrigation coverage of the sash beam slope, which is composed of a plurality of relatively independent individual sprinkler units 7, and each individual sprinkler unit 7 includes a sprinkler head 1, a strut 2 and a base 3, so The support rod 2 is fixedly installed on the top of the base 3, and the top of the support rod 2 is fixedly installed with symmetrically arranged sprinkler heads 1; when installed, the irrigation units are evenly arranged on the field formed by four adjacent sash beams. The word is in the middle. The sprinkler irrigation system with the above-mentioned structure can be used for high sash beam side slope irrigation, and secondly, full-coverage irrigation can be realized by combining rotary irrigation, cross irrigation and far-near irrigation.
[0036] Further, the sprinkler head 1 is in the shape of an I-shape as a whole, and the inside is hollow to form a water d
Example Embodiment
[0060] Example 2:
[0061] The method of using the sprinkler irrigation system to improve the irrigation coverage of the sash beam slope:
[0062] The irrigation water is introduced from the water delivery tank 301 of the base 3 into the flexible water delivery pipe 207, and then introduced into the upper water nozzle 101, the middle water nozzle 102 and the lower water nozzle 103 of the sprinkler head 1 through the flexible water delivery pipe 207 for spraying;
[0063] During the ejection process, the lift and rotation of the hollow fixed rod 201 is controlled by controlling the energized state of the electromagnetic relay 302. The specific process is: when the electromagnetic relay 302 is energized, the non-magnetic strong spring 205 shrinks due to the magnetic force, and the hollow fixed rod 201 together with the circle The ring magnet 204 slides downward in the outer rod 202, and the I-shaped nozzle 1 also moves downward accordingly. The trapezoidal inclined block 203 on the
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