Abstract:
The present invention consists of an innovative irrigation system at the root of plants designed to save water, energy and fertilizers in which a multifunctional metal or plastic tubular is used which, in addition to supporting the plants, conveys the water to be irrigated directly to the roots and said multifunction tubular has a section, length and height suitable for the type of plant to be irrigated, for example vines, olive trees, grape pergolas, kiwi fruit and vegetable climbing plants, etc. irrigation also of the self-powered radio humidity and temperature sensors positioned directly on the head of the multifunctional tubular and these sensors measure the humidity and temperature of the root zone and communicate it via radio to a local radio transceiver controller capable of processing them and activating radio solenoid valves for water on the lines to be irrigated or on the entire system.
Abstract:
An irrigation dripper comprising a generally straight water pathway for allowing a two-dimensional or a three-dimensional flow of water therein, an inlet for providing water to said pathway, an outlet for allowing water to drip out of said pathway at an angle to said pathway, and an antimicrobial coating at least partially surrounding said inlet.
Abstract:
A system for fabricating an irrigation dripper, comprises several processing stations. One or more longitudinal drilling stations drill in an elongated extruded body of an irrigation dripper a first bore and a second bore, wherein the second bore is contiguous to the first bore and is smaller in diameter than the first bore. An additional drilling station drills an additional bore in the body to connect the first bore with an external surface of the elongated body. An assembling station inserts an extruded rod through the first and the second bores, such that the second bore holds a distal end of the rod to maintain a gap between the rod and an inner wall of the first bore.
Abstract:
An irrigation system (1), at least a water source (2); at least a water pump (4) which is connected to the water source (2) with the irrigation pipe (5) to transport water; at least an air pump (12) which is connected to the irrigation pipe (5) coming out of the water pump (4) to increase the amount of the water transport; at least a drain cylinder (6) on which the irrigation pipe (5) and a ventilation pipe (10) are attached; at least main body (61); at least a water inlet-outlet hole (62) on which the irrigation pipe (5) is attached and located on the main body (61); at least a drain air hole (63) on which the ventilation pipe (10) is attached and located on the main body (61); at least a capsule (64) located in a hole which is drilled on the main body (61) and extending up to the water inlet-outlet hole (62); at least a flow hole (641) located on a capsule (64) and inside the drain air hole (63) to ensure that the air in the water is evacuated; at least a vacuum channel (65) located in the main body (61) and is connected to capsule (64) and water inlet-outlet hole (62); at least drain hole (66) which is located on the main body (61) and has a scupper; at least an irrigational channel (7) which is placed under the ground and in which the drain cylinder (6) is placed; at least one gravel zone (71) into which the drain cylinder (6) is placed; at least two impermeable mats (72) placed above and below the gravel zone (71); at least two perforated polyethylene (73) placed on either side.
Abstract:
É descrita uma unidade de irrigação matricial, para ser instalada no solo, visando a manutenção da sua capacidade de campo, em uma cova específica (C), contendo três componentes principais: um cilindro externo (1), um cilindro interno de manutenção, suporte e fixação (2), e uma cápsula de controle (3). A extremidade fechada do cilindro base (1 ) é assentada no fundo da cova (C), com a função de acumular água numa altura que permita a conexão com o solo (S), utilizando substratos de alta higroscopicidade (SH); o segundo cilindro (2), com diâmetro inferior e contido dentro do cilindro (1 ) pode ficar levemente acima ou abaixo do nível do solo, permitindo sua manutenção e contendo a cápsula de controle (3), que contém uma bóia (6) que por sua vez aciona uma válvula (4) através de um leme (7), que abastece o sistema ao receber água por uma conexão de mangueira (5), protegido por uma tampa (10) removível.
Abstract:
Instalación de riego, que comprende una serie de emisores de riego por succión, enterrados en el suelo, y una red de suministro de agua. Los emisores de riego consisten en receptáculos (1) de paredes rígidas y permeables al agua. La red de suministro está compuesta por tuberías (2) que conectan los recipientes (1) con una fuente (3) de suministro.
Abstract:
A system for maintaining the health of one or more plants is provided. The system includes one or more bladders adapted to contain a fluid, the bladder including an inlet for receiving a fluid and one or more outlets for discharging the fluid and watering the one or more plants. Also included are one or more fluid level sensors to determine the level of fluid in the bladder, one or more environmental sensors and a control unit in communication with the outlet for control of the outlet and in communication with the sensors for receiving, storing and transmitting data from the sensors.
Abstract:
Apparatus and method of forming connector brackets for irrigation laterals along a prefabricated lay-flat pipe and lay-flat pipe with such connector's brackets, wherein an opening is formed at one wall of the premanufactured pipe, a separation means is positioned inside the pipe opposite the opening while separating the one wall from the second wall of the pipe, and an injunction molding is performed into a mold cavity, in order to form the bracket affixed to the one wall of the prefabricated pipe and around the opening.
Abstract:
An irrigation device for promoting deep root growth of a plant. The device may comprise: a tube and a hose. The first end of the tube may connect to a water source. A second end of the tube may be substantially confined within the hose. The tube may pass through a first end of the hose. The first end of the hose may be closed around the tube, such that the tube may be kept substantially in place and such that water from the water source may be substantially prevented from exiting out of the first end of the hose. The second end of the hose may be closed, such that water from the water source may be prevented from exiting out of the second end of the hose. The hose may comprise a plurality of perforations that allow water to seep out of the hose.
Abstract:
The invention relates to a method for fumigating agricultural land which comprises the release of cyanogen into the ground, wherein the cyanogen is released at a depth from 10 cm to 50 cm below the ground surface, and cyanogen is present in gaseous form under the release conditions, and wherein the cyanogen is dissolved in water before said release and is released into the ground as an aqueous cyanogen solution.