CN102172197B - Impulse type drip irrigation system - Google Patents
Impulse type drip irrigation system Download PDFInfo
- Publication number
- CN102172197B CN102172197B CN2011100741541A CN201110074154A CN102172197B CN 102172197 B CN102172197 B CN 102172197B CN 2011100741541 A CN2011100741541 A CN 2011100741541A CN 201110074154 A CN201110074154 A CN 201110074154A CN 102172197 B CN102172197 B CN 102172197B
- Authority
- CN
- China
- Prior art keywords
- water
- control chamber
- lock body
- chamber
- water inlet
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Fee Related
Links
Images
Classifications
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A40/00—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
- Y02A40/10—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
- Y02A40/22—Improving land use; Improving water use or availability; Controlling erosion
Landscapes
- Safety Valves (AREA)
Abstract
The invention relates to an impulse type drip irrigation system which is anti-blocked. After passing through an impulse valve which is in front of each capillary pipe, pressurized water enters each capillary pipe in a fast-rising and slowly-reducing pressure impulse flow manner, and is sprinkled to irrigate crops through a drip irrigation emitter on each capillary pipe. The fast-rising pressure can form a strong impact on obstructions while the slowly-reducing pressure cannot enable the water in the capillary pipe behind the impulse valve to generate resilience; a negative pressure is formed at a water outlet of an irrigator to cause negative pressure suction blockage of the water outlet, and the anti-blocked performance is excellent. The impulse frequency which is adjustable within a large range can be reduced at the same irrigation strength; and an impulse type drip irrigation system without need of a filter is formed by drip irrigation emitter with larger water outlet apertures. The impulse type drip irrigation system has the characteristics of simple structure, low investment cost, easy acceptation in market and in favour of application and popularization.
Description
Technical field:
The present invention relates to the field irrigation field, relate in particular to a kind of pulse drip irrigation system of anti-obstruction.
Background technology:
The pulsed irrigation system is that American I ntertec company researchs and develops a brand-new water-saving irrigation installation successfully in the eighties in 20th century; Its outstanding advantage is to have excellent performance of anti-blockage; Solve the susceptible to plugging difficult problem of irrigation system effectively, saved expensive meticulous filtration system.The pulsed irrigation system comprises: supply water to do, arm, pulser assembly, the elasticity of pouring water hollow billet and the water jet assembly installed in the stem of every symmetrical arm.Wherein, the pulser assembly is made up of parts such as frequency controller, pulse valve, pressure-regulating valve and fast interfaces, is the control centre of system.Therefore the elasticity of pouring water hollow billet is called the elasticity hollow billet of pouring water by the dedicated elas-tic made.The water jet assembly is made up of shower nozzle, vertical tube, water jet, support bar etc.Major defect is: 1, complex structure, and the elasticity of pouring water hollow billet needs the dedicated elas-tic made, and input cost is too high, is not suitable for national conditions; 2, back water jet water spray carries out after leaning on the release of previous water jet water spray successively, and any water jet breaks down, and system is all out of service; 3, the pulsed irrigation system is that mode through pulser assembly sluicing decompression starts water jet water spray process; Each is taken turns when starting the water jet water spray; The part of pressurized water is directly released in first water jet to pulser of the elasticity of respectively pouring water hollow billet assembly pipeline; Existing energy loss has water loss again.
China was exclusively introduced this patented technology of the U.S. and had been produced this equipment by Ying Te Tyke, Tianjin slight irrigation company in 1993, but eventually because of " not acclimatized ", was not suitable for national conditions, and stopped to produce.
The home equipment situation; The enforcement period of the ninth five-year plan, Laiwu Plastic Products Ltd., Shandong has born " pulse drip irrigation system " country " 95 " emphasis tackling of key scientific and technical problems special topic; Having developed with capsule impulse generator and quantitative drip irrigation pipe irrigator is the pulse drip irrigation system of primary structure; Filled up the blank of domestic pulse irrigation installation, it is simple in structure, and input cost is well below the Intertec Company products.Capsule impulse generator drives one section length and apopore quantity, the big or small quantitative drip irrigation pipe irrigator that all can not change of being processed with apopore at sidewall; The size of the capsule of capsule impulse generator has determined the length of quantitative drip irrigation pipe irrigator and quantity, the size of apopore, and the capsule through the capsule impulse generator supplies water fast to quantitative drip irrigation pipe irrigator and realizes the pulse irrigation with stopping fast supplying water.There is following defective in this product: 1, pulse frequency can't be adjusted, and also just can not adjust the intensity of pouring water as required; 2, pulse frequency is too high, under the situation of the intensity of pouring water equally, causes the apopore aperture too small, and Φ 0.6mm is only arranged, and does not avoid the obstruction SENSITIVE SIZE of aperture less than 0.7mm, so, also need filter to filter.And the pulse frequency of Intertec company pulse irrigation product is adjustable, and slower, under the situation of the intensity of pouring water equally; The apopore aperture is Φ 4mm; Granule foreign all can pass through in the general water, and therefore, the pulse of Intertec company is irrigated product and generally need not to filter.3, can cause negative pressure suction-type apopore to stop up; The pulse drip irrigation system of said structure; The capsule impulse generator stops to supply water fast, can cause the water generates " resilience " in the quantitative drip irrigation pipe irrigator pipeline behind the capsule impulse generator, forms negative pressure at the apopore of quantitative drip irrigation pipe irrigator; Cause negative pressure suction-type apopore to stop up easily, be positioned at quantitative drip irrigation pipe irrigator tail end apopore more so.Obviously, above-mentioned defective, making with capsule impulse generator and quantitative drip irrigation pipe irrigator is the pulse drip irrigation system of primary structure, is making a discount aspect the performance of anti-blockage of pulse irrigation pursuit.
Summary of the invention:
The object of the present invention is to provide a kind of pulse frequency adjustable, simple in structure, cost is low, and the irrigator apopore does not have negative pressure, the pulse drip irrigation system that performance of anti-blockage is excellent.
The objective of the invention is to realize like this:
A kind of pulse drip irrigation system comprises: water source, water pump, main, arm, pulse valve, hollow billet, drip emitter, and the water inlet of water pump is connected with the water source; The delivery port of water pump is connected with the main water inlet, and the main apopore is connected with arm, and arm is connected with some hollow billets through several pulse valves; The water inlet of pulse valve leads to arm, and the delivery port of pulse valve leads to hollow billet, and every hollow billet is provided with several drip emitters; Pulse valve comprises: valve body, water inlet, intake antrum, lock body guide bar support, lock body guide rod, lock body, lock groove, water chamber, lock body push-and-pull spring, delivery port, barrier film, control chamber, barrier film extension spring, control chamber intake-outlet, control chamber water inlet pipe and water outlet pipe, screw rod, thumb wheel, and laterally main cross section is circle in intake antrum, water chamber, the control chamber chamber, and lock body, lock groove are truncated cone-shaped and contact-making surface coincide each other; The lock body is processed by elastomeric material, and lock body push-and-pull spring is a volute spring, and barrier film is by the ripply soft silastic material circular film of outer rim; Cover on the two sides of circular film middle part and fixing circular corrosion resistant plate and processing, the area of circular corrosion resistant plate is greater than the major part area of lock body, and the control chamber water inlet pipe and water outlet pipe is a circular cross section; One end of control chamber water inlet pipe and water outlet pipe communicates with intake antrum, and the other end communicates with control chamber through the control chamber intake-outlet, and the control chamber intake-outlet is the narrow slit of width less than control chamber water inlet pipe and water outlet pipe diameter; Narrow slit is positioned at the control chamber water inlet pipe and water outlet pipe near the below of control chamber one end and communicate with it, and narrow slit length direction and control chamber water inlet pipe and water outlet pipe parallel near a section of control chamber one end has screw thread on the screw rod; The valve body of contact also has respective threads with it, and screw thread adopts elastomeric material (for example poly fourfluoroplastics) to process, and makes it have stagnant water effect; One end of screw rod is positioned at outside the valve body and is fixed with thumb wheel, and the other end of screw rod enters into the inside of control chamber water inlet pipe and water outlet pipe near control chamber one end, and blocks the narrow slit runner of control chamber intake-outlet; Screw rod enters into the degree of depth of control chamber water inlet pipe and water outlet pipe near the inside of control chamber one end, has determined the size of the area of passage of control chamber intake-outlet narrow slit runner, can enter into the degree of depth of control chamber water inlet pipe and water outlet pipe near the inside of control chamber one end through rotation thumb wheel adjusting screw(rod); And then the size of regulating the area of passage of control chamber intake-outlet narrow slit runner; Intake antrum is communicated with water inlet, and lock body guide bar support, lock body guide rod are arranged in the intake antrum, and an end of lock body guide rod is fixed in the center of the big first end of lock body; The other end of lock body guide rod passes the guide hole of lock body guide bar support; Intake antrum is communicated with water chamber through the lock groove, and water chamber is provided with delivery port, and lock body push-and-pull spring is arranged in the water chamber; The cone point of lock body push-and-pull spring is fixed in microcephaly's one end of lock body; The tapered bottom end of lock body push-and-pull spring is fixed on the barrier film, and water chamber and control chamber separate through barrier film, and an end that is positioned at the barrier film extension spring of control chamber is fixed on the barrier film; The other end of barrier film extension spring is fixed on the valve body, and the center of water inlet, lock body guide rod, lock body, lock groove, lock body push-and-pull spring, barrier film, barrier film extension spring lateral cross section all point-blank.
Pulse drip irrigation irrigation process is following:
Send into main after the water at water source is pressurizeed by water pump and get into arm, the mode with the pulse current after through the pulse valve before each bar hollow billet gets into each bar hollow billet, irrigates crops through the drip emitter on each bar hollow billet, accomplishes the pulse drip irrigation and irrigates process.
The process that pulse valve forms the pulse current is following:
Pressure water gets into intake antrum from water inlet, and what receive lock groove inner brake body stops that pressure water can not get into water chamber, and flows out pulse valve.Pressure water in the intake antrum gets into control chamber through control chamber water inlet pipe and water outlet pipe, control chamber intake-outlet, and pressure in the control chamber and the pressure in the intake antrum reach unanimity, owing to there is not pressure water to flow in the water chamber; The pressure of control chamber is greater than the pressure in the water chamber, and barrier film receives the promotion of this pressure reduction, moves to the direction of water chamber; Pressure water in the intake antrum continues to get into control chamber through control chamber water inlet pipe and water outlet pipe, control chamber intake-outlet, and the direction that barrier film is able to continue to water chamber moves, the tensile membrane extension spring; Lock body push-and-pull spring is compressed, and the lock body of attempting to promote to be fixed on the lock body push-and-pull spring leaves the lock groove, lets current pass through; But owing to there is not pressure water to flow in the water chamber, there is huge pressure reduction, wouldn't the lock body be pushed away the lock groove in lock body both sides; Lock body push-and-pull spring continues to be compressed, and savings energy (elastic force) is enough to obey the huge pressure reduction of lock body both sides up to lock body push-and-pull spring because of being compressed the elastic force of putting aside; The lock body is pushed away the lock groove, and the lock body is pushed away the moment of lock groove, and the huge pressure reduction that lock body both sides exist rapidly disappears; Compressed lock body push-and-pull spring discharges rapidly; Promote the lock body and leave the lock groove fast, pressure water stream gets into water chamber through the lock groove fast and goes out delivery port, accomplishes the process of opening pulse valve.
After pressure water got into water chamber, pressure in the water chamber and the pressure in the control chamber reached unanimity, and barrier film resets under the pulling of barrier film extension spring gradually; Unnecessary water in the control chamber is clamp-oned intake antrum; Simultaneously, the barrier film that resets gradually newly gets into the lock groove through lock body push-and-pull spring pulling lock body weight, and the blocking-up pressure water gets into water chamber; Pulse valve is closed, and delivery port does not have pressure water to flow out.
Because the pressure water in the intake antrum is communicated with control chamber through control chamber water inlet pipe and water outlet pipe, control chamber intake-outlet, the pressure in the control chamber is consistent with the pressure in the intake antrum; Because do not have pressure water to flow in the water chamber, the water chamber internal pressure reduces gradually, the pressure of control chamber is greater than the pressure in the water chamber; Barrier film receives the promotion of this pressure reduction, moves to the direction of water chamber, and the pressure water in the intake antrum gets into control chamber through control chamber water inlet pipe and water outlet pipe, control chamber intake-outlet; The direction that barrier film is able to continue to water chamber moves, the tensile membrane extension spring, and lock body push-and-pull spring is compressed; The lock body of attempting to promote to be fixed on the lock body push-and-pull spring leaves the lock groove, lets current pass through, but owing to there is not pressure water to flow in the water chamber; Have huge pressure reduction in lock body both sides, wouldn't the lock body be pushed away the lock groove, lock body push-and-pull spring continues to be compressed; Savings energy (elastic force) is enough to obey the huge pressure reduction of lock body both sides up to lock body push-and-pull spring because of being compressed the elastic force of putting aside, and the lock body is pushed away the lock groove; The lock body is pushed away the moment of lock groove, and the huge pressure reduction that lock body both sides exist rapidly disappears, and compressed lock body push-and-pull spring discharges rapidly; Promote the lock body and leave the lock groove fast, pressure water stream gets into water chamber through the lock groove fast and goes out delivery port, accomplishes the process of opening pulse valve once more.
After pressure water got into water chamber, pressure in the water chamber and the pressure in the control chamber reached unanimity, and barrier film resets under the pulling of barrier film extension spring gradually; Unnecessary water in the control chamber is clamp-oned intake antrum; Simultaneously, the barrier film that resets gradually newly gets into the lock groove through lock body push-and-pull spring pulling lock body weight, and the blocking-up pressure water gets into water chamber; Pulse valve is closed once more, and delivery port does not have pressure water to flow out.
So repeatedly, form the pulse current.Pulse frequency depends on the speed of pressure water turnover control chamber; And the speed of pressure water turnover control chamber depends on the size of control chamber inlet and outlet channel area of passage, and the big I of control chamber inlet and outlet channel area of passage realizes through the degree that rotation thumb wheel adjusting screw(rod) blocks control chamber intake-outlet narrow slit runner.
The present invention has following good effect:
1, the pulse valve of pulse drip irrigation system of the present invention, the outstanding feature of the pulse current of formation is as shown in Figure 4, and it is fast that pressure rises; And decline is slow; Zooming pressure can the paired pulses drip irrigation system tamper form strong impact, and the pressure that slowly descends can not make the water generates " resilience " in the hollow billet behind the pulse drip irrigation system pulse valve, forms negative pressure at the apopore of irrigator; And causing negative pressure suction-type apopore to stop up, performance of anti-blockage is excellent;
2, the pulse valve of pulse drip irrigation system of the present invention, pulse frequency is adjustable on a large scale, under the same intensity of pouring water, can slow down pulse frequency, and adopts the big drip emitter in water outlet aperture to form the pulse drip irrigation system that need not filter;
3, pulse drip irrigation system of the present invention is simple in structure than imported product, and input cost is low, and market is easy to accept, and helps application.
Description of drawings:
Fig. 1 is the pulse valve original state sketch map of pulse drip irrigation system of the present invention.
Fig. 2 opens preceding momentary status sketch map for the pulse valve of pulse drip irrigation system of the present invention.
Fig. 3 opens the back view for the pulse valve of pulse drip irrigation system of the present invention.
Fig. 4 is that the pulsating water flowing pressure that the pulse valve of pulse drip irrigation system of the present invention forms changes sketch map.
Embodiment:
A kind of pulse drip irrigation system comprises: water source, water pump, main, arm, pulse valve, hollow billet, drip emitter, and the water inlet of water pump is connected with the water source; The delivery port of water pump is connected with the main water inlet, and the main apopore is connected with arm, and arm is connected with some hollow billets through several pulse valves; The water inlet of pulse valve leads to arm, and the delivery port of pulse valve leads to hollow billet, and every hollow billet is provided with several drip emitters; Pulse valve such as Fig. 1, Fig. 2, shown in Figure 3 comprise: valve body 1, water inlet 2, intake antrum 3, lock body guide bar support 4, lock body guide rod 5, lock body 6, lock groove 7, water chamber 8, lock body push-and-pull spring 9, delivery port 10, barrier film 11, control chamber 12, barrier film extension spring 13, control chamber intake-outlet 14, control chamber water inlet pipe and water outlet pipe 15, screw rod 16, thumb wheel 17, and laterally main cross section is circle in intake antrum 3, water chamber 8, control chamber 12 chambeies; Lock body 6, lock groove 7 are truncated cone-shaped and contact-making surface and coincide each other, and lock body 6 is processed by elastomeric material, and lock body push-and-pull spring 9 is a volute spring; Barrier film 11 is by the ripply soft silastic material circular film of outer rim, covers on the two sides of circular film middle part and fixing circular corrosion resistant plate and processing, and the area of circular corrosion resistant plate is greater than the major part area of lock body 6; Control chamber water inlet pipe and water outlet pipe 15 is a circular cross section, and an end of control chamber water inlet pipe and water outlet pipe 15 communicates with intake antrum 3, and the other end communicates with control chamber 12 through control chamber intake-outlet 14; Control chamber intake-outlet 14 is width narrow slits less than control chamber water inlet pipe and water outlet pipe 15 diameters, and narrow slit is positioned at control chamber water inlet pipe and water outlet pipe 15 near the below of control chamber 12 1 ends and communicate with it, narrow slit length direction and control chamber water inlet pipe and water outlet pipe 15 parallel near a section of control chamber 12 1 ends; On the screw rod 16 screw thread is arranged, the valve body 1 of contact also has respective threads with it, and screw thread adopts elastomeric material (for example poly fourfluoroplastics) to process; Make it have stagnant water effect, an end of screw rod 16 is positioned at outside the valve body 1 and is fixed with thumb wheel 17, and the other end of screw rod 16 enters into the inside of control chamber water inlet pipe and water outlet pipe 15 near control chamber 12 1 ends; And blocking the narrow slit runner of control chamber intake-outlet 14, screw rod 16 enters into the degree of depth of control chamber water inlet pipe and water outlet pipe 15 near the inside of control chamber 12 1 ends, has determined the size of the area of passage of control chamber intake-outlet 14 narrow slit runners; Can enter into the degree of depth of control chamber water inlet pipe and water outlet pipe 15 near the inside of control chamber 12 1 ends through rotation thumb wheel 17 adjusting screw(rod)s 16, and then regulate the size of the area of passage of control chamber intake-outlet 14 narrow slit runners, intake antrum 3 is communicated with water inlet 2; Lock body guide bar support 4, lock body guide rod 5 are arranged in the intake antrum 3; One end of lock body guide rod 5 is fixed in the center of the big first end of lock body 6, and the other end of lock body guide rod 5 passes the guide hole of lock body guide bar support 4, and intake antrum 3 is communicated with water chamber 8 through lock groove 7; Water chamber 8 is provided with delivery port 10; Lock body push-and-pull spring 9 is arranged in the water chamber 8, and the cone point of lock body push-and-pull spring 9 is fixed in microcephaly's one end of lock body 6, and the tapered bottom end of lock body push-and-pull spring 9 is fixed on the barrier film 11; Water chamber 8 separates through barrier film 11 with control chamber 12; An end that is positioned at the barrier film extension spring 13 of control chamber 12 is fixed on the barrier film 11, and the other end of barrier film extension spring 13 is fixed on the valve body 1, and the center of water inlet 2, lock body guide rod 5, lock body 6, lock groove 7, lock body push-and-pull spring 9, barrier film 11, barrier film extension spring 13 lateral cross section all point-blank.
Pulse drip irrigation irrigation process is following:
Send into main after the water at water source is pressurizeed by water pump and get into arm, the mode with the pulse current after through the pulse valve before each bar hollow billet gets into each bar hollow billet, irrigates crops through the drip emitter on each bar hollow billet, accomplishes the pulse drip irrigation and irrigates process.
The process that pulse valve forms the pulse current is following:
As shown in Figure 1, pressure water gets into intake antrum 3 from water inlet 2, receives stopping of lock groove 7 inner brake bodies 6, and pressure water can not get into water chamber 8, and flows out pulse valve.Pressure water in the intake antrum 3 gets into control chamber 12 through control chamber water inlet pipe and water outlet pipe 15, control chamber intake-outlet 14, and the pressure in pressure in the control chamber 12 and the intake antrum 3 reaches unanimity, owing to there is not pressure water to flow in the water chamber 8; The pressure of control chamber 12 is greater than the pressure in the water chamber 8, and barrier film 11 receives the promotion of this pressure reduction, moves to the direction of water chamber 8; Pressure water in the intake antrum 3 continues to get into control chamber 12 through control chamber water inlet pipe and water outlet pipe 15, control chamber intake-outlet 14, and the direction that barrier film 11 is able to continue to water chamber 8 moves, tensile membrane extension spring 13; Lock body push-and-pull spring 9 is compressed, and the lock body of attempting to promote to be fixed on the lock body push-and-pull spring 96 leaves lock groove 7, lets current pass through; But owing to there is not pressure water to flow in the water chamber 8, there is huge pressure reduction, wouldn't lock body 6 be pushed away lock groove 7 in lock body 6 both sides; Lock body push-and-pull spring 9 continues to be compressed, and savings energy (elastic force) is as shown in Figure 2; Be enough to obey the huge pressure reduction of lock body 6 both sides up to lock body push-and-pull spring 9 because of being compressed the elastic force of putting aside, lock body 6 is pushed away lock groove 7, lock body 6 is pushed away the moment of lock groove 7; The huge pressure reduction that lock body 6 both sides exist rapidly disappears; Compressed lock body push-and-pull spring 9 discharges rapidly, promotes lock body 6 and leaves lock groove 7 fast, and pressure water stream gets into water chamber 8 through lock groove 7 fast and goes out delivery port 10; As shown in Figure 3, accomplish the process of opening pulse valve.
After pressure water got into water chamber 8, the pressure in pressure in the water chamber 8 and the control chamber 12 reached unanimity, and barrier film 11 resets under the pulling of barrier film extension spring 13 gradually; Unnecessary water in the control chamber 12 is clamp-oned intake antrum 3, and simultaneously, the barrier film 11 that resets gradually gets into lock groove 7 again through lock body push-and-pull spring 9 pulling lock bodies 6; The blocking-up pressure water gets into water chamber 8; Pulse valve is closed, and delivery port 10 does not have pressure water to flow out, and is as shown in Figure 1.
Because the pressure water in the intake antrum 3 is communicated with control chamber 12 through control chamber water inlet pipe and water outlet pipe 15, control chamber intake-outlet 14, the pressure in the control chamber 12 is consistent with the pressure in the intake antrum 3; Because do not have pressure water to flow in the water chamber 8, water chamber 8 internal pressures reduce gradually, the pressure of control chamber 12 is greater than the pressure in the water chamber 8; Barrier film 11 receives the promotion of this pressure reduction, moves to the direction of water chamber 8, and the pressure waters in the intake antrum 3 get into control chambers 12 through control chamber water inlet pipe and water outlet pipe 15, control chamber intake-outlet 14; The direction that barrier film 11 is able to continue to water chamber 8 moves, tensile membrane extension spring 13, and lock body push-and-pull spring 9 is compressed; The lock body of attempting to promote to be fixed on the lock body push-and-pull spring 96 leaves lock groove 7, lets current pass through, but owing to there is not pressure water to flow in the water chamber 8; Have huge pressure reduction in lock body 6 both sides, wouldn't lock body 6 be pushed away lock groove 7, lock body push-and-pull spring 9 continues to be compressed; Savings energy (elastic force), as shown in Figure 2, be enough to obey the huge pressure reduction of lock body 6 both sides up to lock body push-and-pull spring 9 because of being compressed the elastic force of putting aside; Lock body 6 is pushed away lock groove 7, and lock body 6 is pushed away the moment of lock groove 7, and the huge pressure reduction that lock body 6 both sides exist rapidly disappears; Compressed lock body push-and-pull spring 9 discharges rapidly, promotes lock body 6 and leaves lock groove 7 fast, and pressure water stream gets into water chamber 8 through lock groove 7 fast and goes out delivery port 10; As shown in Figure 3, accomplish the process of opening pulse valve once more.
After pressure water got into water chamber 8, the pressure in pressure in the water chamber 8 and the control chamber 12 reached unanimity, and barrier film 11 resets under the pulling of barrier film extension spring 13 gradually; Unnecessary water in the control chamber 12 is clamp-oned intake antrum 3, and simultaneously, the barrier film 11 that resets gradually gets into lock groove 7 again through lock body push-and-pull spring 9 pulling lock bodies 6; The blocking-up pressure water gets into water chamber 8; Pulse valve is closed once more, and delivery port 10 does not have pressure water to flow out, and is as shown in Figure 1.
So repeatedly, form the pulse current.Pulse frequency depends on the speed of pressure water turnover control chamber 12; And the speed of pressure water turnover control chamber 12 depends on the size of control chamber 12 inlet and outlet channel area of passages, and the big I of control chamber 12 inlet and outlet channel area of passages realizes through the degree that rotation thumb wheel 17 adjusting screw(rod)s 16 block control chamber intake-outlet 14 narrow slit runners.
Claims (1)
1. pulse drip irrigation system, it is characterized in that: comprise water source, water pump, main, arm, pulse valve, hollow billet, drip emitter, the water inlet of water pump is connected with the water source; The delivery port of water pump is connected with the main water inlet, and the main apopore is connected with arm, and arm is connected with some hollow billets through several pulse valves; The water inlet of pulse valve leads to arm, and the delivery port of pulse valve leads to hollow billet, and every hollow billet is provided with several drip emitters; Pulse valve is made up of valve body (1), water inlet (2), intake antrum (3), lock body guide bar support (4), lock body guide rod (5), lock body (6), lock groove (7), water chamber (8), lock body push-and-pull spring (9), delivery port (10), barrier film (11), control chamber (12), barrier film extension spring (13), control chamber intake-outlet (14), control chamber water inlet pipe and water outlet pipe (15), screw rod (16), thumb wheel (17), and laterally main cross section is circle in intake antrum (3), water chamber (8), control chamber (12) chamber, and lock body (6), lock groove (7) are truncated cone-shaped and contact-making surface coincide each other; Lock body (6) is processed by elastomeric material, and lock body push-and-pull spring (9) is a volute spring, and barrier film (11) is by the ripply soft silastic material circular film of outer rim; Cover on the two sides of circular film middle part and fixing circular corrosion resistant plate and processing, the area of circular corrosion resistant plate is greater than the major part area of lock body (6), and control chamber water inlet pipe and water outlet pipe (15) is a circular cross section; One end of control chamber water inlet pipe and water outlet pipe (15) communicates with intake antrum (3), and the other end communicates with control chamber (12) through control chamber intake-outlet (14), and control chamber intake-outlet (14) is the narrow slit of width less than control chamber water inlet pipe and water outlet pipe (15) diameter; Narrow slit is positioned at control chamber water inlet pipe and water outlet pipe (15) near the below of control chamber (12) one ends and communicate with it, narrow slit length direction and control chamber water inlet pipe and water outlet pipe (15) parallel near a section of control chamber (12) one ends, and screw rod has screw thread on (16); The valve body (1) of contact also has respective threads with it, and screw thread adopts elastomeric material to process, and makes it have stagnant water effect; One end of screw rod (16) is positioned at outside the valve body (1) and is fixed with thumb wheel (17), and the other end of screw rod (16) enters into the inside of control chamber water inlet pipe and water outlet pipe (15) near control chamber (12) one ends, and blocks the narrow slit runner of control chamber intake-outlet (14); Screw rod (16) enters into the degree of depth of control chamber water inlet pipe and water outlet pipe (15) near the inside of control chamber (12) one ends, has determined the size of the area of passage of control chamber intake-outlet (14) narrow slit runner, can enter into the degree of depth of control chamber water inlet pipe and water outlet pipe (15) near the inside of control chamber (12) one ends through rotation thumb wheel (17) adjusting screw(rod) (16); And then the size of regulating the area of passage of control chamber intake-outlet (14) narrow slit runner; Intake antrum (3) is communicated with water inlet (2), and lock body guide bar support (4), lock body guide rod (5) are arranged in the intake antrum (3), and an end of lock body guide rod (5) is fixed in the center of the big first end of lock body (6); The other end of lock body guide rod (5) passes the guide hole of lock body guide bar support (4); Intake antrum (3) is communicated with water chamber (8) through lock groove (7), and water chamber (8) is provided with delivery port (10), and lock body push-and-pull spring (9) is arranged in the water chamber (8); The cone point of lock body push-and-pull spring (9) is fixed in microcephaly's one end of lock body (6); The tapered bottom end of lock body push-and-pull spring (9) is fixed on the barrier film (11), and water chamber (8) and control chamber (12) separate through barrier film (11), and an end that is positioned at the barrier film extension spring (13) of control chamber (12) is fixed on the barrier film (11); The other end of barrier film extension spring (13) is fixed on the valve body (1), and the center of water inlet (2), lock body guide rod (5), lock body (6), lock groove (7), lock body push-and-pull spring (9), barrier film (11), barrier film extension spring (13) lateral cross section all point-blank.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011100741541A CN102172197B (en) | 2011-03-28 | 2011-03-28 | Impulse type drip irrigation system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2011100741541A CN102172197B (en) | 2011-03-28 | 2011-03-28 | Impulse type drip irrigation system |
Publications (2)
Publication Number | Publication Date |
---|---|
CN102172197A CN102172197A (en) | 2011-09-07 |
CN102172197B true CN102172197B (en) | 2012-06-27 |
Family
ID=44515593
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN2011100741541A Expired - Fee Related CN102172197B (en) | 2011-03-28 | 2011-03-28 | Impulse type drip irrigation system |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN102172197B (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US9695965B2 (en) | 2015-02-01 | 2017-07-04 | Guilboa S.A.C. | Integral valve |
Families Citing this family (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102499020B (en) * | 2011-09-30 | 2013-01-23 | 中国农业科学院农田灌溉研究所 | Multilevel distribution type constant pressure irrigation system |
JP6710612B2 (en) * | 2016-09-21 | 2020-06-17 | 株式会社エンプラス | Emitter and drip irrigation tubes |
CN107725049B (en) * | 2017-10-31 | 2024-05-14 | 长安大学 | Self-pressurization type anti-blocking hydraulic cutting pick device |
CN107660454A (en) * | 2017-11-15 | 2018-02-06 | 四川农业大学 | A kind of waterpower control type anti-clogging micro-irrigation emitter |
CN107926662B (en) * | 2017-12-26 | 2023-03-21 | 贵州大学 | Micro-irrigation equipment for agricultural irrigation and drainage |
CN110024664A (en) * | 2019-04-17 | 2019-07-19 | 镇江市高等专科学校 | A kind of agricultural drop irrigation control device |
CN111406612B (en) * | 2020-05-08 | 2021-11-12 | 哈尔滨东水智慧农业科技开发有限公司 | Modern agricultural drip irrigation equipment |
CN114830903B (en) * | 2022-05-16 | 2023-02-21 | 南京工程学院 | Water and fertilizer integrated irrigation system with photovoltaic power generation function |
Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2366182Y (en) * | 1999-03-24 | 2000-03-01 | 中国科学院石家庄农业现代化研究所 | Atomized miniature spraying head |
CN2643646Y (en) * | 2003-08-04 | 2004-09-29 | 国家节水灌溉杨凌工程技术研究中心 | Self-flushing anti-blocking drip irrigation emitter |
Family Cites Families (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2296619Y (en) * | 1997-04-28 | 1998-11-11 | 山东省莱芜塑料制品(集团)总厂 | Miniature irrigation impulse generator |
JP2001269071A (en) * | 2000-03-28 | 2001-10-02 | Agurisu:Kk | Watering nozzle and watering tool |
CN2698062Y (en) * | 2004-04-30 | 2005-05-11 | 天津英特泰克灌溉技术有限公司 | Flow regulator |
CN202035345U (en) * | 2011-03-28 | 2011-11-16 | 中国农业科学院农田灌溉研究所 | Pulse drop irrigation system |
-
2011
- 2011-03-28 CN CN2011100741541A patent/CN102172197B/en not_active Expired - Fee Related
Patent Citations (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN2366182Y (en) * | 1999-03-24 | 2000-03-01 | 中国科学院石家庄农业现代化研究所 | Atomized miniature spraying head |
CN2643646Y (en) * | 2003-08-04 | 2004-09-29 | 国家节水灌溉杨凌工程技术研究中心 | Self-flushing anti-blocking drip irrigation emitter |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US9695965B2 (en) | 2015-02-01 | 2017-07-04 | Guilboa S.A.C. | Integral valve |
Also Published As
Publication number | Publication date |
---|---|
CN102172197A (en) | 2011-09-07 |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN102172197B (en) | Impulse type drip irrigation system | |
CN102139254B (en) | Pulse water flow forming system driven by hydraulic power of fountain and surf | |
CN102177833B (en) | Pulse micro-sprinkler irrigation system | |
CN102177834B (en) | Pulse subsurface irrigation system | |
CN210097970U (en) | Steel sprays and uses shower nozzle structure | |
CN102179097B (en) | Pulse type backwashing device for filter | |
CN201475456U (en) | Liquid constant flow regulating valve | |
CN202035346U (en) | Pulse micro-irrigation system | |
CN202035348U (en) | Pulse underground irrigation system | |
CN102861682B (en) | Pressure automatic variable diameter spray head | |
CN102284389A (en) | Anti-blockage drip irrigation douche | |
CN202035345U (en) | Pulse drop irrigation system | |
CN201997424U (en) | Fountain or surfing hydraulic driven pulse water flow forming system | |
CN202283510U (en) | Fluid pulse ejecting device | |
CN201957536U (en) | Water pressure regulation and control valve | |
CN201978582U (en) | Pulse-type back-flushing device of filter | |
CN105736781A (en) | Pressure reduction throttling valve and application method | |
CN109911972A (en) | Dissolved air releaser reaches air supporting device including it | |
CN102284387A (en) | Venturi principle-based irrigator | |
CN213343740U (en) | Irrigation water dropper and irrigation system | |
CN209931110U (en) | Detachable pressure compensation type water dropper | |
CN209914656U (en) | Automatic telescopic suspension pipe for sprinkler | |
CN101733203B (en) | Constant density automatic and continuous discharge device of high speed centrifuge and separator | |
RU2417845C1 (en) | Rain-generating device of sprinkling machine | |
CN202097052U (en) | Adjustable water-air mixing water-saving device |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C06 | Publication | ||
PB01 | Publication | ||
C10 | Entry into substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20120627 Termination date: 20150328 |
|
EXPY | Termination of patent right or utility model |