A sprinkler system attached to a street light pole

By installing detectors and sprinkler systems on streetlights, air quality can be monitored in real time and spraying can be intelligently controlled to reduce dust, thus solving the coordination problem between dust suppression and greening irrigation and improving the efficiency of urban environmental management and resource utilization.

CN119565294BActive Publication Date: 2026-01-16CHINA FIRST METALLURGICAL GROUP
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Patent Information

Application Number
CN202411594762.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-10
Publication Date
2026-01-16
Estimated Expiration
2044-11-10

AI Technical Summary

Technical Problem

The existing dust suppression process cannot be carried out intelligently, and the watering and greening irrigation work cannot be coordinated, resulting in low efficiency and waste of resources.

Method used

A sprinkler system attached to a street light pole was designed, including a detector, a sprinkler unit, and a control system. The detector monitors the air conditions in real time, and the central processor and data analysis module determine the degree of pollution. The system controls the sprinkler unit to carry out intelligent spraying to reduce dust, and also takes into account the irrigation needs of the green belt.

Benefits of technology

It enables intelligent dust suppression spraying based on dust volume, improving dust suppression efficiency, reducing resource waste, protecting residents' health, and coordinating with the irrigation of green belts, thereby improving the utilization efficiency of urban infrastructure.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the field of watering, in particular to a kind of spray system attached to street lamp pole, comprising: detector, the detector is arranged on street lamp pole, the detector is used to detect gas state;Spray part, the spray part is arranged on street lamp pole, and the spray part is used to irrigate;Control system, the control system is electrically connected with the detector and the spray part, and the control system is used to receive the detector state after driving the spray part irrigation dust removal, the present application is monitored in real time dust state in air by detector, obtains by data acquisition module, central processing unit handles, data analysis module analyzes, sending module sends and execution module executes, let spray part be intelligently triggered, and real time according to dust state multiple or targeted spray dust, and only dust amount exceeds threshold value is only can intelligently trigger its work, improve efficiency, reduce waste, protect the respiratory health and vision of road user.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of spray dust reduction, in particular to a spray system attached to a street lamp pole. BACKGROUND

[0002] With the continuous expansion of modern cities, the heat island effect and air pollution problems of the city are increasingly prominent, which poses a serious threat to the quality of life of urban residents. In order to deal with these problems, city managers usually use water trucks to spray water to reduce dust, but this method has many drawbacks.

[0003] 1. The spray dust reduction process can only act at a time and cannot perform dust reduction work in real time according to the dust condition;

[0004] 2. The purpose of spraying is single and cannot cooperate with the position of the street lamp to give efficient irrigation to the green belt, so that multiple water passing work cannot form a good coordination effect, and the work efficiency is low. SUMMARY

[0005] The technical problem to be solved by the present application is to overcome the technical problems in the prior art that the spray dust reduction process cannot be intelligently performed and cannot form a good coordination effect between multiple water passing work, and to provide a spray system attached to a street lamp pole to solve the problems of intelligent spray dust reduction and coordinated irrigation of the green belt with the infrastructure road pole in the prior art.

[0006] The technical scheme adopted by the present application to solve the technical problem is: a spray system attached to a street lamp pole, comprising:

[0007] a detector, the detector is arranged on the street lamp pole, and the detector is used for detecting the state of the gas;

[0008] a spray part, the spray part is arranged on the street lamp pole, and the spray part is used for irrigation;

[0009] a control system, the control system is electrically connected with the detector and the spray part, and the control system is used for driving the spray part to irrigate and remove dust after receiving the state of the detector;

[0010] The control system comprises a data acquisition module, a central processing unit, a data analysis module, a sending module and an execution module, wherein,

[0011] the acquisition module is used for acquiring the air state monitored by the detector, and sending the air state to the central processing unit through the sending module, the central processing unit is used for processing the air state data to obtain air pollution degree information, and sending the air pollution degree information to the data analysis module through the sending module, and the data analysis module is used for analyzing whether the air pollution degree information reaches a threshold value;

[0012] If the threshold is reached, the data analysis module sends a start instruction to the execution module, and the execution module drives the spraying part to irrigate dust removal.

[0013] Further, the data acquisition module is used to acquire the concentration information of dust, and the time when the concentration information value exists is recorded, wherein the calculation formula is:

[0014] D=V / K*10(S);

[0015] D is the concentration, V is the voltage, K is the sensitivity coefficient of the sensor, and 10(S) is the duration.

[0016] Further, the data acquisition module is also used to acquire the volume range of dust in the air, and determine whether it is less than a preset value according to the volume range;

[0017] If the volume range is less than the preset value, it is determined that the air pollution degree is within the controllable range;

[0018] If the volume range is greater than the preset value, it is determined that the air pollution degree exceeds the limit value, and the central processing unit sends the gas pollution degree information to the data analysis module through the sending module, the data analysis module sends a start instruction to the execution module, and the execution module drives the spraying part to irrigate dust removal.

[0019] Further, the execution module comprises:

[0020] The execution unit is used to control the opening and closing of the spraying part;

[0021] The pressurizing unit is used to control the spraying part to increase water pressure;

[0022] The distance adjusting unit is used to adjust the irrigation range of the spraying part.

[0023] Further, it also includes a remote terminal;

[0024] The data analysis module sends the gas pollution state to the remote terminal through the sending module;

[0025] After the gas pollution state is displayed on the remote terminal, the spraying part can be controlled to open and close by the central processing unit.

[0026] Further, the spraying part is symmetrically and staggered arranged at different heights, and two through holes are arranged on the left and right sides of the street lamp pole.

[0027] The spraying part comprises a fixed tube penetrating the through hole, and two arc-shaped clamping plates embedded in the fixed tube, wherein one inner wall of the arc-shaped clamping plate is attached to the outer side of the street lamp pole, and the other outer side of the arc-shaped clamping plate is attached to the inner side of the street lamp pole.

[0028] The distance between the two arc-shaped clamping plates is equal to the wall thickness of the street lamp pole, and the height of the arc-shaped clamping plate is greater than the height of the through hole.

[0029] The two arc-shaped clamping plates are used to drive the fixed tube to adjust the height along the street lamp pole.

[0030] Further, two hand screws are screwed on one of the arc-shaped clamping plates, wherein,

[0031] The two hand screws are used to position the height of the fixed tube after being screwed.

[0032] Further, the spraying part further comprises a rotating tube rotatably connected to the fixed tube, and two electronic spraying heads mirror-connected to the upper and lower ends of the rotating tube.

[0033] The electronic spraying heads are electrically connected to the execution module.

[0034] Further, the spraying part further comprises a fixed ring arranged on the rotating tube, a plurality of circular grooves arranged circumferentially on one end of the fixed ring, two flat notches arranged on the outer wall of the upper and lower ends of the fixed tube, a movable ring fitted to the two flat notches and sleeved on the outer wall of the fixed tube, and a plurality of circular columns arranged circumferentially on one end of the movable ring.

[0035] The plurality of circular columns are elastic, and the plurality of circular columns correspond one-to-one to the plurality of circular grooves, wherein,

[0036] The movable ring can drive the plurality of circular columns to move along the fixed tube, so that the plurality of circular columns are inserted into the plurality of circular grooves to fasten the rotating tube and the fixed tube.

[0037] Further, one end of the fixed tube is connected to a water injection pipe through a flexible water pipe, and one end of the water injection pipe penetrates the ground and is connected to a water taking device or a water source.

[0038] A valve is arranged on the water injection pipe.

[0039] The beneficial effects of this invention are as follows: This invention uses a detector to monitor the dust status in the air in real time. Data is acquired through a data acquisition module, processed by a central processing unit, analyzed by a data analysis module, sent by a sending module, and executed by an execution module. This intelligently triggers the spray unit, allowing for multiple or targeted dust suppression sprays based on the dust level. The system only activates when the dust level exceeds a threshold, improving efficiency, reducing waste, and protecting the respiratory health and visibility of pedestrians. Furthermore, this product is attached to streetlight poles, allowing for quick setup and modification, providing diverse protective and cleaning effects. Based on the construction logic of streetlight poles adjacent to green belts, the spray unit on the streetlight pole can also act on the green belt, providing both water and cleaning effects while suppressing dust, thus coordinating irrigation and dust suppression effectively. Attached Figure Description

[0040] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0041] Figure 1 This is a schematic diagram of the system structure of the present invention;

[0042] Figure 2 This is a schematic diagram of the method steps of the present invention;

[0043] Figure 3 This is a front view structural diagram of the present invention;

[0044] Figure 4 This is a diagram showing the streetlight pole and the arc-shaped clamp in their separate states according to the present invention;

[0045] Figure 5 This is a partial perspective view of the spray section of the present invention;

[0046] Figure 6 This is the invention Figure 5 Enlarged view of point A in the middle.

[0047] In the diagram: 1. Detector; 2. Sprayer section; 21. Fixed pipe; 22. Arc-shaped clamp; 23. Rotating pipe; 24. Electronic spray head; 25. Fixed ring; 26. Circular groove; 27. Flat cut; 28. Movable ring; 29. ​​Frustum column; 3. Streetlight pole; 4. Hand-tightened bolt; 5. Water injection pipe; 6. Water dispenser; 7. Through hole. Detailed Implementation

[0048] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.

[0049] Example 1

[0050] like Figures 1-3 As shown, the present invention provides a sprinkler system attached to a street light pole, comprising:

[0051] a detector 1 arranged on the street lamp pole 3, the detector 1 is used for detecting the state of the gas, the detector 1 includes but is not limited to atmospheric monitoring equipment and PM detector;

[0052] a spraying part 2 arranged on the street lamp pole 3, the spraying part 2 is used for irrigation;

[0053] a control system electrically connected with the detector 1 and the spraying part 2, and the control system is used for driving the spraying part 2 to irrigate and remove dust after receiving the state of the detector 1;

[0054] the control system includes a data acquisition module, a central processing unit, a data analysis module, a sending module and an execution module, wherein,

[0055] the acquisition module is used for acquiring the air state monitored by the detector 1, and sending the air state to the central processing unit through the sending module, the central processing unit is used for processing the air state data to obtain air pollution degree information, and sending the air pollution degree information to the data analysis module through the sending module, the data analysis module is used for analyzing whether the air pollution degree information reaches a threshold value;

[0056] If the threshold is reached, the data analysis module sends a start instruction to the execution module, and the execution module drives the spraying part 2 to irrigate dust removal. Specifically, in the prior art, water spraying and dust removal are performed by a water spraying vehicle. Due to factors such as vehicle speed and water quantity control, precise dust removal cannot be achieved during driving, resulting in low equipment efficiency, high purchase, maintenance and operation costs of the water spraying vehicle, and great economic pressure on city managers. When the water spraying vehicle drives on the road, it is easy to cause traffic congestion and aggravate urban traffic pressure. In view of the above problems, the existing resources in urban road construction need to be more effectively utilized. Usually, street lamps, green belts and irrigation systems are provided beside urban roads. If these resources can be effectively integrated, especially if the green belt spraying device is effectively connected with the street lamp, the microclimate beside the road can be significantly improved, and the air can be purified and the green belt can be maintained. Such an innovative design not only hopes to solve the problems of heat island effect and air pollution, but also improves the utilization efficiency of urban infrastructure and creates a more livable living environment for urban residents. The dust state in the air is monitored in real time by the detector 1, the data acquisition module acquires, the central processor processes, the data analysis module analyzes, the sending module sends and the execution module executes, so that the spraying part 2 is intelligently triggered. According to the dust state, the water mist sprayed by the spraying part 2 adheres to the dust, and the dust-carrying water mist falls together, the dust-carrying water mist can also act on the plants of the green belt, improve the efficiency, reduce the waste, and protect the respiratory health and vision of the road users. Moreover, the product is attached to the street lamp pole 3, and can be quickly set and transformed, and has diversified protection and cleaning effects. According to the construction logic that the street lamp pole 3 is close to the green belt, the spraying part 2 can also act on the green belt on the street lamp pole 3, and has the effects of watering and cleaning the green belt while removing dust, so that the irrigation work and the dust removal work are well coordinated. By combining the street lamp pole 3 with the spraying device and adding an intelligent monitoring and control system, the problems of separate road watering and green maintenance in the prior art are solved, the automatic spraying and maintenance function is achieved, the use of the water spraying vehicle is reduced, the traffic pressure is relieved, the air quality is improved, and the application of the intelligent monitoring and control system solves the problems of low efficiency and difficulty in precise control in traditional road watering and green maintenance which usually rely on manual operation. By integrating the street lamp pole and the spraying device, the device not only has the lighting function, but also can perform road watering and green maintenance, and realizes the multifunctionalization of a single facility.

[0057] Optionally, the data acquisition module is configured to acquire concentration information of the dust and record a time at which the concentration information value exists, wherein a calculation formula is:

[0058] D=V / K*10S

[0059] D is the concentration, V is the voltage, K is the sensitivity coefficient of the sensor, 10S is the duration, specifically,

[0060] D is the concentration value of dust in the detection environment, and V is the voltage value converted from the electric signal generated by the sensor during the detection of dust. This voltage value has a certain correspondence with the existence and concentration of dust, and is a characteristic parameter of the sensor, which reflects the sensitivity of the sensor to the change of dust concentration. The corresponding detection instrument 1 has a duration of 10 seconds. This formula can be applied to dust monitoring equipment. By measuring the voltage value output by the sensor and combining the known sensitivity coefficient, the dust concentration in the environment can be calculated. When the dust concentration exists for 10 seconds, the related equipment is triggered to work, avoiding the work of the spraying part 2 due to short-term environmental pollution. The short-term dust concentration state can be freely contacted, saving the use of water resources

[0061] Optionally, the data acquisition module is further configured to acquire a volume range of dust in the air, and determine whether the volume range is less than a preset value according to the volume range.

[0062] If the volume range is less than the preset value, it is determined that the air pollution degree is within a controllable range.

[0063] If the volume range is greater than the preset value, it is determined that the air pollution degree exceeds a threshold value, and the central processing unit sends the gas pollution degree information to the data analysis module through the sending module. The data analysis module sends a start instruction to the execution module, and the execution module drives the spraying part 2 to irrigate dust. Specifically, the dust concentration range determines the pollution range. When the dust concentration range is small, it can be quickly diluted or dispersed, and its state is removed in a short time, so it is not necessary to intervene by intervention measures, which also protects the waste of water resources to a certain extent. When the dust concentration range is large, the free dispersion speed and efficiency are too slow, and the spraying part 2 can timely and effectively intervene.

[0064] Optionally, the execution module comprises:

[0065] An execution unit, configured to control the opening and closing of the spraying part 2.

[0066] A pressurizing unit, configured to control the spraying part 2 to increase water pressure.

[0067] A distance adjusting unit, configured to adjust the irrigation range of the spraying part 2. Specifically, based on the execution of the spraying part 2, the pressurizing unit can control the water pressure, and the distance adjusting unit can adjust the spraying distance, thereby completing the control of the spraying work.

[0068] Further, a remote terminal is further included.

[0069] The data analysis module sends the gas pollution state to the remote terminal through the sending module;

[0070] The gas pollution state displayed on the remote terminal can be used to control the opening and closing of the spraying part 2 through the central processor. Specifically, the connection mode of the remote terminal can be electrical connection or wireless network connection, and the remote terminal can receive background instructions. The remote terminal is a mobile phone or a computer, which can manually operate and intervene in the spraying part 2. When the intelligent dust suppression fails or the effect is not good, timely remediation and emergency treatment can be performed.

[0071] Embodiment two

[0072] As shown in Figures 4-6 The spraying part 2 is symmetrically and staggered arranged at different heights, and the road lamp pole 3 is provided with two through holes 7 on the left and right sides;

[0073] The spraying part 2 comprises a fixed pipe 21 penetrating through the through hole 7 and two arc-shaped clamping plates 22 embedded in the fixed pipe 21. One inner wall of the arc-shaped clamping plate 22 is attached to the outer side of the road lamp pole 3, and the other outer side of the arc-shaped clamping plate 22 is attached to the inner side of the road lamp pole 3;

[0074] The distance between the two arc-shaped clamping plates 22 is equal to the wall thickness of the road lamp pole 3, and the height of the arc-shaped clamping plate 22 is greater than the height of the through hole 7, wherein

[0075] The two arc-shaped clamping plates 22 are used to drive the fixed pipe 21 to adjust the height along the road lamp pole 3. Specifically, the center of the arc-shaped clamping plate 22 is coincident with the center of the road lamp pole 3. The lower spraying part 2 is directed towards the green belt, mainly for irrigation, and the higher spraying part 2 is directed towards the road surface, mainly for dust suppression. In one state, the road lamp pole 3 is pre-set and does not consider the direction towards the green belt or away from the green belt. The opening state of the through hole 7 can be adjusted according to the actual application. The combination of the two arc-shaped clamping plates 22 and the fixed pipe 21 allows the distance and the rotation angle to be adjusted, so that the fixed pipe 21 can adapt to the angle and height of the subsequent irrigation or dust suppression work.

[0076] Optionally, two hand screws 4 are spirally connected to one of the arc-shaped clamping plates 22, wherein

[0077] The two hand screws 4 are used to position the height of the fixed pipe 21 after screwing. Specifically, the two hand screws 4 are away from the through hole 7. When the height of the fixed pipe 21 is adjusted along with the arc-shaped clamping plate 22, the hand screw 4 can be rotated to make the first end abut against the outer surface of the road lamp pole 3 to obtain the fastening effect of the height adjustment of the through hole 7. This operation method is fast and efficient, and the position of the two hand screws 4 makes the fastening force more balanced.

[0078] Optionally, the spraying part 2 further comprises a rotating pipe 23 rotatably connected to the fixed pipe 21, and two electronic spraying heads 24 symmetrically arranged on the upper and lower ends of the rotating pipe 23;

[0079] The electronic spraying heads 24 are electrically connected to the execution module. Specifically, the electronic spraying heads 24 have the function of rotating spraying, and two electronic spraying heads 24 are arranged on the rotating pipe 23. Normally, only one electronic spraying head 24 works, and the other one is standby. When one of the electronic spraying heads 24 is damaged, the two electronic spraying heads 24 can be replaced by rotating the rotating pipe 23 by 180 degrees, so as to achieve high-efficiency emergency repair work efficiency. The electronic spraying heads 24 work under the signal of the execution module.

[0080] Optionally, the spraying part 2 further comprises a fixed ring 25 arranged on the rotating pipe 23, a plurality of circular grooves 26 arranged on one end of the fixed ring 25 in a circumferential direction, two flat notches 27 arranged on the outer wall of the upper and lower ends of the fixed pipe 21, a movable ring 28 fitted on the two flat notches 27 and sleeved on the outer wall of the fixed pipe 21, and a plurality of circular columns 29 arranged on one end of the movable ring 28 in a circumferential direction;

[0081] The plurality of circular columns 29 are elastic, and the plurality of circular columns 29 correspond to the plurality of circular grooves 26 one by one.

[0082] The movable ring 28 can drive the plurality of circular columns 29 to move along the fixed pipe 21, so that the plurality of circular columns 29 are inserted into the plurality of circular grooves 26 to fasten the rotating pipe 23 and the fixed pipe 21. Specifically, the electronic spraying heads 24 cannot be fixed in angle after adjusting the angle of the rotating pipe 23. The two flat notches 27 can make the movable ring 28 unable to rotate and move along the fixed pipe 21 in a radial direction. The movable ring 28 drives the plurality of circular columns 29 to perform the insertion activity towards the plurality of circular grooves 26 during the radial movement of the movable ring 28. The insertion resistance of the plurality of circular columns 29 gradually increases until the plurality of circular columns 29 and the plurality of circular grooves 26 are in clearance fit or interference fit. The electronic spraying heads 24 are also locked after the angle adjustment of the rotating pipe 23, so as to ensure the stability after switching the working electronic spraying heads 24.

[0083] Optionally, one end of the fixed pipe 21 is connected to a water injection pipe 5 through a flexible water pipe, and one end of the water injection pipe 5 penetrates the ground and is connected to a water taking device 6 or a water source;

[0084] The water injection pipe 5 is provided with a valve. Specifically, the flexible water pipe ensures that the height and angle adjustment of the fixed pipe 21 is not disturbed. The water taking device 6 can take water on site by cooperating with an external dispatch water source after the water source is cut off. The water taking device 6 comprises a vertical pipe, a support connected to the vertical pipe by a clamp or a strap, and a water taking head screw-connected to the vertical pipe. The water taking device 6 is fast and easy to disassemble, portable and practical.

[0085] The above-described embodiments according to the present application are intended to be illustrative only. Changes can be made by those skilled in the art, without departing from the scope of the present application, which is defined by the following claims. The technical scope of the present application is not limited to the above-described embodiments. The technical scope of the present application must be determined based on the scope of the claims.

Claims

1. A sprinkler system attached to a street light pole, characterized by, The utility model relates to a street lamp pole dust removal device, including: detector (1) is arranged on street lamp pole (3), and detector (1) is used to detect gas state; Spray part (2) is arranged on street lamp pole (3), and spray part (2) is used to irrigate; Control system is electrically connected with detector (1) and spray part (2), and control system is used to receive the state of detector (1) and drive spray part (2) irrigation dust removal after; The control system includes data acquisition module, central processing unit, data analysis module, sending module and execution module, wherein, The acquisition module is used to obtain the air state monitored by the detector (1), and the air state is sent to the central processing unit through the sending module, the central processing unit is used to process the air state data to obtain the air pollution degree information, and the air pollution degree information is sent to the data analysis module through the sending module, and the data analysis module is used to analyze whether the air pollution degree information reaches the threshold value; If the threshold value is reached, the data analysis module sends the start instruction to the execution module, and the execution module drives the spray part (2) irrigation dust removal; The data acquisition module is used to obtain the concentration information of dust and record the time when the concentration information value exists, wherein the calculation formula is as follows: D=V / K×10 (S); D is the concentration, V is the voltage, K is the sensitivity coefficient of the sensor, and 10 (S) is the duration; The data acquisition module is also used to obtain the volume range of dust in the air, and judge whether the volume range is less than the preset value according to the volume range; If the volume range is less than the preset value, it is determined that the air pollution degree is within the controllable range; If the volume range is greater than the preset value, it is determined that the air pollution degree exceeds the threshold value, and the central processing unit sends the air pollution degree information to the data analysis module through the sending module, the data analysis module sends the start instruction to the execution module, and the execution module drives the spray part (2) irrigation dust removal; The spray part (2) is symmetrically and staggered arranged at different heights, and two through holes (7) are arranged on the left and right sides of the street lamp pole (3); The spray part (2) includes a fixed tube (21) penetrating through the through hole (7), two arc-shaped clamping plates (22) embedded in the fixed tube (21), wherein one inner wall of the arc-shaped clamping plate (22) is attached to the outer side of the street lamp pole (3), and the other arc-shaped clamping plate (22) is attached to the inner side of the street lamp pole (3); The distance between the two arc-shaped clamping plates (22) is equal to the wall thickness of the street lamp pole (3), and the height of the arc-shaped clamping plate (22) is greater than the height of the through hole (7), wherein, The two arc-shaped clamping plates (22) are used to drive the fixed tube (21) to adjust along the street lamp pole (3); The spray part (2) further includes a rotating tube (23) rotatably connected to the fixed tube (21), A fixed ring (25) is arranged on the rotating pipe (23), a plurality of circular grooves (26) are arranged on one end of the fixed ring (25) in a circle, two flat notches (27) are arranged on the outer wall of the upper and lower ends of the fixed pipe (21), a movable ring (28) is arranged on the two flat notches (27) and is sleeved on the outer wall of the fixed pipe (21), and a plurality of circular columns (29) are arranged on one end of the movable ring (28) in a circle; The plurality of circular columns (29) are elastic, and the plurality of circular columns (29) correspond to the plurality of circular grooves (26) one by one, wherein The movable ring (28) can drive the plurality of circular columns (29) to move along the fixed pipe (21), so that the plurality of circular columns (29) are inserted into the plurality of circular grooves (26) to fasten the rotating pipe (23) and the fixed pipe (21).

2. The spray system attached to the street lamp pole according to claim 1, wherein The execution module comprises: An execution unit, which is configured to control the opening and closing of the spraying part (2); A pressurizing unit, which is configured to control the increase of water pressure of the spraying part (2); A distance adjusting unit, which is configured to adjust the irrigation range of the spraying part (2).

3. The spray system attached to the street lamp pole according to claim 2, wherein Further comprising a remote terminal; The data analysis module sends the gas pollution state to the remote terminal through the sending module; The gas pollution state displayed on the remote terminal can be used to control the opening and closing of the spraying part (2) by the central processor.

4. The spray system attached to the street lamp pole according to claim 3, wherein Two hand screws (4) are screw-connected to one of the arc-shaped clamping plates (22), and The two hand screws (4) are used to position the height of the fixed pipe (21) after screwing.

5. The spray system attached to the street lamp pole according to claim 4, wherein The spraying part (2) is mirror-connected with two electronic spraying heads (24) arranged on the upper and lower ends of the rotating pipe (23); The electronic spraying heads (24) are electrically connected to the execution module.

6. The spray system attached to the street lamp pole according to claim 5, wherein One end of the fixed pipe (21) is connected with a water injection pipe (5) through a flexible water pipe, and one end of the water injection pipe (5) penetrates the ground and is connected with a water collector (6) or a water source; A valve is arranged on the water injection pipe (5).

Citation Information

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