Multifunctional water supply service station

By integrating multi-functional equipment in the water supply service station, the problem of single function of the water supply station is solved, and multi-functional functions such as water purification, information display, charging, meteorological detection and rain shelter are realized, which improves the comprehensive service experience and equipment service life of pastoral herdsmen in pastoral areas.

CN120486519AInactive Publication Date: 2025-08-15XI CANG JIA ZE MING KE JI YOU XIAN GONG SI
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Patent Information

Application Number
CN202510622707.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-15
Publication Date
2025-08-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing water supply service station has a single function and cannot meet the diverse needs of pastoral herdsmen.

Method used

Design a multi-functional water supply service station, integrating water treatment equipment, display screens, photovoltaic charging structures, meteorological detection structures and folding stools, etc., to realize comprehensive service functions, including water purification, information display, charging, meteorological detection and rain shelter, etc.

Benefits of technology

It has improved the comprehensive service capabilities of water supply stations, ensured drinking water safety, provided clean energy, real-time weather detection, protected equipment, improved equipment service life, and promoted social harmony.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a multifunctional water supply service station, and relates to the technical field of water supply. The multifunctional water supply service station comprises a box body. The display screen capable of propagandizing and displaying information is arranged, information such as policies and markets can be displayed in a rolling mode after the multifunctional control cabinet is networked, meanwhile, the system can be used for propagandizing ethnic groups and promoting social harmony, clean energy can be obtained through the photovoltaic charging structure, and power can be supplied to electric equipment of a water supply service station; a rain sheltering area is formed after the front baffle is supported, the herdsmen can sit and have a rest when the folding stool structure is turned over, the comprehensive service capacity of the water supply station is greatly improved in combination with the original water supply service capacity, meteorological information can be detected in real time through the meteorological detection structure, and the water supply station is convenient to use. The display screen, the water taking window and the photovoltaic charging structure can be protected by folding the front baffle and the upper baffle in extreme weather, and damage caused by strong wind and other extreme weather is avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of water supply, in particular to a multifunctional water supply service station. Background Art

[0002] The common drinking water service stations on the market are too single in functionality and can only provide water collection services. There is a lot of room for improvement. Therefore, it is necessary to provide a multifunctional water supply service station to solve the above problems. Summary of the Invention

[0003] In view of the deficiencies of the prior art, the present invention provides a multifunctional water supply service station, which solves the problem of single function of the prior art water supply service station.

[0004] To achieve the above objectives, the present invention is implemented through the following technical solutions: a multifunctional water supply service station, including a box body, a water treatment device is arranged inside the box body and near the rear wall, the water treatment device is composed of multiple water quality treatment devices and a reverse osmosis device, the rear wall of the box body is provided with a water inlet pipe for supplying water to the water treatment device, the front wall of the box body is provided with a water intake window for taking purified water, a battery pack is arranged inside the box body and on the right side of the water treatment device, a multifunctional control cabinet is arranged inside the box body and on the front side of the water treatment device, a maintenance door for convenient maintenance is provided on the right wall of the box body, a display screen for publicity and displaying information is fixedly connected to the front wall of the box body and on the left side of the water intake window, and a folding stool structure for convenient sitting and rest is provided on the front wall of the box body and below the display screen. The front wall of the box is rotatably connected to a front baffle for protecting the display screen and the water intake window near the upper wall. A first driving structure for driving the front baffle to rotate is provided between the front wall of the box and the front baffle. When the front baffle is driven to be perpendicular to the front wall of the box by the first driving structure, a rain shelter is formed between the front baffle and the front wall of the box. Multiple water treatment equipment and one reverse osmosis equipment can be used in combination or separately, and can be activated separately according to the different water source conditions in summer and winter in pastoral areas. Based on the premise of drinking water safety, different purification methods are adopted according to the different water quality of water sources in different periods. Not only does it ensure drinking water safety, but it can also save costs and increase the equipment life cycle. The display screen can scroll to display policy, market and other information after being connected to the network through the multi-functional control cabinet to help herders understand external dynamics. It can also be used to promote national unity and promote social harmony.

[0005] Preferably, the top of the box is rotatably connected to an upper baffle near the front wall, and a second driving structure for driving the upper baffle to flip is provided between the top of the box and the upper baffle, and the upper wall of the upper baffle and the upper wall of the box are respectively rotatably connected to the first fixing bracket and the second fixing bracket, and the upper wall of the first fixing bracket and the second fixing bracket are both provided with a photovoltaic charging structure, and a third driving structure for driving the first fixing bracket and the second fixing bracket to move is provided between the first fixing bracket and the upper baffle and between the second fixing bracket and the upper wall of the box, and a fixing box is fixedly connected to the inner front wall of the box near the left wall, and a device box is slidably connected to the inner wall of the fixed box, and the left wall of the device box passes through the left wall of the fixed box and the left wall of the box in sequence, and a fourth driving structure for driving the device box to move left and right is provided between the device box and the inner right wall of the fixed box, and a meteorological detection structure is provided on the inner wall of the device box through the third electric telescopic rod.

[0006] In order to facilitate the rest of passing herdsmen, preferably, the folding stool structure includes a stool panel and multiple groups of fourth electric telescopic rods. A groove is provided on the front wall of the box body and below the display screen. The stool panel is rotatably connected to the upper wall inside the groove. Multiple groups of the fourth electric telescopic rods are rotatably connected to the rear wall inside the groove. The ends of the extended shafts of multiple groups of the fourth electric telescopic rods are rotatably connected to the lower wall of the stool panel. The stool panel is driven to rotate by the extension and retraction of the extended shafts of the multiple groups of fourth electric telescopic rods. After the stool panel is flipped to the outside, it can be used for herdsmen to sit and rest.

[0007] In order to drive the front baffle to flip, preferably, the first driving structure includes two groups of first electric telescopic rods, and storage grooves are provided on the front wall of the box body and near the left and right sides. The two groups of first electric telescopic rods are respectively rotatably connected to the inner side walls of a group of storage grooves, and the two groups of first electric telescopic rod extension shafts are rotatably connected to the lower wall of the front baffle. The front baffle is driven to rotate by extending and retracting the two groups of first electric telescopic rod extension shafts. When the front baffle is flipped to be perpendicular to the box body, the front of the box body is shielded by the front baffle, which can temporarily provide shelter for herders on rainy days. The two groups of first electric telescopic rods can drive the movement of the front baffle according to actual usage.

[0008] In order to protect the photovoltaic charging structure, preferably, the second driving structure includes two groups of second electric telescopic rods, and the two groups of second electric telescopic rods are rotatably connected to the upper wall of the box and are respectively located on the left and right sides of the second fixed frame. The ends of the extended shafts of the two groups of second electric telescopic rods are rotatably connected to the upper wall of the upper baffle, and the upper baffle is driven to rotate by the extension and retraction of the extended shafts of the two groups of second electric telescopic rods. At night or in extreme weather, after the first fixed frame and the second fixed frame are reset, the upper baffle is driven to flip to the upper wall of the box through the second electric telescopic rod, thereby protecting the photovoltaic charging structure and effectively improving the service life of the photovoltaic charging structure.

[0009] In order to improve the comprehensive service capacity of the water supply station, preferably, the photovoltaic charging structure includes a first photovoltaic panel and a second photovoltaic panel, the first photovoltaic panel is fixedly connected to the upper wall of the first fixed frame, and the second photovoltaic panel is fixedly connected to the upper wall of the second fixed frame. The first photovoltaic panel and the second photovoltaic panel are both electrically connected to the battery pack through a charging circuit, and clean energy is obtained after photoelectric conversion by the first photovoltaic panel and the second photovoltaic panel. It can not only supply power to the electrical part of the water supply station, but also provide charging services for herders through currently mature charging piles, thereby effectively improving the comprehensive service capacity.

[0010] In order to facilitate the storage and deployment of the photovoltaic charging structure, preferably, the third driving structure includes multiple groups of sixth electric telescopic rods, and the multiple groups of sixth electric telescopic rods are rotatably connected to the top of the box and the top of the upper baffle respectively. The ends of the extension shafts of the multiple groups of sixth electric telescopic rods are rotatably connected to the lower walls of the first fixed frame and the second fixed frame respectively. The first fixed frame and the second fixed frame are respectively driven to rotate by extending and retracting the extension shafts of the multiple groups of sixth electric telescopic rods. At night and in extreme weather, the first fixed frame is driven to fit into the top of the box and the second fixed frame is driven to fit into the upper wall of the upper baffle by the sixth electric telescopic rod 28, so that the upper baffle can be flipped toward the top of the box.

[0011] In order to protect the meteorological detection structure, preferably, the fourth driving structure is two groups of fifth electric telescopic rods, the two groups of fifth electric telescopic rods are fixedly connected to the inner right wall of the fixed box, and the ends of the extension shafts of the two groups of fifth electric telescopic rods are fixedly connected to the right wall of the equipment box. The equipment box is driven to move left and right by the retraction and extension of the extension shafts of the two groups of fifth electric telescopic rods. In extreme weather, the equipment box used to install the meteorological detection structure can be driven to retract into the interior of the fixed box by the fifth electric telescopic rod to avoid damage to the meteorological detection structure.

[0012] In order to detect weather conditions in real time, preferably, the meteorological detection structure includes a wind speed sensor, a rainfall detection head and a rain sensor. The wind speed sensor is fixedly connected to the end of the extended shaft of the third electric telescopic rod, the rainfall detection head is fixedly connected to the upper end of the wind speed sensor, and the rain sensor is arranged on the upper wall of the rainfall detection head. The meteorological detection structure is lifted above the box after the extended shaft of the third electric telescopic rod is extended. The wind speed sensor can be used to detect the wind speed around the box in real time, and the rainfall sensor can detect the rainfall conditions. Combined with the local weather forecast information obtained after the multi-functional control cabinet is connected to the network, more accurate weather conditions can be obtained.

[0013] In order to avoid water accumulation inside the equipment box, preferably, a porous plate is fixedly connected to the inner wall of the equipment box near the lower wall, and the inner wall of the porous plate is provided with multiple groups of drainage holes that pass through from top to bottom. When it rains, the accumulated water is discharged from the drainage holes and will not accumulate inside the equipment box.

[0014] The present invention provides a multifunctional water supply service station. It has the following beneficial effects:

[0015] 1. Compared with existing technologies, this multifunctional water supply service station is equipped with a display screen for publicity and display of information. After being connected to the network through a multifunctional control cabinet, it can scroll and display information such as policies and markets, helping herders understand external dynamics. It can also be used to promote national unity and promote social harmony.

[0016] 2. Compared with the existing technology, this multifunctional water supply service station can obtain clean energy through the photovoltaic charging structure, which can power the electrical equipment of the water supply service station and provide charging services for herders. When the front baffle is supported, it forms a rain shelter area for herders to take shelter from the rain when passing by. When the folding bench structure is flipped, herders can sit and rest. Combined with the original water supply service capabilities, the comprehensive service capabilities of the water supply station are greatly improved.

[0017] 3. Compared with the existing technology, this multifunctional water supply service station can detect meteorological information in real time through the meteorological detection structure. Combined with the weather information obtained after the multifunctional control cabinet is connected to the network, it can promptly transmit the weather information to herders through the display screen and the speaker configured on the display screen when extreme weather is about to occur, so as to take early precautions. The display screen, water intake window and photovoltaic charging structure can be protected by retracting the front baffle and the upper baffle to avoid damage caused by extreme weather such as strong winds. The meteorological detection structure can also be retracted into the box body for protection after the equipment box is folded tightly in extreme weather, which greatly improves the service life of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic diagram of the structure of the present invention;

[0019] Figure 2 For the present invention Figure 1 A partial enlarged view of point A in the middle;

[0020] Figure 3 For the present invention Figure 1 A partial enlarged view of point B in the middle;

[0021] Figure 4 This is a front view of the connection structure between the box body and the front baffle of the present invention;

[0022] Figure 5 This is a top sectional view of the internal structure of the box body of the present invention;

[0023] Figure 6 It is a partial side cross-sectional view of the connection structure of the box body, the second fixing bracket and the sixth electric telescopic rod of the present invention.

[0024] Among them, 1. Box body; 101. Groove; 2. Water inlet pipe; 3. Display screen; 4. Storage slot; 5. First electric telescopic rod; 6. Front baffle; 7. Upper baffle; 8. First fixed frame; 9. First photovoltaic panel; 10. Second fixed frame; 11. Second photovoltaic panel; 12. Second electric telescopic rod; 13. Equipment box; 14. Third electric telescopic rod; 15. Wind speed sensor; 16. Rainfall detection head; 17. Rainfall sensor; 18. Fourth electric telescopic rod; 19. Stool panel; 20. Water intake window; 21. Water treatment equipment; 22. Multi-function control cabinet; 23. Battery pack; 24. Maintenance door; 25. Fixed box; 26. Fifth electric telescopic rod; 27. Perforated plate; 28. Sixth electric telescopic rod. DETAILED DESCRIPTION

[0025] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0026] Example:

[0027] like Figures 1 to 6 As shown, an embodiment of the present invention provides a multifunctional water supply service station, including a box body 1, a water treatment device 21 is arranged inside the box body 1 and near the rear wall, the water treatment device 21 consists of multiple water treatment devices and a reverse osmosis device, the rear wall of the box body 1 is provided with a water inlet pipe 2 for supplying water to the water treatment device 21, the front wall of the box body 1 and near the right wall is provided with a water intake window 20 for taking purified water, a battery pack 23 is arranged inside the box body 1 and on the right side of the water treatment device 21, a multifunctional control cabinet 22 is arranged inside the box body 1 and on the front side of the water treatment device 21, and a maintenance door 24 for convenient maintenance is provided on the right wall of the box body 1. The multiple water treatment devices and the reverse osmosis device can be used in combination or separately, and can be used separately according to the different water source conditions in summer and winter in pastoral areas. Based on the premise of drinking water safety, different purification methods are adopted according to the different water quality of the water source in different periods, which not only ensures drinking water safety, but also saves costs and increases the service life of the equipment.

[0028] In order to improve the comprehensive service capabilities of the water supply service station, a display screen 3 for publicity and displaying information is fixedly connected to the front wall of the box body 1 and located on the left side of the water intake window 20. The display screen 3 can scroll and display policy, market and other information after being connected to the multi-functional control cabinet 22, helping herders understand external dynamics. It can also be used to promote national unity and promote social harmony.

[0029] In order to facilitate the rest of herders passing by, a folding stool structure for convenient sitting and resting is provided on the front wall of the box 1 and below the display screen 3. The folding stool structure includes a stool panel 19 and multiple sets of fourth electric telescopic rods 18. A groove 101 is provided on the front wall of the box 1 and below the display screen 3. The stool panel 19 is rotatably connected to the upper wall inside the groove 101. The multiple sets of fourth electric telescopic rods 18 are rotatably connected to the inner rear wall of the groove 101. The ends of the extended shafts of the multiple sets of fourth electric telescopic rods 18 are rotatably connected to the lower wall of the stool panel 19. The stool panel 19 is driven to rotate by the extension and retraction of the extended shafts of the multiple sets of fourth electric telescopic rods 18. After the stool panel 19 is flipped to the outside, it can be used for herders to sit and rest.

[0030] In order to protect the display screen 3 and the water intake window 20 in extreme weather, a front baffle 6 for protecting the display screen 3 and the water intake window 20 is rotatably connected to the front wall of the box body 1 and close to the upper wall. When extreme weather is about to occur, the front baffle 6 is driven to retract by the first driving structure and tightly adhere to the front wall of the box body 1, protecting the display screen 3 and the water intake window 20 to avoid damage, thereby effectively extending the service life of the equipment;

[0031] In order to drive the front baffle 6 to flip, a first driving structure for driving the front baffle 6 to rotate is provided between the front wall of the box body 1 and the front baffle 6. When the front baffle 6 is driven to be perpendicular to the front wall of the box body 1 by the first driving structure, a rain shelter area is formed between the front baffle 6 and the front wall of the box body 1. The first driving structure includes two groups of first electric telescopic rods 5. The front wall of the box body 1 is provided with storage grooves 4 near the left and right sides. The two groups of first electric telescopic rods 5 are rotatably connected to the inner side walls of a group of storage grooves 4. The extension shafts of the two groups of first electric telescopic rods 5 are rotatably connected to the lower wall of the front baffle 6. The front baffle 6 is extended and retracted by the extension shafts of the two groups of first electric telescopic rods 5 to drive the rotation; when the front baffle 6 is flipped to be perpendicular to the box body 1, the front of the box body 1 is shielded by the front baffle 6, which can temporarily provide shelter for herders on rainy days. The two groups of first electric telescopic rods 5 can drive the front baffle 6 to move according to actual usage;

[0032] In order to protect the photovoltaic charging structure, an upper baffle 7 is rotatably connected to the top of the box body 1 and close to the front wall. A second driving structure for driving the upper baffle 7 to flip is provided between the top of the box body 1 and the upper baffle 7. The second driving structure includes two sets of second electric telescopic rods 12. The two sets of second electric telescopic rods 12 are rotatably connected to the upper wall of the box body 1 and are respectively located on the left and right sides of the second fixing frame 10. The ends of the extended shafts of the two sets of second electric telescopic rods 12 are rotatably connected to the upper wall of the upper baffle 7. The upper baffle 7 is driven to rotate by the extension and retraction of the extended shafts of the two sets of second electric telescopic rods 12. During daily charging, the upper baffle 7 is driven to flip to the upper surface of the front baffle 6 by the two sets of second electric telescopic rods 12, and then the rear ends of the first fixing frame 8 and the second fixing frame 10 are driven to rise by the third driving structure, so that the photovoltaic charging structure can receive sunlight to obtain clean energy. At night or in extreme weather, after the first fixing frame 8 and the second fixing frame 10 are reset, the upper baffle 7 is driven to flip to the upper wall of the box body 1 by the second electric telescopic rod 12, thereby protecting the photovoltaic charging structure and effectively improving the service life of the photovoltaic charging structure.

[0033] In order to improve the comprehensive service capacity of the water supply station, the upper wall of the upper baffle 7 and the upper wall of the box body 1 are respectively rotatably connected to the first fixing frame 8 and the second fixing frame 10. The upper walls of the first fixing frame 8 and the second fixing frame 10 are both provided with a photovoltaic charging structure. The photovoltaic charging structure includes a first photovoltaic panel 9 and a second photovoltaic panel 11. The first photovoltaic panel 9 is fixedly connected to the upper wall of the first fixing frame 8, and the second photovoltaic panel 11 is fixedly connected to the upper wall of the second fixing frame 10. The first photovoltaic panel 9 and the second photovoltaic panel 11 are both electrically connected to the battery pack 23 through a charging circuit. Clean energy is obtained after photoelectric conversion by the first photovoltaic panel 9 and the second photovoltaic panel 11, which can not only supply power to the electrical part of the water supply station, but also provide charging services for herders through currently mature charging piles, etc., effectively improving the comprehensive service capacity;

[0034] In order to facilitate the storage and deployment of the photovoltaic charging structure, a third driving structure for driving the first fixing frame 8 and the second fixing frame 10 is provided between the first fixing frame 8 and the upper baffle 7 and between the second fixing frame 10 and the upper wall of the box body 1. The third driving structure includes multiple groups of sixth electric telescopic rods 28, which are rotatably connected to the top of the box body 1 and the top of the upper baffle 7 respectively. The extended shaft ends of the multiple groups of sixth electric telescopic rods 28 are rotatably connected to the lower walls of the first fixing frame 8 and the second fixing frame 10 respectively. The first fixing frame 8 and the second fixing frame 10 are respectively extended and retracted by the extended shafts of the multiple groups of sixth electric telescopic rods 28 to drive the rotation. At night and in extreme weather, the first fixing frame 8 is driven to fit the top of the box body 1 and the second fixing frame 10 is driven to fit the upper wall of the upper baffle 7 by the sixth electric telescopic rods 28, so that the upper baffle 7 is flipped toward the top of the box body 1;

[0035] In order to protect the meteorological detection structure, a fixing box 25 is fixedly connected to the inner front wall of the box body 1 and close to the left wall. The inner wall of the fixing box 25 is slidably connected to the equipment box 13. The left wall of the equipment box 13 sequentially passes through the left wall of the fixing box 25 and the left wall of the box body 1. A fourth driving structure for driving the equipment box 13 to move left and right is provided between the equipment box 13 and the inner right wall of the fixing box 25. The fourth driving structure is two sets of fifth electric telescopic rods 26. The two sets of fifth electric telescopic rods 26 are fixedly connected to the inner right wall of the fixing box 25. The ends of the extended shafts of the two sets of fifth electric telescopic rods 26 are fixedly connected to the right wall of the equipment box 13. The equipment box 13 is driven to move left and right by the retraction and extension of the extended shafts of the two sets of fifth electric telescopic rods 26. In extreme weather, the equipment box 13 used to install the meteorological detection structure can be driven by the fifth electric telescopic rod 26 to retract into the interior of the fixed box 25 to avoid damage to the meteorological detection structure.

[0036] In order to detect weather conditions in real time, a meteorological detection structure is provided on the inner wall of the equipment box 13 through the third electric telescopic rod 14. The meteorological detection structure includes a wind speed sensor 15, a rainfall detection head 16 and a rain sensor 17. The wind speed sensor 15 is fixedly connected to the end of the extended shaft of the third electric telescopic rod 14, the rainfall detection head 16 is fixedly connected to the upper end of the wind speed sensor 15, and the rain sensor 17 is arranged on the upper wall of the rainfall detection head 16. The meteorological detection structure is raised above the box body 1 after the extended shaft of the third electric telescopic rod 14 is extended. The wind speed sensor 15 can be used to detect the wind speed around the box body 1 in real time, and the rain sensor 17 can detect the rainfall situation. Combined with the local weather forecast information obtained after the multi-function control cabinet 22 is connected to the network, more accurate weather conditions can be obtained;

[0037] In order to avoid water accumulation inside the equipment box 13, a porous plate 27 is fixedly connected to the inner wall of the equipment box 13 near the lower wall. The inner wall of the porous plate 27 is provided with multiple groups of drainage holes that pass through from top to bottom. When it rains, the accumulated water is discharged from the drainage holes and will not accumulate inside the equipment box 13.

[0038] Working principle: multiple water treatment equipment and one reverse osmosis equipment can be used in combination or separately, and can be used separately according to the different water source conditions in summer and winter in pastoral areas. Based on the safety of drinking water, different purification methods are adopted according to the different water quality in different periods of water sources. This not only ensures the safety of drinking water, but also saves costs and increases the service life of the equipment. The display screen 3 can scroll and display policy, market and other information after being connected to the multi-functional control cabinet 22 to help herders understand external dynamics. It can also be used to promote national unity and promote social harmony. The stool panel 19 is driven to rotate by the extension and retraction of the shaft of multiple sets of fourth electric telescopic rods 18. After the stool panel 19 is flipped to the outside, it can be used for herders to sit Rest, when extreme weather is about to occur, the front baffle 6 is driven to retract through the first driving structure, and is tightly attached to the front wall of the box body 1, protecting the display screen 3 and the water intake window 20 to avoid damage, thereby effectively improving the service life of the equipment; when the front baffle 6 is flipped to be perpendicular to the box body 1, the front of the box body 1 is shielded by the front baffle 6, which can temporarily provide shelter for herders on rainy days. Two sets of first electric telescopic rods 5 are set to drive the front baffle 6 to move according to actual usage; during daily charging, the upper baffle 7 is driven to flip to the upper surface of the front baffle 6 by the two sets of second electric telescopic rods 12, and then the rear ends of the first fixing frame 8 and the second fixing frame 10 are driven to be lifted by the third driving structure, so that the photovoltaic charging structure can be accepted Sunlight is used to obtain clean energy. At night or in extreme weather, after the first fixing frame 8 and the second fixing frame 10 are reset, the upper baffle 7 is driven to flip to the upper wall of the box body 1 through the second electric telescopic rod 12 to protect the photovoltaic charging structure, effectively improving the service life of the photovoltaic charging structure. Clean energy is obtained after photoelectric conversion by the first photovoltaic panel 9 and the second photovoltaic panel 11, which can not only supply power to the electricity consumption part of the water supply station, but also provide charging services for herders through the currently mature charging piles, etc., effectively improving the comprehensive service capabilities. At night and in extreme weather, the first fixing frame 8 is driven to fit the top of the box body 1 and the second fixing frame 10 is driven to fit the upper baffle through the sixth electric telescopic rod 28. The upper wall of the plate 7 allows the upper baffle 7 to flip toward the top of the box 1. In extreme weather, the equipment box 13 for installing the meteorological detection structure can be driven by the fifth electric telescopic rod 26 to retract into the fixed box 25 to avoid damage to the meteorological detection structure. The meteorological detection structure is lifted above the box 1 after the shaft is extended by the third electric telescopic rod 14. The wind speed sensor 15 can be used to detect the wind speed around the box 1 in real time, and the rain sensor 17 can detect the rainfall conditions. Combined with the local weather forecast information obtained after the multi-function control cabinet 22 is connected to the network, more accurate weather conditions can be obtained; in order to avoid water accumulation inside the equipment box 13, when it rains, the accumulated water is discharged from the drain hole and will not accumulate inside the equipment box 13.

[0039] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A multifunctional water supply service station, characterized by: The invention comprises a box body (1), wherein a water treatment device (21) is arranged inside the box body (1) and near the rear wall, wherein the water treatment device (21) is composed of a plurality of water treatment devices and a reverse osmosis device, wherein a water inlet pipe (2) for supplying water to the water treatment device (21) is arranged on the rear wall of the box body (1), a water intake window (20) for taking clean water is arranged on the front wall of the box body (1) and near the right wall, a battery pack (23) is arranged inside the box body (1) and on the right side of the water treatment device (21), a multifunctional control cabinet (22) is arranged inside the box body (1) and on the front side of the water treatment device (21), and a maintenance panel (23) for convenient maintenance is arranged on the right wall of the box body (1). The door (24) is provided. A display screen (3) for publicity and displaying information is fixedly connected to the front wall of the box (1) and located on the left side of the water intake window (20). A folding stool structure for convenient sitting and resting is provided on the front wall of the box (1) and located below the display screen (3). A front baffle (6) for protecting the display screen (3) and the water intake window (20) is rotatably connected to the front wall of the box (1) and located near the upper wall. A first driving structure for driving the front baffle (6) to rotate is provided between the front wall of the box (1) and the front baffle (6). When the front baffle (6) is driven to be perpendicular to the front wall of the box (1) by the first driving structure, a rain shelter is formed between the front baffle (6) and the front wall of the box (1).

2. A multifunctional water supply service station according to claim 1, characterized in that: An upper baffle (7) is rotatably connected to the top of the box (1) and close to the front wall. A second driving structure for driving the upper baffle (7) to flip is provided between the top of the box (1) and the upper baffle (7). A first fixing frame (8) and a second fixing frame (10) are rotatably connected to the upper wall of the upper baffle (7) and the upper wall of the box (1). The upper walls of the first fixing frame (8) and the second fixing frame (10) are both provided with photovoltaic charging structures. A second driving structure for driving the first fixing frame (8) and the upper baffle (7) is provided between the first fixing frame (8) and the upper baffle (7) and between the second fixing frame (10) and the upper wall of the box (1). The third driving structure for the movement of the frame (8) and the second fixed frame (10) is provided, a fixed box (25) is fixedly connected to the front wall of the inner side of the box body (1) and close to the left wall, the inner side wall of the fixed box (25) is slidably connected to the device box (13), the left wall of the device box (13) sequentially passes through the left wall of the fixed box (25) and the left wall of the box body (1), a fourth driving structure for driving the device box (13) to move left and right is provided between the device box (13) and the inner right wall of the fixed box (25), and a meteorological detection structure is provided on the inner side wall of the device box (13) through a third electric telescopic rod (14).

3. A multifunctional water supply service station according to claim 2, characterized in that: The folding stool structure includes a stool panel (19) and multiple groups of fourth electric telescopic rods (18); a groove (101) is provided on the front wall of the box body (1) and below the display screen (3); the stool panel (19) is rotatably connected to the upper inner wall of the groove (101); multiple groups of the fourth electric telescopic rods (18) are rotatably connected to the inner rear wall of the groove (101); the ends of the extended shafts of the multiple groups of the fourth electric telescopic rods (18) are rotatably connected to the lower wall of the stool panel (19); and the stool panel (19) is driven to rotate by the extension and retraction of the extended shafts of the multiple groups of the fourth electric telescopic rods (18).

4. A multifunctional water supply service station according to claim 3, characterized in that: The first driving structure comprises two groups of first electric telescopic rods (5), and the front wall of the box body (1) is provided with storage grooves (4) near the left and right sides. The two groups of the first electric telescopic rods (5) are respectively rotatably connected to the inner side walls of one group of storage grooves (4). The extension shafts of the two groups of the first electric telescopic rods (5) are rotatably connected to the lower wall of the front baffle (6). The front baffle (6) is driven to rotate by the extension and retraction of the extension shafts of the two groups of the first electric telescopic rods (5).

5. A multifunctional water supply service station according to claim 4, characterized in that: The second driving structure comprises two groups of second electric telescopic rods (12), the two groups of second electric telescopic rods (12) are both rotatably connected to the upper wall of the box body (1) and are respectively located on the left and right sides of the second fixed frame (10), the ends of the extension shafts of the two groups of second electric telescopic rods (12) are both rotatably connected to the upper wall of the upper baffle (7), and the upper baffle (7) is driven to rotate by the extension and retraction of the extension shafts of the two groups of second electric telescopic rods (12).

6. A multifunctional water supply service station according to claim 5, characterized in that: The photovoltaic charging structure comprises a first photovoltaic panel (9) and a second photovoltaic panel (11), wherein the first photovoltaic panel (9) is fixedly connected to the upper wall of a first fixing frame (8), and the second photovoltaic panel (11) is fixedly connected to the upper wall of a second fixing frame (10), and both the first photovoltaic panel (9) and the second photovoltaic panel (11) are electrically connected to a battery pack (23) via a charging circuit.

7. A multifunctional water supply service station according to claim 6, characterized in that: The third driving structure comprises a plurality of groups of sixth electric telescopic rods (28), the plurality of groups of the sixth electric telescopic rods (28) being rotatably connected to the top of the box body (1) and the top of the upper baffle (7), the plurality of groups of the sixth electric telescopic rods (28) extending shaft ends being rotatably connected to the lower walls of the first fixed frame (8) and the second fixed frame (10), respectively, and the first fixed frame (8) and the second fixed frame (10) being driven to rotate by the extension and retraction of the extension shafts of the plurality of groups of the sixth electric telescopic rods (28).

8. The multifunctional water supply service station according to claim 7, characterized in that: The fourth driving structure comprises two groups of fifth electric telescopic rods (26), the two groups of fifth electric telescopic rods (26) are fixedly connected to the inner right wall of the fixed box (25), the ends of the extension shafts of the two groups of fifth electric telescopic rods (26) are fixedly connected to the right wall of the device box (13), and the device box (13) is driven to move left and right by the extension shafts of the two groups of fifth electric telescopic rods (26) being retracted and extended.

9. The multifunctional water supply service station according to claim 8, characterized in that: The meteorological detection structure comprises a wind speed sensor (15), a rainfall detection head (16) and a rain sensor (17); the wind speed sensor (15) is fixedly connected to the end of the extended shaft of the third electric telescopic rod (14); the rainfall detection head (16) is fixedly connected to the upper end of the wind speed sensor (15); and the rain sensor (17) is arranged on the upper wall of the rainfall detection head (16).

10. The multifunctional water supply service station according to claim 9, characterized in that: A porous plate (27) is fixedly connected to the inner side wall of the equipment box (13) near the lower wall, and the inner wall of the porous plate (27) is provided with multiple groups of drainage holes that pass through from top to bottom.