Intelligent monitoring equipment for water quality of garden water body
By designing intelligent water quality monitoring equipment for garden water bodies, water samples are extracted and monitored in real time using water pipes and filter balls. This solves the problems of low efficiency and limited coverage of existing equipment, and achieves efficient and accurate multi-depth and multi-area water quality monitoring. It also simplifies equipment maintenance and improves the aquatic ecology and landscape.
Patent Information
- Application Number
- CN202511323831.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-17
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2045-09-17
AI Technical Summary
Existing water quality monitoring equipment for garden water bodies suffers from low efficiency, limited coverage, and difficulty in maintenance, making it difficult to meet the needs for real-time, accurate, and intelligent monitoring. Furthermore, it is susceptible to contamination from impurities, which can affect the accuracy of monitoring.
An intelligent monitoring device was designed, consisting of a base, a circular basin, a pump, an air bladder, a water collection cylinder, a sampling component, and a monitoring component. It extracts water samples through water pipes and filter balls, performs real-time detection with a monitoring probe, and removes impurities through a cleaning system, enabling water quality monitoring at multiple depths and in multiple areas.
It enables efficient and real-time monitoring of water quality in garden water bodies, improves the comprehensiveness and accuracy of monitoring, reduces the impact of impurities on monitoring results, simplifies equipment maintenance, and improves water transparency and ecological balance.
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Figure CN120846745B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of garden water body monitoring, and particularly relates to a garden water body water quality intelligent monitoring device. BACKGROUND
[0002] As an important part of landscape ecological system, the water quality of garden water body directly affects the ecological environment and ornamental value. Based on the existing technology, it is found that the current water quality monitoring technology is developing towards intelligence and automation, but the traditional method still has many limitations. First, traditional water quality monitoring relies on laboratory offline analysis, which has a long sampling cycle and low efficiency, and cannot meet the needs of real-time scenarios.
[0003] Secondly, the existing monitoring equipment is mainly used for single water body or fixed point, and lacks dynamic monitoring capability for water samples of multiple depths and multiple regions. Especially in complex water areas (such as garden water body), it is difficult to achieve comprehensive coverage. In addition, the maintenance and cleaning of the monitoring equipment are outstanding problems. Because impurities are easily attached during sampling, manual intervention is required for cleaning, and impurities can easily contaminate subsequent water samples, resulting in a decrease in detection accuracy and affecting the continuity and accuracy of monitoring. SUMMARY
[0004] In order to overcome the shortcomings of the existing water quality monitoring equipment, such as low efficiency, limited coverage, difficult maintenance, and difficulty in meeting the real-time and accurate intelligent monitoring needs of garden water body, the present application provides a garden water body water quality intelligent monitoring device.
[0005] The technical scheme is as follows: a garden water body water quality intelligent monitoring device, comprising a base; a through hole is formed in the base; further comprising a round basin, a pump, a fixing ring, an air bag, a water collecting cylinder, a sampling assembly, a rotating ring, a baffle, a guide vane I and a monitoring assembly; the round basin is fixedly connected to the base, and a pull ring is installed on the round basin; the pump is fixedly connected to the base; the fixing ring is fixedly connected to the round basin; the air bag is fixedly connected to the fixing ring; the air outlet pipe of the pump is connected to the air bag after penetrating through the round basin; the water collecting cylinder is fixedly connected to the base, and a drain hole is formed in the water collecting cylinder; the sampling assembly for sampling water in different regions and different depths is connected to the base; the rotating ring is rotatably connected to the water collecting cylinder; the baffle is movably connected in the water collecting cylinder, and a plurality of through grooves are formed in the baffle; the rotating ring is connected to the baffle through a connecting piece; the guide vane I is fixedly connected in the water collecting cylinder, and a plurality of through grooves are also formed in the guide vane I; the guide vane I is in contact with the baffle; the monitoring assembly for monitoring water quality is connected to the baffle; the monitoring assembly is connected to the base; and the monitoring assembly is connected to the rotating ring.
[0006] As a preferred, a fixing seat for fixing the motor and propeller of an external device is installed on the base.
[0007] As preferred, the sampling assembly comprises a support frame, a housing, a water pump, a conduit, a delivery pipe, a circular pipe, a motor I, a water pipe, a filter ball head, a counterweight ball and a pulley; the support frame is fixedly connected to the base; the housing is fixedly connected to the support frame; the water pump is fixedly connected to the housing; the water inlet of the water pump is fixedly connected and communicated with the conduit; the water outlet of the water pump is fixedly connected and communicated with the delivery pipe; the delivery pipe penetrates through the housing and is fixedly connected and communicated with the water collecting cylinder; the circular pipe is rotatably connected to the housing; the circular pipe is rotatably connected and communicated with the conduit; the motor I is fixedly connected to the housing; the end of the circular pipe away from the conduit is fixedly connected with the output shaft of the motor I; the water pipe is arranged around the circular pipe, and one end of the water pipe is fixedly connected and communicated with the circular pipe; the other end of the water pipe penetrates through the baffle and the flow guide piece I and is fixedly connected with the filter ball head; the pulley is fixedly connected to the housing; the pulley is in contact with the water pipe.
[0008] As preferred, the monitoring assembly comprises a connecting rod, a connecting frame, a pull rod, a telescopic rod, a monitoring probe, an elastic member, a mounting frame, a motor II, a straight gear, a gear ring and a circular ring; at least two connecting rods are fixedly connected to the baffle; a connecting frame is fixedly connected to the upper parts of all the connecting rods; a pull rod is fixedly connected to the connecting frame; a telescopic rod is fixedly connected to the connecting frame; a monitoring probe is fixedly connected to the telescopic part of the telescopic rod; at least two elastic members are fixedly connected to the baffle, and the ends of all the elastic members away from the baffle are movably connected with the rotating ring; the connecting member between the rotating ring and the baffle is an elastic member; a mounting frame is fixedly connected to the base; a motor II is mounted on the mounting frame; a straight gear is fixedly connected to the output shaft of the motor II; a gear ring is fixedly connected to the lower surface of the rotating ring; the gear ring is meshed with the straight gear; a circular ring is fixedly connected to the water collecting cylinder.
[0009] As preferred, a hydrophobic coating is arranged on the inner wall of the water collecting cylinder.
[0010] As preferred, it further comprises a protective frame and a spherical ball; at least two protective frames are fixedly connected to the filter ball head, and the protective frames are made of rubber material; a spherical ball is fixedly connected to the end of the water pipe away from the circular pipe.
[0011] As preferred, it further comprises a flow guide cylinder; the flow guide cylinder is fixedly connected to the flow guide piece I, and the flow guide cylinder is arranged in an inverted conical shape.
[0012] As preferred, it further comprises a cleaning system; a dust removal system is connected to the rotating ring; the dust removal system comprises a connecting ring, a cross rod, a rotating shell and a cover shell; a plurality of filter holes are formed in the circular basin, and a valve is arranged in each filter hole, so that the water flow can only be discharged outward through the filter holes; a plurality of circular holes are formed in the rotating ring; the connecting ring is fixedly connected to the rotating ring; at least two cross rods are fixedly connected to the connecting ring; a rotating shell is fixedly connected to all the cross rods, and a plurality of through grooves are formed in the rotating shell; the rotating shell is rotatably connected with the pull rod; the cover shell is fixedly connected to the circular basin, and a plurality of through grooves are formed in the cover shell; the cover shell is rotatably connected with the pull rod.
[0013] As preferred, the connecting ring is arranged in a horn shape with the upper part being larger and the lower part being smaller.
[0014] Preferably, the circular basin is fixed with a flow guide piece II.
[0015] The present application has the advantages and positive effects that: (1) the water pipe is released, and under the gravity of the counterweight ball, the water pipe moves vertically downward, a negative pressure is generated in the water pipe, then the water sample is extracted through the filter ball head, and the impurities in the water area are filtered through the filter ball head, so that the water sample flows along the water pipe, the circular pipe, the conduit, the water pump and the delivery pipe, and finally flows into the water collecting cylinder through the delivery pipe, and the extracted water sample is carried by the baffle and the flow guide piece I, and the water submerges the monitoring probe, and then the monitoring probe is controlled to start operation to detect the water sample, so that the water body in the garden is monitored, and the method has short cycle and high efficiency, and can meet the real-time demand.
[0016] (2) the water pipe is retracted, and then the filter ball head is displaced in the water body and moves to a preset height, so that water samples at different depths are extracted, and the base is driven to move by controlling the external motor to drive the propeller to rotate, so that the filter ball head is displaced in the water body again, so that water samples in different water areas are extracted, thereby improving the comprehensiveness and accuracy of water body monitoring.
[0017] (3) when the filter ball head, the counterweight ball and the protective frame are retracted, they all pass through the through hole in the center of the base, so that the impurities attached to the filter ball head, the counterweight ball and the protective frame are scraped off by the edge of the through hole, thereby avoiding the problem that the impurities attached to the filter ball head, the counterweight ball and the protective frame pollute the subsequent water sample and affect the accuracy of subsequent monitoring.
[0018] (4) the water sample flows to the filter ball head, the counterweight ball and the protective frame through the flow guiding effect of the flow guide cylinder, so that the filter ball head, the counterweight ball and the protective frame are washed by the water sample, thereby further cleaning the filter ball head, the counterweight ball and the protective frame for subsequent use, and reducing the problem of pollution of water samples in different areas.
[0019] (5) the baffle moves upward along the inner wall of the water collecting cylinder to clean the inner wall of the water collecting cylinder, and the water near the water surface is clearer, so that the inner wall of the water collecting cylinder is cleaned, and the water flows out through the circular hole, thereby reducing the problem that the inner wall of the water collecting cylinder is left with impurities, polluting the subsequent water sample and affecting the monitoring, and improving the accuracy of monitoring.
[0020] (6) the circular basin bears and filters phytoplankton, so that a large range of water lily, algae and other phytoplankton on the surface of the water body in the garden are fished and collected, thereby effectively improving the transparency of the water body, reducing the subsequent treatment difficulty, maintaining the ecological balance of the water body, and improving the landscape effect of the water body. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is the three-dimensional structure schematic view of garden water body water quality intelligent monitoring equipment of the application;
[0022] Figure 2 It is the base, fixed ring and air bag combined section view of garden water body water quality intelligent monitoring equipment of the application;
[0023] Figure 3 It is the sampling assembly three-dimensional structure schematic view of garden water body water quality intelligent monitoring equipment of the application;
[0024] Figure 4 It is the baffle and guide vane I installation position schematic view of garden water body water quality intelligent monitoring equipment of the application;
[0025] Figure 5 It is the baffle and guide vane explosion drawing of garden water body water quality intelligent monitoring equipment of the application;
[0026] Figure 6 It is the filter ball head retraction state schematic view of garden water body water quality intelligent monitoring equipment of the application;
[0027] Figure 7 It is the monitoring assembly three-dimensional structure schematic view of garden water body water quality intelligent monitoring equipment of the application;
[0028] Figure 8 It is the elastic piece installation position schematic view of garden water body water quality intelligent monitoring equipment of the application;
[0029] Figure 9 It is the rotating shell and cover explosion drawing of garden water body water quality intelligent monitoring equipment of the application;
[0030] Figure 10 It is the rotating shell and cover rotation alignment state schematic view of garden water body water quality intelligent monitoring equipment of the application.
[0031] Marked in the figure: 1-base, 201-round basin, 2011-lead II, 202-pump, 203-fixed ring, 204-air bag, 205-water collecting cylinder, 206-support frame, 207-housing, 208-water pump, 209-conduit, 210-conveying pipe, 211-round pipe, 212-motor I, 213-water pipe, 2131-filter ball head, 2132-counterweight ball, 2133-protection frame, 2134-round ball, 214-pulley, 215-rotary ring, 2151-round hole, 216-flap, 217-lead I, 218-lead cylinder, 219-connecting rod, 220-connecting frame, 221-pull rod, 222-telescopic rod, 223-monitoring probe, 224-elastic member, 301-mounting frame, 302-motor II, 303-straight gear, 304-tooth ring, 305-round ring, 306-connecting ring, 307-cross rod, 308-rotary shell, 309-housing. DETAILED DESCRIPTION
[0032] The application will be further described below in connection with the embodiments shown in the drawings.
[0033] Embodiment one: a garden water body water quality intelligent monitoring equipment, according to Figures 1-8 As shown, it comprises a base 1; a through hole is formed in the center of the base 1;
[0034] It also comprises a round basin 201, a pump 202, a fixed ring 203, an air bag 204, a water collecting cylinder 205, a sampling assembly, a rotary ring 215, a flap 216, a lead I 217 and a monitoring assembly; the round basin 201 is fixedly connected to the base 1, and a pull ring is installed on the round basin 201; the pump 202 is fixedly connected to the base 1; the fixed ring 203 is fixedly connected to the outside of the round basin 201; the air bag 204 is fixedly connected to the fixed ring 203; the air outlet pipe of the pump 202 is fixedly connected to and communicates with the air bag 204 after penetrating through the round basin 201; the water collecting cylinder 205 is fixedly connected to the base 1, and a drain hole is formed in the lower part of the water collecting cylinder 205; the sampling assembly is connected to the base 1; the rotary ring 215 is rotatably connected to the water collecting cylinder 205; the flap 216 is movably connected in the water collecting cylinder 205, and a plurality of through grooves are annularly and equidistantly formed in the flap 216; the rotary ring 215 is connected to the flap 216 through a connecting member; the lead I 217 is fixedly connected in the water collecting cylinder 205, and a plurality of through grooves are also annularly and equidistantly formed in the lead I 217; the lead I 217 is in contact with the flap 216; the monitoring assembly for monitoring the water quality is connected to the flap 216; the monitoring assembly is connected to the base 1; the monitoring assembly is connected to the rotary ring 215.
[0035] A fixing seat for fixing the motor and propeller of an external device is installed on the lower surface of the base 1.
[0036] The sampling assembly comprises a support frame 206, a shell 207, a water pump 208, a guide pipe 209, a conveying pipe 210, a circular pipe 211, a motor I 212, a water pipe 213, a filter ball head 2131, a counterweight ball 2132 and a pulley 214; the support frame 206 is fixedly connected to the upper surface of the base 1; the shell 207 is fixedly connected to the support frame 206; the water pump 208 is fixedly connected to the inner side of the shell 207; the water inlet of the water pump 208 is fixedly connected and communicated with the guide pipe 209; the water outlet of the water pump 208 is fixedly connected and communicated with the conveying pipe 210; the conveying pipe 210 penetrates through the shell 207 and is fixedly connected and communicated with the water collecting cylinder 205; the circular pipe 211 is rotatably connected to the inner side of the shell 207; the circular pipe 211 is rotatably connected and communicated with the guide pipe 209; the motor I 212 is fixedly connected to the shell 207; the end, away from the guide pipe 209, of the circular pipe 211 is fixedly connected with the output shaft of the motor I 212; the water pipe 213 is arranged around the circular pipe 211, and one end of the water pipe 213 is fixedly connected and communicated with the circular pipe 211; the other end of the water pipe 213 penetrates through the baffle 216 and the flow guide piece I 217 and is fixedly connected with the filter ball head 2131; the pulley 214 is fixedly connected to the outer side of the shell 207; and the pulley 214 is in contact with the water pipe 213.
[0037] The monitoring assembly comprises connecting rods 219, a connecting frame 220, a pull rod 221, a telescopic rod 222, a monitoring probe 223, elastic members 224, a mounting frame 301, a motor II 302, a straight gear 303, a gear ring 304 and a circular ring 305; two connecting rods 219 are fixedly connected to the upper surface of the baffle 216; one connecting frame 220 is commonly fixedly connected to the upper parts of all the connecting rods 219; the pull rod 221 is fixedly connected to the connecting frame 220; the telescopic rod 222 is fixedly connected to the connecting frame 220; the monitoring probe 223 is fixedly connected to the telescopic part of the telescopic rod 222; two elastic members 224 are fixedly connected to the upper surface of the baffle 216, the elastic members 224 are spring rods, and the ends, away from the baffle 216, of all the elastic members 224 are movably connected with the rotating ring 215; the connecting member between the rotating ring 215 and the baffle 216 is the elastic member 224; the mounting frame 301 is fixedly connected to the upper surface of the base 1; the motor II 302 is mounted on the mounting frame 301; the output shaft of the motor II 302 is fixedly connected with the straight gear 303; the gear ring 304 is fixedly connected to the lower surface of the rotating ring 215; the gear ring 304 is engaged with the straight gear 303; and the circular ring 305 is fixedly connected to the outer side of the water collecting cylinder 205 and is located at the outer side of the gear ring 304.
[0038] The inner wall of the water collecting cylinder 205 is provided with a hydrophobic coating, which is used for reducing the phenomenon that water stains are left on the inner wall of the water collecting cylinder 205.
[0039] The filter ball head 2131 is fixedly connected with two protective frames 2133, and the protective frames 2133 are made of rubber; and the end, away from the circular pipe 211, of the water pipe 213 is fixedly connected with a circular ball 2134.
[0040] The flow guide cylinder 218 is fixed to the lower surface of the flow guide piece I 217, and is arranged as an inverted cone.
[0041] When monitoring the water body in the garden, the pull ring on the circular basin 201 is connected in advance by a rope to facilitate subsequent recovery operation, and the external motor and propeller are connected with the fixing seat on the lower surface of the base 1, and the initial positions of the through slot in the baffle 216 and the through slot in the flow guide piece I 217 are staggered with each other to facilitate the carrying of the water sample, and then the base 1 is put into the water area to be monitored, and the pump 202 is controlled to start to inflate the air bag 204, so that the air bag 204 expands, the fixed ring 203 moves upward, the fixed ring 203 moves upward, the circular basin 201 moves, and all the connected parts move, so that the water collecting cylinder 205 is separated from the water surface, and then the motor I 212 is controlled to start to operate, the output shaft of the motor I 212 drives the circular tube 211 to rotate, the circular tube 211 releases the water pipe 213, so that the filter ball head 2131 moves downward, and under the action of the gravity of the counterweight ball 2132, the water pipe 213 moves vertically downward, and when the filter ball head 2131 moves to the specified height, the motor I 212 is controlled to start to stop operating, and the water pump 208 is controlled to start to generate negative pressure in the conduit 209, so that the circular tube 211 generates negative pressure, and the whole water pipe 213 generates negative pressure, so that the water sample is extracted through the filter ball head 2131, and the impurities in the water area are filtered through the filter ball head 2131, so that the water sample flows along the water pipe 213, the circular tube 211, the conduit 209, the water pump 208 and the delivery pipe 210, and finally flows into the water collecting cylinder 205 through the delivery pipe 210, and the extracted water sample is carried by the baffle 216 and the flow guide piece I 217, and the water submerges the monitoring probe 223, and the monitoring probe 223 is controlled to start to operate to detect the water sample, so as to realize the monitoring of the water body in the garden. This way has short cycle, high efficiency, and can meet the real-time demand.
[0042] It should be noted that when the filter ball head 2131 is lowered into the water body, the filter ball head 2131 is protected by the two protective frames 2133, thereby avoiding the problem that the filter ball head 2131 contacts the silt and impurities on the water bottom, causing a large amount of impurities to be mixed in the extracted water sample, affecting the accuracy of the monitoring results. By controlling the motor I 212 to start operation, the output shaft of the motor I 212 rotates to drive the circular pipe 211 to rotate, the circular pipe 211 rotates to retract and retract the water pipe 213, and then the filter ball head 2131 is displaced in the water body and moves to a predetermined height, thereby realizing the extraction of water samples at different depths. By controlling the external motor to drive the propeller to rotate to drive the base 1 to move, thereby driving all the connected components to move, thereby again displacing the filter ball head 2131 in the water body, thereby realizing the extraction of water samples in different water areas, thereby improving the comprehensiveness and accuracy of water body monitoring.
[0043] After the water sample is detected by the monitoring probe 223, the motor I 212 is controlled to start operation in the same way as described above, the output shaft of the motor I 212 rotates to drive the circular pipe 211 to rotate, and then the water pipe 213 is retracted, thereby driving the filter ball head 2131, the counterweight ball 2132, the protective frame 2133 and the circular ball 2134 to move upwards, thereby making the filter ball head 2131, the counterweight ball 2132 and the protective frame 2133 pass through the through hole in the center of the base 1, and the impurities attached to the filter ball head 2131, the counterweight ball 2132 and the protective frame 2133 are scraped off by the edge of the through hole, and the filter ball head 2131, the counterweight ball 2132, the protective frame 2133 and the circular ball 2134 continue to move upwards, until the filter ball head 2131, the counterweight ball 2132 and the protective frame 2133 pass through the drain hole at the lower part of the water collecting cylinder 205 and are located in the water collecting cylinder 205, as shown in Figure 6 so as to avoid the problem that the impurities attached to the filter ball head 2131, the counterweight ball 2132 and the protective frame 2133 pollute the subsequent water sample and affect the accuracy of subsequent monitoring.
[0044] Then control the motor II 302 on the mounting frame 301 to start operation, the output shaft of the motor II 302 rotates to drive the spur gear 303 to rotate, the spur gear 303 rotates to drive the gear ring 304 to rotate, the gear ring 304 rotates to drive the rotating ring 215 to rotate, the rotating ring 215 rotates through the elastic member 224 to drive the baffle 216 to rotate, and then the through slot in the baffle 216 and the through slot in the flow guide piece I 217 are aligned, so that the water sample in the water collecting cylinder 205 flows downward through the through slot in the baffle 216 and the through slot in the flow guide piece I 217, and then the water sample flows to the flow guide cylinder 218 and flows to the filter ball head 2131, the counterweight ball 2132 and the protective frame 2133 through the flow guiding effect of the flow guide cylinder 218, so that the filter ball head 2131, the counterweight ball 2132 and the protective frame 2133 are washed by the water sample, and the filter ball head 2131, the counterweight ball 2132 and the protective frame 2133 are further cleaned for subsequent use, and the problem of pollution of water samples in different areas is reduced.
[0045] It should be noted that when monitoring the water body in the next area, the water in the water collecting cylinder 205 and the water pipe 213 will remain the water in the last sampling point, which is easy to cause the problem of pollution of water samples in different areas. By controlling the motor II 302 to start operation, the output shaft of the motor II 302 rotates to drive the spur gear 303 to rotate, the spur gear 303 rotates to drive all the connected parts to rotate, and then the through slot in all the baffles 216 and the through slot in the flow guide piece I 217 are aligned, so that the water in the water collecting cylinder 205 flows out.
[0046] Then control the water pump 208 to start to generate negative pressure in the conduit 209, and then generate negative pressure in the entire water pipe 213, so that the water in the new sampling point enters the water pipe 213, so that the water in the last sampling point remaining in the water pipe 213 flows into the water collecting cylinder 205, and then flows out through the through slot in the baffle 216 and the through slot in the flow guide piece I 217, and then flows back to the water surface, so that the water in the last sampling point remaining in the water collecting cylinder 205 and the water pipe 213 is discharged, and the problem of pollution of water samples in different areas is further reduced. Then control the motor II 302 to start operation, the output shaft of the motor II 302 rotates to drive the spur gear 303 to reverse, and then the through slot in the baffle 216 and the through slot in the flow guide piece I 217 are staggered with each other, so as to carry the water sample, and the water pump 208 continuously operates to extract the water in the new sampling point, and then the water in the new sampling point enters the water collecting cylinder 205, and then the monitoring probe 223 starts operation to detect the water sample in the new sampling point, so as to realize monitoring of the water samples in different areas of the garden water body.
[0047] And after the base 1 is retracted so that the base 1 and the round basin 201 are separated from the water surface, the pull rod 221 is manually pulled upward to move, the connecting frame 220 is driven to move, all connecting rods 219 are driven to move, the baffle 216 is driven to move, and the baffle 216 is moved upward along the inner wall of the water collecting cylinder 205, and all elastic members 224 are compressed, so that the inner wall of the water collecting cylinder 205 is cleaned by the baffle 216 moving upward along the inner wall of the water collecting cylinder 205, and when the base 1 is retracted, the filter ball head 2131 is moved downward below the base 1, so that the filter ball head 2131 is located in the upper layer of the water body and close to the water surface, and then the water close to the water surface is extracted through the filter ball head 2131, so that clearer water enters the water collecting cylinder 205 and is carried by the baffle 216 and the guide vane I 217, and then the pull rod 221 is manually pulled upward in the same way, so that the inner wall of the water collecting cylinder 205 is cleaned by the clearer water, and the water flows out through the round hole 2151, so as to reduce the problem that the inner wall of the water collecting cylinder 205 is polluted by residual impurities, affecting the subsequent water sample, affecting the monitoring, and improving the accuracy of the monitoring.
[0048] Embodiment two: based on embodiment one, according to Figures 7-10 As shown in the drawings, it also includes a cleaning system; the rotating ring 215 is connected with a dust removal system; the dust removal system includes a connecting ring 306, a cross rod 307, a rotating shell 308 and a cover shell 309; a plurality of filter holes are annularly and equidistantly opened in the lower part of the round basin 201, and each filter hole is provided with a valve, so that water flow can only pass through the filter hole to be discharged outward; a plurality of round holes 2151 are annularly and equidistantly opened in the rotating ring 215; the connecting ring 306 is fixedly connected to the outer surface of the rotating ring 215; two cross rods 307 are fixedly connected to the connecting ring 306; all cross rods 307 are jointly fixedly connected with a rotating shell 308, and a plurality of through grooves are annularly and equidistantly opened in the rotating shell 308; the rotating shell 308 is rotationally connected with the pull rod 221; the cover shell 309 is fixedly connected to the round basin 201, and a plurality of through grooves are annularly and equidistantly opened in the cover shell 309; the cover shell 309 is rotationally connected with the pull rod 221.
[0049] The connecting ring 306 is arranged in a horn shape from large at the top to small at the bottom, which is used for guiding water.
[0050] The lower part of the outer side of the round basin 201 is fixedly connected with a guide vane II 2011, which is used for guiding water.
[0051] Because the surface of the garden water body often breeds duckweed, algae and other phytoplankton, these plants have certain ecological function, but excessive breeding will block the sunlight transmission, cause the photosynthesis of underwater plants to be hindered, and seriously affect the water quality of the water body, seriously affect the landscape effect and ecological balance of the water body, and the traditional manual salvage method is time-consuming and laborious.
[0052] To solve the above problems, by controlling the pump 202 to start pumping the gas in the air bag 204, so that the air bag 204 shrinks, and then the base 1 is lowered into the water, and then all the connected parts are moved, and then the upper edge of the round basin 201 is below the water surface, and because each filter hole in the lower part of the round basin 201 is provided with a valve, and then when the air bag 204 shrinks, the round basin 201 is lowered, and water cannot enter the round basin 201 from the filter hole in the lower part of the round basin 201, then control the motor II 302 to start, the output shaft of the motor II 302 rotates to drive the spur gear 303 to rotate, the spur gear 303 rotates to drive the gear ring 304 to rotate, the gear ring 304 rotates to drive all the parts connected thereto to rotate, and then the through slot in the baffle 216 and the through slot in the guide vane I 217 are staggered with each other, and at the same time the rotating ring 215 rotates to drive the connecting ring 306 to rotate, the connecting ring 306 rotates to drive the two cross bars 307 to rotate, and the two cross bars 307 rotate to drive the rotating shell 308 to rotate, and then the through slot in the rotating shell 308 and the through slot in the cover shell 309 are aligned with each other, as shown in Figure 10 so that the floating plants such as duckweed and algae on the surface of the water body enter the round basin 201 through the through slot in the rotating shell 308 and the through slot in the cover shell 309, then control the pump 202 to start operating to inflate the air bag 204, and then the round basin 201 is raised, so that all the filter holes in the lower part of the round basin 201 are separated from the water surface, at this time the water in the round basin 201 will cause the valve in the filter hole in the lower part of the round basin 201 to be extruded, and then the valve is opened, so that the water is filtered through the filter hole in the lower part of the round basin 201, and the floating plants are left in the round basin 201, so that the round basin 201 carries and filters the floating plants, and the water is guided by the guide vane II 2011, and the external motor is controlled to drive the propeller to rotate to drive the base 1 to move, and then all the connected parts are moved, so that the round basin 201 is moved, and then the above-mentioned same way is used for reciprocating operation, so that the floating plants such as duckweed and algae on the surface of the garden water body can be salvaged and collected in a large range, so as to effectively improve the transparency of the water body, reduce the subsequent treatment difficulty, and be beneficial to maintaining the ecological balance of the water body while improving the landscape effect of the water body.
[0053] Although the present application has been described in detail with reference to the above embodiments, it is apparent to those skilled in the art, through the disclosure, that various changes or modifications can be made to the present application without departing from the principles and spirit of the application defined in the claims. Therefore, the detailed description of the embodiments of the present disclosure is only used to explain, not to limit the present application, and the scope of protection is defined by the content of the claims.
Claims
1. A smart water quality monitoring device for garden water bodies, comprising a base (1); the base (1) having a through hole; characterized in that, It also includes a circular basin (201), a pump (202), a fixing ring (203), an airbag (204), a water collection cylinder (205), a sampling component, a rotating ring (215), a baffle (216), a guide vane I (217), and a monitoring component; the circular basin (201) is fixedly connected to the base (1), and a pull ring is installed on the circular basin (201); the pump (202) is fixedly connected to the base (1); the fixing ring (203) is fixedly connected to the circular basin (201); the airbag (204) is fixedly connected to the fixing ring (203); the air outlet pipe of the pump (202) passes through the circular basin (201) and connects to the airbag (204); the water collection cylinder (205) is fixedly connected to the base (1), and a drain hole is opened on the water collection cylinder (205). A sampling component for sampling water at different areas and depths is connected to the base (1); a rotating ring (215) is rotatably connected to the water collection cylinder (205); a baffle (216) is movably connected inside the water collection cylinder (205), and several through slots are opened on the baffle (216); the rotating ring (215) is connected to the baffle (216) through a connector; a guide plate I (217) is fixed inside the water collection cylinder (205), and several through slots are also opened on the guide plate I (217); the guide plate I (217) is in contact with the baffle (216); a monitoring component for monitoring water quality is connected to the baffle (216); the monitoring component is connected to the base (1); the monitoring component is connected to the rotating ring (215); The sampling assembly includes a support frame (206), a housing (207), a water pump (208), a conduit (209), a delivery pipe (210), a round pipe (211), a motor I (212), a water pipe (213), a filter ball head (2131), a counterweight ball (2132), and a pulley (214); the support frame (206) is fixedly connected to the base (1); the housing (207) is fixedly connected to the support frame (206); the water pump (208) is fixedly connected to the housing (207); the inlet of the water pump (208) is fixedly connected to and connected to the conduit (209); the outlet of the water pump (208) is fixedly connected to and connected to the delivery pipe (210); the delivery pipe (210) passes through the housing (207) and connects to the water collection cylinder ( 205) Fixed and connected; a round tube (211) is rotatably connected to the shell (207); the round tube (211) is rotatably connected and connected to the guide tube (209); a motor I (212) is fixedly connected to the shell (207); the end of the round tube (211) away from the guide tube (209) is fixedly connected to the output shaft of the motor I (212); a water pipe (213) is wound around the round tube (211), and one end of the water pipe (213) is fixedly connected and connected to the round tube (211); the other end of the water pipe (213) passes through the baffle (216) and the guide plate I (217) and is fixedly connected to the filter ball head (2131); a pulley (214) is fixedly connected to the shell (207); the pulley (214) is in contact with the water pipe (213); The monitoring component includes a connecting rod (219), a connecting frame (220), and a pull rod (221); at least two connecting rods (219) are fixedly connected to the baffle (216); a connecting frame (220) is fixedly connected to the upper part of all the connecting rods (219); and a pull rod (221) is fixedly connected to the connecting frame (220). It also includes a cleaning system; a dust removal system is connected to the rotating ring (215); the dust removal system includes a connecting ring (306), a crossbar (307), a rotating shell (308), and a cover (309); the round basin (201) has several filter holes, and each filter hole is equipped with a valve, which allows water to flow out through the filter hole; the rotating ring (215) has several round holes (2151); a connecting ring is fixedly connected to the rotating ring (215). Ring (306); at least two crossbars (307) are fixedly connected to the connecting ring (306); all crossbars (307) are fixedly connected to a rotating shell (308), and the rotating shell (308) has several through slots; the rotating shell (308) is rotatably connected to the pull rod (221); a cover (309) is fixedly connected to the round basin (201), and the cover (309) has several through slots; the cover (309) is rotatably connected to the pull rod (221).
2. The intelligent water quality monitoring device for garden water bodies according to claim 1, characterized in that, The base (1) is equipped with a mounting bracket for mounting and fixing external motors and propellers.
3. The intelligent water quality monitoring device for garden water bodies according to claim 1, characterized in that, The monitoring assembly also includes a telescopic rod (222), a monitoring probe (223), elastic elements (224), a mounting bracket (301), a motor II (302), a spur gear (303), a gear ring (304), and a circular ring (305); the telescopic rod (222) is fixedly connected to the connecting bracket (220); the monitoring probe (223) is fixedly connected to the telescopic part of the telescopic rod (222); at least two elastic elements (224) are fixedly connected to the baffle (216), and all elastic elements (224) are located away from the baffle (216). All are movably connected to the rotating ring (215); the connecting part between the rotating ring (215) and the baffle (216) is an elastic part (224); a mounting bracket (301) is fixedly connected to the base (1); a motor II (302) is mounted on the mounting bracket (301); a spur gear (303) is fixedly connected to the output shaft of the motor II (302); a toothed ring (304) is fixedly connected to the lower surface of the rotating ring (215); the toothed ring (304) meshes with the spur gear (303); a circular ring (305) is fixedly connected to the water collecting cylinder (205).
4. A smart water quality monitoring device for garden water bodies according to any one of claims 1-3, characterized in that, The inner wall of the water collection cylinder (205) is provided with a hydrophobic coating.
5. The intelligent water quality monitoring device for garden water bodies according to claim 4, characterized in that, It also includes a protective frame (2133) and a ball (2134); at least two protective frames (2133) are fixedly attached to the filter ball head (2131), and the protective frames (2133) are made of rubber; a ball (2134) is fixedly attached to the end of the water pipe (213) away from the round pipe (211).
6. The intelligent water quality monitoring device for garden water bodies according to claim 5, characterized in that, It also includes a flow guide tube (218); the flow guide tube (218) is fixed on the flow guide plate I (217), and the flow guide tube (218) is set in an inverted cone shape.
7. The intelligent water quality monitoring device for garden water bodies according to claim 1, characterized in that, The connecting ring (306) is designed as a trumpet shape, which is larger at the top and smaller at the bottom.
8. The intelligent water quality monitoring device for garden water bodies according to claim 7, characterized in that, A flow guide plate II (2011) is fixedly attached to the round basin (201).
Citation Information
Patent Citations
Petroleum sampler
CN212059466U
Water quality monitoring device
CN221426646U