CN212321177U - Hydrology water resource monitoring devices - Google Patents

Hydrology water resource monitoring devices Download PDF

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Publication number
CN212321177U
CN212321177U CN202021043273.1U CN202021043273U CN212321177U CN 212321177 U CN212321177 U CN 212321177U CN 202021043273 U CN202021043273 U CN 202021043273U CN 212321177 U CN212321177 U CN 212321177U
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CN
China
Prior art keywords
water
fixed
supporting
hydrology
positioning
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Expired - Fee Related
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CN202021043273.1U
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Chinese (zh)
Inventor
孟宇华
曹知真
李昕
张瑞峰
李芳芳
霍亮
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Individual
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Individual
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Priority to CN202021043273.1U priority Critical patent/CN212321177U/en
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Publication of CN212321177U publication Critical patent/CN212321177U/en
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Abstract

The utility model relates to a hydrology monitoring technology field discloses a hydrology water resource monitoring devices, in order to improve the ability of hydrology water resource monitoring, the top of supporting the grillage is located one side position department and is fixed with the water pump, and the top of supporting the grillage is located opposite side position department and is fixed with a filter element section of thick bamboo, one side of supporting the grudging post is located middle part position department and is fixed with water level regulating mechanism, and the front side of supporting the grudging post is located top position department and is fixed with the detection box. The utility model discloses a water level adjustment mechanism adjusts the height that the end of intaking was intake, has replaced the form that traditional hawser was hung and has put, has not only improved monitoring devices's stable fastness, and the staff of can being convenient for simultaneously controls the use, and in the monitoring process, through the water pump with the water quality suction to detecting water pipe in, under the detection of detector, can be convenient for the staff to carry out accurate monitoring observation record work to quality of water.

Description

Hydrology water resource monitoring devices
Technical Field
The utility model relates to a hydrology monitoring technology field specifically is a hydrology water resource monitoring devices.
Background
The hydrological monitoring system is suitable for hydrological departments to carry out real-time monitoring on hydrological parameters such as rivers, lakes, reservoirs, channels, underground water and the like, and the monitoring content comprises the following steps: water level, flow rate, rainfall, evaporation, silt, slush, soil moisture, water quality, and the like.
Through retrieval, the Chinese patent net discloses a hydrology and water resource monitoring device (publication No. CN 209280741U), wherein a vertical plate is welded on the outer wall of the top of a bottom plate, an L-shaped reinforcing rib is welded on the outer wall of one side of the vertical plate, the same connecting rib is welded on the outer wall of one side of the reinforcing rib and the outer wall of one side of the vertical plate, a connecting block is welded on the top end of the reinforcing rib, an arc groove is arranged on the top of the connecting block, a traction pipe is welded on the inner wall of the arc groove, one end of a threaded cross rod is inserted in the traction pipe, one end of the threaded cross rod, which is far away from a round handle, is connected with a mounting plate through a bearing, and a transverse plate is welded on the bottom of the mounting plate, so that a worker can conveniently adjust the depth of a sensor extending into water, the use convenience of the, the observation of the staff is inconvenient. Therefore, a hydrographic water resource monitoring device is provided by the person skilled in the art to solve the problems mentioned in the background above.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a hydrology water resource monitoring devices to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: a hydrology and water resource monitoring device comprises a supporting vertical frame, wherein a positioning substrate is fixed below the supporting vertical frame, a positioning screw is screwed in the upper portion of the positioning substrate, a supporting plate frame is fixed at the position of the bottom end of the front side of the supporting vertical frame, a water pump is fixed at the position of one side of the upper portion of the supporting plate frame, a filter element cylinder is fixed at the position of the other side of the upper portion of the supporting plate frame, a primary filter screen is fixed at the position of the end portion of the inner side of the filter element cylinder, a high-efficiency filter screen is fixed at the position of the bottom end of the inner side of the filter element cylinder, a water level adjusting mechanism is fixed at the position of the middle portion of one side of the supporting vertical frame, a detection box body is fixed at the position of the top end of the front side of the supporting vertical frame, a sealing door is connected to the front side of the detection box body, and a control panel is arranged, one side of the control panel is connected with a detection water pipe, the outer side of the detection water pipe is provided with a detector, and one side of the detector is provided with an alarm lamp;
the water level regulating mechanism is including fixing the support mobile jib that supports grudging post middle part position department, the top of supporting the mobile jib is provided with block branch, the top of block branch is fixed with the location folded plate, the top of location folded plate is located middle part position department and is fixed with elevator motor, and the inboard of location folded plate is located middle part position department and rotates and be connected with the transmission lead screw, one side of transmission lead screw is fixed with the location slide bar, and the transmission lead screw all has cup jointed the driving medium with the outside of location slide bar, the end of intaking has been cup jointed to one side of driving medium, it is connected with the filter element section of thick bamboo through bellows to intake the end.
As a further aspect of the present invention: four sets are no less than to the quantity of positioning screw, and positioning screw is for the even symmetrical arrangement of horizontal direction of location base plate, positioning screw is the toper structure.
As a further aspect of the present invention: the internal diameter of supporting the mobile jib and the external diameter looks adaptation of block branch, and the top of supporting the mobile jib runs through and has seted up adjusting hole A, adjusting hole B has been seted up in the front surface of block branch run through, four groups are no less than to adjusting hole B's quantity, and adjusting hole B and adjusting hole A mutual one-to-one.
As a further aspect of the present invention: the length of the transmission screw rod is the same as that of the positioning sliding rod, and the length of the transmission screw rod is not less than 1.5m as long as that of the positioning sliding rod.
As a further aspect of the present invention: just, just, imitate filter screen and high-efficient filter screen and all adopt stainless steel component.
As a further aspect of the present invention: the water pump is connected with the filter element barrel through a water pumping pipe, and the water pump is connected with the detection water pipe through a water discharging pipe.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model discloses a water level adjustment mechanism adjusts the height that the end of intaking was intake, has replaced the form that traditional hawser was hung and has put, has not only improved monitoring devices's stable fastness, and the staff of can being convenient for simultaneously controls the use, and in the monitoring process, through the water pump with the water quality suction to detecting water pipe in, under the detection of detector, can be convenient for the staff to carry out accurate monitoring observation record work to quality of water.
Drawings
FIG. 1 is a schematic structural view of a hydrological water resource monitoring device;
FIG. 2 is an enlarged view of the hydrological water resource monitoring device at A in FIG. 1;
FIG. 3 is a schematic structural view of a filter cartridge in a hydrological water resource monitoring device;
fig. 4 is a schematic structural diagram of a detection box in the hydrology and water resource monitoring device.
In the figure: 1. a support stand; 2. positioning the substrate; 3. positioning a screw rod; 4. a support plate frame; 5. a water pumping pipe; 6. a water pump; 7. a filter cartridge; 8. a drain pipe; 9. detecting the box body; 10. a closing door; 11. supporting the main rod; 12. adjusting the through hole A; 13. an adjusting through hole B; 14. clamping the supporting rod; 15. a lifting motor; 16. positioning the folded plate; 17. a flexible hose; 18. a transmission screw rod; 19. positioning the slide bar; 20. a transmission member; 21. a water inlet end; 22. a primary filter screen; 23. a high-efficiency filter screen; 24. an alarm light; 25. a detector; 26. detecting a water pipe; 27. and a control panel.
Detailed Description
Please refer to fig. 1-4, in the embodiment of the utility model, a hydrology water resource monitoring devices, including supporting grudging post 1, the below of supporting grudging post 1 is fixed with positioning substrate 2, positioning screw 3 has been twisted in the top embedding of positioning substrate 2, four groups are no less than in the quantity of positioning screw 3, and positioning screw 3 is for the even symmetrical arrangement of horizontal direction of positioning substrate 2, positioning screw 3 is the toper structure, in to monitoring devices installation fixed process, move monitoring devices to the bank in monitoring waters, in the definite position department, it is fixed to twist of positioning substrate 2 through the positioning screw 3 of toper structure, with the firm fixing of monitoring devices by the monitoring waters.
The front side of the supporting vertical frame 1 is fixed with a supporting plate frame 4 at the bottom position, the upper part of the supporting plate frame 4 is fixed with a water pump 6 at one side position, the upper part of the supporting plate frame 4 is fixed with a filter core cylinder 7 at the other side position, the inner side of the filter core cylinder 7 is fixed with a primary filter screen 22 at the end position, the inner side of the filter core cylinder 7 is fixed with a high-efficiency filter screen 23 at the bottom position, the primary filter screen 22 and the high-efficiency filter screen 23 are both arc-shaped structures, the primary filter screen 22 and the high-efficiency filter screen 23 are both stainless steel components, the water pump 6 is connected with the filter core cylinder 7 through a water pumping pipe 5, the water pump 6 is connected with a detection water pipe 26 through a drain pipe 8, when monitoring the water quality of a water area, the water pump 6 works, pumps the water in the water area into a telescopic hose 17 through a water inlet end 21, and discharges the water into the filter core cylinder 7 through the telescopic hose 17, the primary filter screen 22 and the high-efficiency filter, water is sucked into the drain pipe 8 through the suction pipe 5 and then discharged into the inspection water pipe 26 through the drain pipe 8.
A water level adjusting mechanism is fixed at the middle position of one side of the supporting vertical frame 1, the water level adjusting mechanism comprises a supporting main rod 11 fixed at the middle position of the supporting vertical frame 1, a clamping branch rod 14 is arranged at the top end of the supporting main rod 11, the inner diameter of the supporting main rod 11 is matched with the outer diameter of the clamping branch rod 14, the top end of the supporting main rod 11 is provided with an adjusting through hole A12 in a penetrating way, the front surface of the clamping support rod 14 is provided with an adjusting through hole B13 in a penetrating way, the number of the adjusting through holes B13 is not less than four, the adjusting through holes B13 and the adjusting through holes A12 are in one-to-one correspondence, in the process of monitoring the water area, the position of the clamping support rod 14 in the support main rod 11 is adjusted, so that the water inlet end 21 can pump water in the water areas in different directions, after the adjustment is finished, the inserted rod which is matched and combined is put in and out of the adjusting through hole, and the supporting main rod 11 and the clamping support rod 14 are positioned.
A positioning folded plate 16 is fixed at the top end of the clamping support rod 14, a lifting motor 15 is fixed at the middle position above the positioning folded plate 16, the inner side of the positioning folded plate 16 is rotatably connected with a transmission screw rod 18 at the middle position, one side of the transmission screw rod 18 is fixed with a positioning slide rod 19, the transmission screw rod 18 and the outer side of the positioning slide rod 19 are both sleeved with a transmission piece 20, one side of the transmission piece 20 is sleeved with a water inlet end 21, the water inlet end 21 is connected with the filter core barrel 7 through a flexible hose 17, the length of the transmission screw rod 18 is the same as that of the positioning slide rod 19, the length of the transmission screw rod 18 and that of the positioning slide rod 19 are not less than 1.5m, in the process of monitoring the water area, the lifting motor 15 works to drive the transmission screw rod 18 to rotate, under the clamping of the positioning slide rod 19, the transmission piece 20 is driven to ascend, the synchronous height to intaking end 21 is adjusted, makes intaking end 21 can take out the water of the different degree of depth and attaches.
A detection box body 9 is fixed at the position of the top end of the front side of the supporting vertical frame 1, a sealing door 10 is connected with the front side of the detection box body 9, and the inner side of the detection box body 9 is provided with a control panel 27 at the bottom end position, one side of the control panel 27 is connected with a detection water pipe 26, the outer side of the detection water pipe 26 is provided with a detector 25, one side of the detector 25 is provided with an alarm lamp 24, the number of the detectors 25 is three, the detector 25 is sequentially provided with a temperature sensor (WZP-187), a pH value sensor (TEMD-6612) and a dissolved oxygen sensor (JPB-607A) from bottom to top, when monitoring water quality, the staff opens the closing door 10, and when rivers in the waters flowed into detecting water pipe 26, detector 25 monitored the temperature, pH value, the oxygen content of quality of water, in transmitting monitoring data to control panel 27, the monitoring of the staff of being convenient for was observed.
The utility model discloses a theory of operation is: in the process of installing and fixing the monitoring device, the monitoring device is moved to the shore of a monitoring water area, the positioning base plate 2 is screwed and fixed through the positioning screw rod 3 with a conical structure at a determined position, the monitoring device is firmly fixed beside the monitoring water area, in the process of monitoring the water area, the position of the clamping support rod 14 in the support main rod 11 is adjusted, so that the water inlet end 21 can pump water in the water areas in different directions, after the adjustment is finished, the inserted rod which is matched and combined is put in and out of the adjusting through hole, the support main rod 11 and the clamping support rod 14 are positioned, the further lifting motor 15 works to drive the transmission screw rod 18 to rotate, under the clamping of the positioning slide rod 19, the transmission piece 20 is driven to ascend and descend and slide on the transmission piece 18, the height position of the movable transmission piece 20 is adjusted, the height of the water inlet end 21 is synchronously adjusted, so that the water inlet end 21 can pump water in different depths, when monitoring waters quality of water, water pump 6 work, water in the waters is through intaking 21 suction to expansion hose 17 in, discharge into filter core section of thick bamboo 7 through expansion hose 17, under the impurity isolation of just imitating filter screen 22 and high-efficient filter screen 23 filters in filter core section of thick bamboo 7, inhale water to drain pipe 8 in through drinking-water pipe 5, and then discharge to detecting in the water pipe 26 through drain pipe 8, synchronous staff opens sealing door 10, rivers when detecting in the waters are gone into to detecting in the water pipe 26, detector 25 is to the temperature of quality of water, pH value, oxygen content monitors, transmit monitoring data to in controlling panel 27, be convenient for staff's monitoring is observed.
The above-mentioned, only be the concrete implementation of the preferred embodiment of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, the concept of which is equivalent to replace or change, should be covered within the protection scope of the present invention.

Claims (6)

1. A hydrology and water resource monitoring device comprises a supporting vertical frame (1) and is characterized in that a positioning base plate (2) is fixed below the supporting vertical frame (1), a positioning screw (3) is screwed in the embedding of the positioning base plate (2), a supporting plate frame (4) is fixed at the bottom position of the front side of the supporting vertical frame (1), a water pump (6) is fixed at one side position of the upper side of the supporting plate frame (4), a filter core cylinder (7) is fixed at the other side position of the upper side of the supporting plate frame (4), a primary filter screen (22) is fixed at the end position of the inner side of the filter core cylinder (7), a high-efficiency filter screen (23) is fixed at the bottom position of the inner side of the filter core cylinder (7), a water level adjusting mechanism is fixed at the middle position of the one side of the supporting vertical frame (1), and a detection box body (9) is fixed at the top position of the front side of the supporting vertical frame (1), the front side of the detection box body (9) is connected with a closing door (10), the inner side of the detection box body (9) is provided with an operation panel (27) at the bottom end position, one side of the operation panel (27) is connected with a detection water pipe (26), the outer side of the detection water pipe (26) is provided with a detector (25), and one side of the detector (25) is provided with an alarm lamp (24);
the water level adjusting mechanism is including fixing support mobile jib (11) in support grudging post (1) middle part position department, the top of supporting mobile jib (11) is provided with block branch (14), the top of block branch (14) is fixed with location folded plate (16), the top of location folded plate (16) is located middle part position department and is fixed with elevator motor (15), and the inboard of location folded plate (16) is located middle part position department and rotates and be connected with drive screw (18), one side of drive screw (18) is fixed with location slide bar (19), and drive screw (18) and the outside of location slide bar (19) have all cup jointed driving medium (20), water inlet end (21) has been cup jointed to one side of driving medium (20), water inlet end (21) are connected with filter core section of thick bamboo (7) through bellows (17).
2. The hydrology and water resource monitoring device of claim 1, wherein the number of the positioning screws (3) is not less than four, the positioning screws (3) are uniformly and symmetrically arranged relative to the horizontal direction of the positioning base plate (2), and the positioning screws (3) are in a conical structure.
3. The hydrology and water resource monitoring device according to claim 1, wherein the inner diameter of the support main rod (11) is matched with the outer diameter of the clamping support rod (14), an adjusting through hole A (12) is formed in the top end of the support main rod (11), an adjusting through hole B (13) is formed in the front surface of the clamping support rod (14), the number of the adjusting through holes B (13) is not less than four, and the adjusting through holes B (13) and the adjusting through holes A (12) are in one-to-one correspondence.
4. The hydrology and water resource monitoring device of claim 1, wherein the length of the transmission screw rod (18) is the same as that of the positioning slide rod (19), and the length of the transmission screw rod (18) is not less than 1.5m as long as that of the positioning slide rod (19).
5. The hydrology and water resource monitoring device of claim 1, wherein the primary filter screen (22) and the high efficiency filter screen (23) are both arc structures, and the primary filter screen (22) and the high efficiency filter screen (23) are both stainless steel members.
6. A hydrological and water resource monitoring device according to claim 1, wherein the water pump (6) is connected with the filter cartridge (7) through a water suction pipe (5), and the water pump (6) is connected with the detection water pipe (26) through a water discharge pipe (8).
CN202021043273.1U 2020-06-09 2020-06-09 Hydrology water resource monitoring devices Expired - Fee Related CN212321177U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021043273.1U CN212321177U (en) 2020-06-09 2020-06-09 Hydrology water resource monitoring devices

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021043273.1U CN212321177U (en) 2020-06-09 2020-06-09 Hydrology water resource monitoring devices

Publications (1)

Publication Number Publication Date
CN212321177U true CN212321177U (en) 2021-01-08

Family

ID=74025478

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021043273.1U Expired - Fee Related CN212321177U (en) 2020-06-09 2020-06-09 Hydrology water resource monitoring devices

Country Status (1)

Country Link
CN (1) CN212321177U (en)

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20210108

Termination date: 20210609