CN211262401U - Float type reservoir water level gauge - Google Patents

Float type reservoir water level gauge Download PDF

Info

Publication number
CN211262401U
CN211262401U CN202020228892.1U CN202020228892U CN211262401U CN 211262401 U CN211262401 U CN 211262401U CN 202020228892 U CN202020228892 U CN 202020228892U CN 211262401 U CN211262401 U CN 211262401U
Authority
CN
China
Prior art keywords
water level
floating ball
reservoir
water surface
floating
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202020228892.1U
Other languages
Chinese (zh)
Inventor
于树利
李金玉
杨鑫
孙亮
薛雨
叶坦
张喜
张家铭
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tangshan Modern Industry Control Technology Co Ltd
Original Assignee
Tangshan Modern Industry Control Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Tangshan Modern Industry Control Technology Co Ltd filed Critical Tangshan Modern Industry Control Technology Co Ltd
Priority to CN202020228892.1U priority Critical patent/CN211262401U/en
Application granted granted Critical
Publication of CN211262401U publication Critical patent/CN211262401U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Level Indicators Using A Float (AREA)

Abstract

The utility model relates to a float-type reservoir fluviograph belongs to water conservancy monitoring technology field. The technical scheme is as follows: the water surface floating host (1) floats on the water surface of a reservoir, the lower end of a floating ball (4) provided with a water level sensor (3) is connected with a bottom end weight (6) through a steel cable (5), the bottom end weight (6) is sunk to the bottom of the reservoir, the water level sensor (3) matched with the floating ball (4) is connected with the water surface floating host (1) through a cable (2), the floating ball (4) floats under the water surface, and the water level sensor (3) matched with the floating ball (4) is positioned between the water surface floating host (1) and the bottom end weight (6). The utility model discloses an actively the effect: the whole float-type reservoir water level gauge can be manufactured in a factory, the previous complex system is changed into an integrated product, the float-type reservoir water level gauge can work by throwing the integrated product into a reservoir, silt and weeds at the bottom of the reservoir can be avoided, and no civil construction is needed.

Description

Float type reservoir water level gauge
Technical Field
The utility model relates to a float-type reservoir fluviograph belongs to water conservancy monitoring technology field.
Background
In the water conservancy industry, reservoirs spread throughout China and are responsible for water storage and water demand regulation, the reservoirs in China are divided into southern reservoirs and northern reservoirs, the southern reservoirs usually cannot be frozen in winter, and the northern reservoirs usually can be frozen on surfaces in winter.
In order to grasp the water storage capacity of the reservoir and realize reasonable water allocation, and also in order to safely operate the reservoir, the water level of the reservoir must be monitored. The prior art water level gauge for monitoring the water level of the reservoir usually comprises a water level sensor, an intelligent instrument (a water level signal processing system), a power supply system, a data transmission system, a waterproof shell, a mounting bracket, lightning protection grounding, a civil engineering frame rod and the like, corresponding fixed facilities need to be arranged in the reservoir, the system is complex, the equipment is expensive, the construction is troublesome, the mounting cost is high, and the maintenance is difficult. In addition, because the bottom of the reservoir is provided with more sludge and weeds, if the water level sensor enters the sludge and the weeds, the water level sensor cannot work normally, and the measurement of the water level of the reservoir cannot be completed.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a float-type reservoir fluviograph does not need installing support, lightning protection ground connection and civil engineering, also need not the installation, throws into the reservoir during the use and can work, solves the above-mentioned problem that the background art exists.
The technical scheme of the utility model is that:
a float-type reservoir water level gauge comprises a water surface floating host, a cable, a water level sensor, a floating ball, a steel cable and a bottom end weight, wherein the water surface floating host floats on the water surface of a reservoir; the water surface floating host comprises a sealing barrel, a water level signal processing system, a rechargeable battery and a solar panel, wherein the solar panel is arranged at the top of the sealing barrel in a matching mode, the water level signal processing system and the rechargeable battery are arranged in the sealing barrel in a matching mode, the solar panel and the rechargeable battery are sequentially connected with the water level signal processing system, and the water level signal processing system is connected with a water level sensor matched with the floating ball through a cable. The water level signal processing system is the known prior art, is the same as the water level signal processing system in the prior art, is not the innovation point of the patent, and creatively combines the known elements to fulfill the aim of the utility model.
The center of the floating ball is provided with a through hole, the whole floating ball is of a sealing structure with the through hole, and the water level sensor is of a rod type structure and is inserted into and fixed in the through hole in the center of the floating ball.
The through hole is a pipe section, the center of the floating ball is provided with a through pipe section, the outer wall of the pipe section and the floating ball are sealed into a whole, the floating ball is of a sealing structure, the water level sensor is of a rod type structure and is inserted into the pipe section at the center of the floating ball and fixed, and the steel cable can be fixedly connected to the pipe section and also can be fixedly connected to the water level sensor.
The floating ball can also be of an annular structure, and the water level sensor is fixed in an inner ring of the floating ball.
The rechargeable battery is arranged at the bottom of the sealing barrel, so that the weight of the bottom of the sealing barrel is increased conveniently, the sealing barrel keeps a correct posture, the solar cell panel is positioned at the top of the sealing barrel, and the water surface floating host machine is ensured to float stably and not to overturn.
A charging controller is arranged in the sealed barrel, and the solar cell panel is connected with the rechargeable battery through the charging controller. The charge controller is a common controller known in the art for controlling the state of charge of the rechargeable battery.
The bottom end heavy object is a conical or cylindrical metal block.
The sealing barrel is big end down, and the bottom area of sealing barrel is less than its top area for the corresponding increase of solar cell panel who sets up at the sealing barrel top can absorb more solar energy and supply power.
The floating ball is used for fixing the water level sensor. The water level sensor is a static pressure type water level sensor.
A float-type reservoir water level gauge comprises a water surface floating host, a cable, a bubble water level gauge, a floating ball, a steel cable and a bottom end weight, wherein the water surface floating host floats on the water surface of a reservoir, the water surface floating host comprises a sealing barrel, a water level signal processing system, the bubble water level gauge, a rechargeable battery and a solar cell panel, the solar cell panel is arranged at the top of the sealing barrel in a matching manner, the water level signal processing system and the rechargeable battery are arranged in the sealing barrel in a matching manner, the bubble water level gauge is positioned in the water surface floating host, the solar cell panel and the rechargeable battery are sequentially connected with the water level signal processing system, and the water level signal processing system is connected with the bubble water level; the lower end of the floating ball is connected with a bottom end weight through a steel cable, the bottom end weight is sunk to the bottom of the reservoir, the vent pipe of the bubble water level gauge is matched with the floating ball, the floating ball floats below the water surface, and the outlet of the vent pipe of the bubble water level gauge matched with the floating ball is positioned between the water surface floating host and the bottom end weight. The bubble water level gauge is a well-known technology in the field and is not an innovative point of the present application.
The utility model relates to a cable, level sensor, floater, cable wire, bottom heavy object, sealed bucket, water level signal processing system, bubble fluviograph, solar cell panel and charge controller etc. are the publicly known technique that is visible in the market.
The utility model is suitable for a water level measurement of various reservoirs, especially the measurement of the not frozen reservoir water level in winter.
The utility model discloses an actively the effect: the whole float-type reservoir water level gauge can be manufactured in a factory, the previous complex system is changed into an integrated product, the float-type reservoir water level gauge can work by throwing the integrated product into a reservoir, silt and weeds at the bottom of the reservoir can be avoided, and no civil construction is needed.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the present invention;
FIG. 2 is a schematic view of a floating ball structure according to an embodiment of the present invention;
fig. 3 is a schematic view of a top view structure of a floating ball according to an embodiment of the present invention;
in the figure: the device comprises a water surface floating host 1, a cable 2, a water level sensor 3, a floating ball 4, a steel cable 5, a bottom end weight 6, a sealing barrel 7, a water level signal processing system 8, a rechargeable battery 9, a solar cell panel 10 and a pipe section 11.
Detailed Description
The invention is further described with reference to the following figures and examples:
a float type reservoir water level gauge comprises a water surface floating host 1, a cable 2, a water level sensor 3, a floating ball 4, a steel cable 5 and a bottom end weight 6, wherein the water surface floating host 1 floats on the water surface of a reservoir, the lower end of the floating ball 4 provided with the water level sensor 3 is connected with the bottom end weight 6 through the steel cable 5, the bottom end weight 6 sinks to the bottom of the reservoir, the water level sensor matched with the floating ball 4 is connected with the water surface floating host 1 through the cable 2, the floating ball 4 floats below the water surface, and the water level sensor 3 matched with the floating ball 4 is positioned between the water surface floating host 1 and the bottom end weight 6; the water surface floating host comprises a sealing barrel 7, a water level signal processing system 8, a rechargeable battery 9 and a solar panel 10, wherein the solar panel 10 is arranged at the top of the sealing barrel 7 in a matching mode, the water level signal processing system 8 and the rechargeable battery 9 are arranged in the sealing barrel 7 in a matching mode, the solar panel 10 and the rechargeable battery 9 are sequentially connected with the water level signal processing system 8, and the water level signal processing system 8 is connected with a water level sensor 3 matched with a floating ball 4 through a cable 2. The water level signal processing system 8 is a known prior art, and is the same as the water level signal processing system in the prior art, the water level signal processing system is not an innovation point of the patent, and the innovation point of the patent is to creatively combine known elements to fulfill the aim of the utility model.
The center of the floating ball 4 is provided with a through hole, the whole floating ball 4 is of a sealing structure with the through hole, and the water level sensor 3 is of a rod type structure and is inserted into and fixed in the through hole in the center of the floating ball.
The through hole is a pipe section 11, the center of the floating ball 4 is provided with a through pipe section, the outer wall of the pipe section and the floating ball are sealed into a whole, the floating ball is of a sealing structure, the water level sensor 3 is of a rod type structure and is inserted into and fixed on the pipe section 11 at the center of the floating ball, and the steel cable 5 can be fixedly connected to the pipe section 11 and also can be fixedly connected to the water level sensor 3.
The floating ball can also be of an annular structure, and the water level sensor is fixed in an inner ring of the floating ball.
The rechargeable battery 9 is arranged at the bottom of the sealing barrel 7, so that the weight of the bottom of the sealing barrel 7 is increased conveniently, the sealing barrel 7 keeps a correct posture, and the solar panel is positioned at the top of the sealing barrel 7.
A charging controller is arranged in the sealing barrel 7, and the solar cell panel is connected with the rechargeable battery through the charging controller. The charge controller is a common controller known in the art for controlling the state of charge of the rechargeable battery.
The bottom end weight 6 is a conical metal block.
The sealing barrel 7 is big end down, and the bottom area of sealing barrel 7 is less than its top area for the corresponding increase of solar cell panel who sets up at the sealing barrel top can absorb more solar energy and supply power.
The floating ball 4 is used for fixing the water level sensor 3. The water level sensor is a static pressure type water level sensor.
The measuring method of the water level gauge comprises the following steps:
throwing the water level gauge into a reservoir, wherein a bottom end heavy object 6 at the bottom of the water level gauge penetrates through the silt at the bottom of the reservoir to reach the lowest point of the bottom of the reservoir, and integrally positioning the water level gauge; the length of the steel cable between the bottom heavy object and the floating ball is ensured to ensure that the floating ball is not lower than the dead reservoir capacity water level above the sludge, thereby ensuring that the water level sensor is not polluted by the sludge at the bottom of the reservoir; the floating ball 4 floats below the water surface, and the water level sensor 3 matched with the floating ball 4 is stably positioned above the silt and weeds at the bottom of the reservoir; the water surface floating host floats on the water surface of the reservoir, and the solar panel is exposed out of the water surface to absorb solar energy and supply power to the water level signal processing system; the floating ball with the water level sensor floats below the water surface, the water level sensor measures the water level of the reservoir, and a water level signal sent by the water level sensor is transmitted into the water level signal processing system through the cable 2 to be processed, so that a water level measuring result of the reservoir is obtained.
More specifically, the method comprises the following steps: firstly, calculating or measuring depth values D of the sludge and the weeds at the bottom of the reservoir, and determining the length of a steel cable 5, wherein the length of the steel cable 5 is 1-2 meters longer than the depth values D of the sludge and the weeds at the bottom of the reservoir; throwing the water level gauge into a reservoir, wherein a bottom end weight 6 at the bottom of the water level gauge penetrates through the silt at the bottom of the reservoir to reach the lowest point at the bottom of the reservoir, integrally positioning the water level gauge, floating balls 4 float below the water surface, and water level sensors 3 matched with the floating balls 4 are stably positioned 1-2 meters above the silt and weeds at the bottom of the reservoir.
The rechargeable battery is placed at the bottom in the sealed barrel, and the weight of the lower part of the sealed barrel is larger than that of the upper part of the sealed barrel, so that the water surface floating host can stably float without overturning.
A float-type reservoir water level gauge comprises a water surface floating host, a cable, a bubble water level gauge, a floating ball, a steel cable and a bottom end weight, wherein the water surface floating host floats on the water surface of a reservoir, the water surface floating host comprises a sealing barrel, a water level signal processing system, the bubble water level gauge, a rechargeable battery and a solar cell panel, the solar cell panel is arranged at the top of the sealing barrel in a matching manner, the water level signal processing system and the rechargeable battery are arranged in the sealing barrel in a matching manner, the bubble water level gauge is positioned in the water surface floating host, the solar cell panel and the rechargeable battery are sequentially connected with the water level signal processing system, and the water level signal processing system is connected with the bubble water level; the lower end of the floating ball is connected with a bottom end weight through a steel cable, the bottom end weight is sunk to the bottom of the reservoir, the vent pipe of the bubble water level gauge is matched with the floating ball, the floating ball floats below the water surface, and the outlet of the vent pipe of the bubble water level gauge matched with the floating ball is positioned between the water surface floating host and the bottom end weight.
The measuring method of the water level gauge comprises the following steps: when the water level meter is used, the water level meter is thrown into a reservoir, a heavy object at the bottom of the water level meter penetrates through the silt at the bottom of the reservoir to reach the lowest point of the bottom of the reservoir, and the water level meter is integrally positioned; the length of the steel cable between the bottom heavy object and the floating ball is ensured to ensure that the floating ball is not lower than the dead reservoir capacity water level above the sludge, the floating ball floats below the water surface, and the vent pipe outlet of the bubble water level gauge matched with the floating ball is positioned above the sludge and the weeds at the bottom of the reservoir; at the moment, the water surface floating host floats on the water surface of the reservoir, and the solar cell panel is exposed out of the water surface to absorb solar energy and supply power to the water level signal processing system; the bubble water level meter measures the water level of the reservoir, and a water level signal sent by the bubble water level meter enters the water level signal processing system through cable transmission to be processed, so that a reservoir water level measurement result is obtained.
With reference to fig. 1, the present invention is embodied as follows:
when the utility model is used for the reservoir which is not iced in the south, the utility model is thrown into the reservoir when in use, the bottom heavy object 6 at the bottom of the reservoir penetrates the silt at the bottom of the reservoir to reach the lowest point at the bottom of the reservoir, the water level gauge is integrally positioned, the water surface floating host 1 floats on the water surface of the reservoir, the solar panel 10 absorbs the solar energy and supplies power to the water level signal processing system 8; the floating ball 4 with the water level sensor 3 floats under the water surface, and the water level sensor 3 measures the water level of the reservoir. The rechargeable battery is arranged at the bottom in the sealed barrel, the rechargeable battery is heavy, the weight of the lower part of the sealed barrel is larger than that of the upper part, and the main floating machine 1 can float stably on the water surface without overturning. The steel cable 5 between the bottom end weight 6 and the floating ball 4 ensures that the floating ball is not lower than the dead reservoir capacity water level above the sludge, thereby ensuring that the water level sensor 3 cannot be polluted by the sludge at the bottom of the reservoir.
The water level signal processing system 8 may be provided with corresponding components, such as a transmitting and receiving module, for uploading the water level value measured in real time to an upper computer of a management center, so as to realize the following functions: 1. remotely inputting a water level calibration value/storage capacity curve; 2. the upper and lower limit water levels exceed the limit and the reporting frequency is increased; 3. and increasing the reporting frequency when the water level change rate exceeds the limit. The water level signal processing system 8 can also be provided with a positioning anti-theft alarm component, so that field anti-theft positioning alarm can be realized.
The transmitting and receiving module, the upper computer and the positioning anti-theft alarm component are all known and public technologies in the field and can be purchased or assembled by oneself.

Claims (8)

1. The utility model provides a float-type reservoir fluviograph which characterized in that: the water surface floating system comprises a water surface floating host (1), a cable (2), a water level sensor (3), a floating ball (4), a steel cable (5) and a bottom end weight (6), wherein the water surface floating host (1) floats on the water surface of a reservoir, the lower end of the floating ball (4) provided with the water level sensor (3) is connected with the bottom end weight (6) through the steel cable (5), the bottom end weight (6) is sunk to the bottom of the reservoir, the water level sensor (3) matched with the floating ball (4) is connected with the water surface floating host (1) through the cable (2), the floating ball (4) floats below the water surface, and the water level sensor (3) matched with the floating ball (4) is positioned between the water surface floating host (1) and the bottom; the water surface floating host comprises a sealing barrel (7), a water level signal processing system (8), a rechargeable battery (9) and a solar panel (10), wherein the solar panel (10) is arranged at the top of the sealing barrel (7) in a matching mode, the water level signal processing system (8) and the rechargeable battery (9) are arranged in the sealing barrel (7) in a matching mode, the solar panel (10) and the rechargeable battery (9) are sequentially connected with the water level signal processing system (8), and the water level signal processing system (8) is connected with a water level sensor (3) matched with a floating ball (4) through a cable (2).
2. The float-type reservoir level gauge according to claim 1, wherein: the center of the floating ball (4) is provided with a through hole, the whole floating ball (4) is of a sealing structure with the through hole, and the water level sensor (3) is of a rod type structure and is inserted into and fixed in the through hole in the center of the floating ball.
3. The float-type reservoir level gauge according to claim 2, wherein: the through hole is a pipe section (11), the center of the floating ball (4) is provided with a transparent pipe section, the outer wall of the pipe section and the floating ball are sealed into a whole, the floating ball is of a sealing structure, the water level sensor (3) is of a rod type structure and is inserted into and fixed on the pipe section (11) at the center of the floating ball, and the steel cable (5) is fixedly connected onto the pipe section (11) or fixedly connected onto the water level sensor (3).
4. A float-type reservoir level gauge according to claim 1 or 2, wherein: the rechargeable battery (9) is arranged at the bottom of the sealing barrel (7), so that the weight of the bottom of the sealing barrel (7) is increased conveniently, the sealing barrel (7) keeps a correct posture, and the solar panel is positioned at the top of the sealing barrel (7).
5. A float-type reservoir level gauge according to claim 1 or 2, wherein: the floating ball is of an annular structure, and the water level sensor is fixed in an inner ring of the floating ball.
6. A float-type reservoir level gauge according to claim 1 or 2, wherein: the bottom end weight (6) is a conical or cylindrical metal block.
7. A float-type reservoir level gauge according to claim 1 or 2, wherein: the sealing barrel (7) is big end down, and the area of the bottom end of the sealing barrel (7) is smaller than that of the top end thereof.
8. The utility model provides a float-type reservoir fluviograph which characterized in that: the system comprises a water surface floating host, a cable, a bubble water level gauge, a floating ball, a steel cable and a bottom end weight, wherein the water surface floating host floats on the water surface of a reservoir, the water surface floating host comprises a sealing barrel, a water level signal processing system, the bubble water level gauge, a rechargeable battery and a solar cell panel, the solar cell panel is arranged at the top of the sealing barrel in a matching manner, the water level signal processing system and the rechargeable battery are arranged in the sealing barrel in a matching manner, the bubble water level gauge is positioned in the water surface floating host, the solar cell panel and the rechargeable battery are sequentially connected with the water level signal processing system, and the water level signal processing system is connected with the; the lower end of the floating ball is connected with a bottom end weight through a steel cable, the bottom end weight is sunk to the bottom of the reservoir, the vent pipe of the bubble water level gauge is matched with the floating ball, the floating ball floats below the water surface, and the outlet of the vent pipe of the bubble water level gauge matched with the floating ball is positioned between the water surface floating host and the bottom end weight.
CN202020228892.1U 2020-02-29 2020-02-29 Float type reservoir water level gauge Active CN211262401U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020228892.1U CN211262401U (en) 2020-02-29 2020-02-29 Float type reservoir water level gauge

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020228892.1U CN211262401U (en) 2020-02-29 2020-02-29 Float type reservoir water level gauge

Publications (1)

Publication Number Publication Date
CN211262401U true CN211262401U (en) 2020-08-14

Family

ID=71991394

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202020228892.1U Active CN211262401U (en) 2020-02-29 2020-02-29 Float type reservoir water level gauge

Country Status (1)

Country Link
CN (1) CN211262401U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113216323A (en) * 2021-05-26 2021-08-06 青海九零六工程勘察设计院 Distributed underground reservoir group

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113216323A (en) * 2021-05-26 2021-08-06 青海九零六工程勘察设计院 Distributed underground reservoir group

Similar Documents

Publication Publication Date Title
CN104111091A (en) Debris flow mechanical parameter monitoring system and debris flow early warning system
CN211262401U (en) Float type reservoir water level gauge
CN112082535A (en) Water conservancy monitoring system based on wisdom water gauge
CN111121922A (en) Float type reservoir water level meter and measuring method thereof
CN217443957U (en) Debris flow early warning integrated station
CN204807161U (en) Throw type water level monitoring devices
CN209117116U (en) A kind of groundwater level monitoring device
CN209979011U (en) Drilling ground water level real-time supervision device
CN208313959U (en) A kind of groundwater quality on-Line Monitor Device
CN216593656U (en) Hydrogeological exploration ground water level observation device
CN206456513U (en) A kind of Portable buoy throwing device for hydrologic survey
CN205785332U (en) Integration remote measurement paddy field moisture water-level instrumentation
CN214407450U (en) Energy-saving settlement monitoring device
CN210243837U (en) Sludge deposition on-line monitoring system
CN105925990B (en) A kind of offshore wind power foundation cathodic protection remote monitoring device and its monitoring method
CN113037136B (en) Silicon nanowire photovoltaic cell, water level monitor and self-driven water level monitoring device
CN112233387A (en) Coastal storm surge monitoring device and online monitoring and early warning system
CN108279056A (en) A kind of signal wireless transmission and self-powered liquid level detection device
CN209961260U (en) Fixed-point suspension type ice thickness and water level integrated continuous monitoring device
CN207739240U (en) A kind of foundation pit inclination automated watch-keeping facility integrated with delaminating deposition
CN216524248U (en) Ultrasonic water level monitoring device
CN210513322U (en) Urban waterlogging water level detection device
CN207037128U (en) A kind of Weighing type precipitation sensor
CN205246067U (en) Level detection sensor
CN220772303U (en) Landslide and collapse geological disaster real-time monitoring system

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant