CN210005717U - reservoir flood prevention meteorological monitoring device with automatic alarm function - Google Patents

reservoir flood prevention meteorological monitoring device with automatic alarm function Download PDF

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Publication number
CN210005717U
CN210005717U CN201822052820.1U CN201822052820U CN210005717U CN 210005717 U CN210005717 U CN 210005717U CN 201822052820 U CN201822052820 U CN 201822052820U CN 210005717 U CN210005717 U CN 210005717U
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pairs
solar panel
flood prevention
box body
alarm function
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CN201822052820.1U
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王文
何小红
师浪
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Xi'an Dingsheng Electronic Technology Co Ltd
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Xi'an Dingsheng Electronic Technology Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy

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Abstract

The utility model discloses an kind of reservoir flood prevention meteorological monitoring device with automatic alarm function, including base, optical line sensors, solar panel, monitor and water level monitoring radar, install elevation structure on the base, the last revolution mechanic that installs of elevation structure, optical line sensors settles on solar panel, solar panel settles on revolution mechanic, monitor settles on the solar panel right side, water level monitoring radar settles on the elevation structure right side, the utility model relates to a reservoir flood prevention technical field, the device pass through elevation structure and revolution mechanic's mutually supporting, have realized the automatic lifting function of early warning monitoring platform, make solar panel rotate along with sunshine direction simultaneously, reduce the energy consumption, simple structure, convenient operation.

Description

reservoir flood prevention meteorological monitoring device with automatic alarm function
Technical Field
The utility model relates to a reservoir flood prevention technical field specifically is kinds of reservoir flood prevention meteorological monitoring devices with automatic alarm function.
Background
Under the background, research and development of a reservoir flood prevention weather monitoring and early warning system provide basic reservoir information, reservoir water condition change information, weather forecast, rainfall situation, weather early warning information and the like for the government and a flood prevention department , monitor and manage rainfall situations according to user set parameters, forecast future rainfall situations and evaluate safety conditions of a reservoir, automatically alarm when the conditions possibly endanger the safety of the reservoir occur, provide timely effective information support and convenient decision-making command for reservoir flood prevention work, however, most of existing flood prevention early warning devices adopt a fixed tower structure, and generally need workers to climb to an upper working platform for maintenance, increase operation cost and overall operation cost, and are a mode of keeping of small-sized working support, and the problems of difficulty in researching severe working conditions of the reservoir or keeping the overall operation cost of the reservoir are caused, and the problems of difficulty in monitoring the working condition of the reservoir are solved.
SUMMERY OF THE UTILITY MODEL
The utility model provides a not enough to prior art, the utility model provides an kinds of reservoir flood prevention meteorological monitoring device with automatic alarm function, what reservoir flood prevention early warning device adopted is fixed pylon structure mostly, it maintains often to need the staff to climb to the top workstation, the cost and the whole input of fortune dimension have been increased, or be on a little small-size support direct mount monitor terminal, although the cost is lower for this kind of mode, but small-size support's reliability is not strong, hardly keep the steady state of work under bad weather condition, bring the problem of hidden danger for monitoring work.
kinds of reservoir flood prevention meteorological monitoring devices with automatic alarm function, including base, optical line sensor, solar panel, monitor probe and water level monitoring radar, install the elevation structure on the base, install the rotating structure on the elevation structure, optical line sensor settles on solar panel, solar panel settles on the rotating structure, monitor probe settles on the right side of solar panel, water level monitoring radar settles on the right side of elevation structure;
the lifting structure comprises a mounting plate, an th box body, pairs of screw rods with the same structure, a bearing plate, pairs of th gears with the same structure, pairs of supporting frames with the same structure, a th transmission shaft, pairs of second gears with the same structure, a th servo motor and a th driving gear;
pairs of through holes with the same structure are formed in the mounting plate, the box is arranged on the mounting plate, two pairs of second through holes with the same structure are formed in the upper wall surface and the lower wall surface of the 1 box respectively, the two pairs of second through holes correspond to pairs of through holes, pairs of lead screws are embedded in pairs of 6 through holes, the 7 ends of the lead screws extend into a 8 box, pairs of gears are spirally arranged on pairs of the lead screws, pairs of supporting frames are arranged in 2 boxes and are positioned on the lower wall surface of a 3 box, the transmission shaft is arranged on the supporting frame, 6 pairs of second gears are embedded at two ends of a transmission shaft and are meshed with the pairs of gears, the servo motor is arranged in the box and is positioned on the lower wall surface of the box, the second box is embedded in the driving gear, and the driving gear is meshed with the pair of the driving gear and the driving gear pair and the driving gear pair is meshed with the ;
the rotating structure, it includes: the second box body, a second servo motor, a second driving gear, a driven gear and a second transmission shaft;
the second box body is arranged on the rear side of the mounting plate, a through hole is formed in the second box body, the second transmission shaft is embedded in the through hole, the end of the second transmission shaft extends into the second box body, the end of the second transmission shaft is connected with the solar panel, the driven gear is arranged in the box body and is embedded on the second transmission shaft, the second servo motor is arranged in the box body, and the second driving gear is embedded on the driving end of the second servo motor and is meshed with the driven gear.
Preferably, pairs of upper flip covers with the same structure are arranged above the second through hole on the upper wall face of the box body, and the upper flip covers are used for preventing water.
Preferably, the mounting plate is provided with a lightning rod: the lightning rod is used for protection.
Preferably, the mounting plate is provided with a rain measuring cylinder: the rain measuring cylinder is used for receiving rainwater.
Preferably, install the connecting block between solar panel and the second transmission shaft: the linking block facilitates the connection.
Preferably, pairs of fixing blocks with the same structure are arranged between the pairs of the screw rods and the bearing plate, and the fixing blocks are used for fixing.
Advantageous effects
The utility model provides an reservoir flood prevention meteorological monitoring device with automatic alarm function possesses following beneficial effect, through the mutually supporting of elevation structure and rotating-structure, the automatic raising and lowering functions of early warning monitoring platform has been realized, make solar panel rotate along with the direction of sunshine simultaneously, reduce the energy consumption, it is fixed tower structure to have solved that current reservoir flood prevention early warning device mostly adopts, it often needs staff to climb to the top workstation and maintain, the cost and the whole input of fortune dimension have been increased, or direct mount monitor terminal on a little small-size support, although this kind of mode cost is lower, small-size support's reliability is not strong, hardly keep the steady state of work under bad weather condition, the problem that brings for monitoring work.
Drawings
FIG. 1 is the utility model discloses a reservoir flood prevention meteorological monitoring device's that kinds have automatic alarm function owner looks structural schematic.
Fig. 2 is the utility model discloses a reservoir flood prevention meteorological monitoring device's that kinds have automatic alarm function back vision structure sketch map.
Fig. 3 is the utility model discloses a kinds of reservoir flood prevention meteorological monitoring devices with automatic alarm function's overlook schematic structure.
In the drawing, the device comprises a base 1, a light sensor 2, a solar panel 3, a monitoring probe 4, a water level monitoring radar 5, a mounting plate 6, a box 7- th, a screw rod 8, a bearing plate 9, a gear 10-11 th, a support frame 11, a th transmission shaft 12, a second gear 13, a th servo motor 14, a th driving gear 15, a second box 16, a second servo motor 17, a second driving gear 18, a driven gear 19, a second transmission shaft 20, an upper turning cover 21, a lightning rod 22, a rain measuring cylinder 23, a connecting block 24 and a fixing block 25.
Detailed Description
The technical solution in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of , but not all embodiments.
Referring to fig. 1-3, the utility model provides a technical scheme, a reservoir flood prevention weather monitoring device with automatic alarm function, including base 1, light sensor 2, solar panel 3, monitoring probe 4 and water level monitoring radar 5, install a lifting structure on the base 1, install a rotating structure on the lifting structure, light sensor 2 is disposed on solar panel 3, solar panel 3 is disposed on the rotating structure, monitoring probe 4 is disposed on the right side of solar panel 3, water level monitoring radar 5 is disposed on the right side of the lifting structure, the lifting structure includes mounting panel 6, 0 box bearing plate 7, 1 pair of lead screw 8, bearing plate 9, 2 pair of 3 gears 10, 4 pair of supporting frame 11, 5 transmission shaft 12, 6 pair of second lightning protection gear 13, 7 servo motor 14 and 8 driving gear 15 with the same structure, 9 pair of second through hole with the same structure is disposed on mounting panel 6, 0 on the mounting panel 7, 1 pair of supporting frame 11, 5 transmission shaft 12, 6 pair of second lightning protection gear 14 is disposed on the box 6, 7 drive shaft 7 set on the second box 6, 7 set up a drive shaft 7, 7 a drive shaft 7, 7 a drive shaft 7 a drive a lead screw 7, 7 a drive shaft 7 a drive shaft 7, 7 a drive shaft 7, 7 a drive shaft, 7, a drive shaft, a drive shaft, a drive a screw, a drive a screw, a drive a screw, a drive shaft, a drive shaft, a drive shaft, a drive a.
All the electrical components in the present application are connected with the power supply adapted to the electrical components through the wires, and an appropriate controller should be selected according to actual conditions to meet the control requirements, and specific connection and control sequences should be obtained.
The following are specific structures and functions of some of the electrical components mentioned in this document:
the th servo motor is a TJS-11KW type servo motor produced by Dongguan City Taijiasheng actual Co., Ltd, and an engine for controlling the mechanical elements to operate in a servo system is a auxiliary motor indirect speed change device.
The servo motor can control the speed and position accuracy accurately, and can convert the voltage signal into torque and rotating speed to drive a control object.
The second servo motor is an IHSS86-80-70 type servo motor produced by the Hongyun Yu hardware business in the Nanshan area of Shenzhen, an engine for controlling the mechanical elements to operate in a servo system is a auxiliary motor indirect speed change device, the servo motor can control the speed and position accuracy very accurately, and a voltage signal can be converted into a torque and a rotating speed to drive a control object.
A lightning rod: by adopting the Duermenson ESE 2500 type advanced discharge lightning rod produced by a Raymilk electron source manufacturer, when the thundercloud discharge approaches the ground, the ground electric field is distorted. A space with concentrated local electric field is formed at the top end of the lightning rod to influence the development direction of lightning leading discharge, so that lightning is guided to discharge to the lightning rod, and then lightning current is introduced into the ground through the grounding down conductor and the grounding device, so that the protected object is prevented from being struck by lightning.
The light sensor is made up of two components, namely, projector and light receiver, the projector focuses the light from the lens, and transmits it to the lens of the light receiver, and then to the receiving sensor, which converts the received light signal into electric signal, the telecommunication signal can further proceed steps to make various switch and control actions, the basic principle is to use the signal obtained by the action of shielding the light between the projector and the light receiver to accomplish various automatic controls.
The solar panel is a BYGD-100M type laminated solar panel produced by various high and new source manufacturers, wherein a solar cell is also called a solar chip or a photocell and is photoelectric semiconductor sheets which directly generate electricity by utilizing sunlight.
The monitoring probe adopts an SA-YT834 type gun type wireless camera produced by Shenzhen Shenhua Longhua New Seifen security electronic factory, the monitoring camera is semiconductor imaging devices, the monitoring probe has the advantages of high sensitivity, strong light resistance, small distortion, small volume, long service life, vibration resistance and the like, and the monitoring camera has an important ground position in a security system.
The motor driver is an S700 series driver adopting a Kelmogen servo driver, the driver is also called as a servo controller and a servo amplifier, and is controllers for controlling the servo motor, the action of the motor driver is similar to that of a frequency converter acting on a common alternating current motor, the motor driver belongs to the part of a servo system, and the motor driver is mainly applied to a high-precision positioning system. controls the servo motor through three modes of position, speed and moment to realize the positioning of a high-precision transmission system, and the motor driver is a high-end product of the transmission technology at present.
The following are specific structures and functions of some parts mentioned in this document:
th case, rectangular case made of metal is adopted.
A second box body: a rectangular box body made of metal is adopted.
Rain measuring cylinder: a stainless steel rain gauge produced by a Taizhou Tianyang teaching equipment source manufacturer is adopted.
And (3) turning over a cover: the upturned circular cover is made of metal materials.
In the embodiment, as shown in fig. 1-3, when in use, a power switch is turned on, a th servo motor 14 is started, a th servo motor 14 driving end is controlled to rotate clockwise, a th driving gear 15 embedded in a 0 th servo motor 14 driving end is driven to rotate, a th gear 10 meshed with the driving gear is driven to rotate, a second gear 13 meshed with the 38th gear is driven to rotate simultaneously, spirally rotates a th gear 10 on a screw rod 8 at , a th box 7 and a mounting plate 6 are driven to move upwards, the mounting plate 6 is lifted to a working height, automatically falls down and shields a second through hole on an upper flip 21, the th servo motor 14 is closed, a second servo motor 17 is started, a light sensor 2 is turned on, the light sensor 2 sends out a signal according to the strength change of light, the second servo motor 17 is controlled to rotate, a second driving gear 18 arranged on the second servo motor 17 is driven to rotate, a driven gear 19 meshed with a second transmission shaft 20 to rotate, the light sensor 2 is driven to rotate according to change of the water level, the direction of the light level, the radar monitoring efficiency of a working water level, a radar, a warning light level monitoring probe 5 starts to monitor the change of a working water level, and a warning light level, the change of a radar, the working water level monitoring probe 5, and monitors the change of a rain.
Preferably, steps are further carried out, pairs of upper flip covers 21 with the same structure are arranged on the upper wall face of the box body 7 above the second through hole, and the upper flip covers 21 are used for preventing water.
Preferably, and further , the mounting plate 6 has the lightning rod 22 mounted thereon, the lightning rod 22 being used for protection.
Preferably, and further , rain measuring cylinder 23 is mounted on mounting plate 6, and rain measuring cylinder 23 is used for receiving rainwater.
Preferably, and further , a connecting block 24 is installed between the solar panel 3 and the second transmission shaft 20, which facilitates the connection.
Preferably, steps are further carried out, pairs of fixing blocks 25 with the same structure are arranged between the pairs of screw rods 8 and the bearing plates 9, and the fixing blocks 25 are used for fixing.
It should be noted that, in this document, relational terms such as , second and the like are only used to distinguish entities or operations from entities or operations, but not necessarily requires or implies any such actual relationship or order between the entities or operations.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1, kinds of reservoir flood prevention meteorological monitoring devices with automatic alarm function, including base (1), light sensor (2), solar panel (3), monitor (4) and water level monitoring radar (5), its characterized in that, install elevation structure on base (1), the last rotating-structure that installs of elevation structure, light sensor (2) settle on solar panel (3), solar panel (3) settle on rotating-structure, monitor (4) settle on solar panel (3) right side, water level monitoring radar (5) settle on the elevation structure right side;
the lifting structure comprises a mounting plate (6), an th box body (7), a pair of screw rods (8) with the same structure, a bearing plate (9), a pair of gears (10) with the same structure, a pair of support frames (11) with the same structure, a transmission shaft (12), a pair of second gears (13) with the same structure, a servo motor (14) and a driving gear (15);
pairs of through holes with the same structure are formed in the mounting plate (6), th case (7) is disposed on the mounting plate (6), th case (7) is respectively provided with two pairs of second through holes with the same structure on the upper and lower wall surfaces thereof, and the two pairs of second through holes correspond to pairs of th through holes, pairs of lead screws (8) are embedded in pairs of th through holes, and ends thereof extend into th case (7), pairs of gears (10) are spirally disposed on pairs of the lead screws (8), pairs of the supporting frames (11) are disposed in 2 case (7), and are disposed on the lower wall surface of th case (7), the th transmission shafts (12) are disposed on 365 pairs of the supporting frames (11), the pairs of the second gears (13) are embedded in 367) and are engaged with the second drive motors (72) and drive the servo motors (72) and the servo motors (72) are disposed on the ) and the upper and the servo motors (72) are engaged with the 3614, and the servo motors (72) are disposed on the ) and the upper and the lower wall surfaces of the ) of the and the driving shafts () of the servo motors () and the servo motors (7) and the servo motors () and the servo motors (14);
the rotating structure, it includes: a second box body (16), a second servo motor (17), a second driving gear (18), a driven gear (19) and a second transmission shaft (20);
the second box body (16) is arranged on the rear side of the mounting plate (6), a through hole is formed in the second box body (16), the second transmission shaft (20) is embedded in the through hole, the end of the second transmission shaft extends into the second box body (16), the end of the second transmission shaft is connected with the solar panel (3), the driven gear (19) is arranged in the box body and embedded on the second transmission shaft (20), the second servo motor (17) is arranged in the box body, and the second driving gear (18) is embedded on the driving end of the second servo motor (17) and meshed with the driven gear (19).
2. The flood prevention weather monitoring device for the reservoir with the automatic alarm function as claimed in claim 1, wherein pairs of upper covers (21) with the same structure are installed on the upper wall surface of the box body (7) above the second through hole, and the upper covers (21) are used for preventing water.
3. weather flood prevention monitoring device for reservoir with automatic alarm function, according to claim 1, characterized in that the mounting plate (6) is mounted with a lightning rod (22), the lightning rod (22) is used for protection.
4. weather flood prevention monitoring device for reservoir with automatic alarm function, according to claim 1, wherein said mounting plate (6) is mounted with rain measuring canister (23), said rain measuring canister (23) is used to receive rain water.
5. weather flood prevention monitoring device for reservoir with automatic alarm function, according to claim 1, wherein a connection block (24) is installed between the solar panel (3) and the second transmission shaft (20) for easy connection.
6. The flood prevention meteorological monitoring device with automatic alarm function of claim 1, wherein pairs of pairs of fixed blocks (25) with the same structure are installed between the screw rod (8) and the bearing plate (9), and the fixed blocks (25) are used for fixing.
CN201822052820.1U 2018-12-07 2018-12-07 reservoir flood prevention meteorological monitoring device with automatic alarm function Active CN210005717U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822052820.1U CN210005717U (en) 2018-12-07 2018-12-07 reservoir flood prevention meteorological monitoring device with automatic alarm function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822052820.1U CN210005717U (en) 2018-12-07 2018-12-07 reservoir flood prevention meteorological monitoring device with automatic alarm function

Publications (1)

Publication Number Publication Date
CN210005717U true CN210005717U (en) 2020-01-31

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Application Number Title Priority Date Filing Date
CN201822052820.1U Active CN210005717U (en) 2018-12-07 2018-12-07 reservoir flood prevention meteorological monitoring device with automatic alarm function

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111271581A (en) * 2020-02-26 2020-06-12 惠安信德机械有限公司 Fixing mechanism of water level monitoring device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111271581A (en) * 2020-02-26 2020-06-12 惠安信德机械有限公司 Fixing mechanism of water level monitoring device

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