CN209525739U - Hydrogeological disaster monitoring devices - Google Patents
Hydrogeological disaster monitoring devices Download PDFInfo
- Publication number
- CN209525739U CN209525739U CN201920012370.5U CN201920012370U CN209525739U CN 209525739 U CN209525739 U CN 209525739U CN 201920012370 U CN201920012370 U CN 201920012370U CN 209525739 U CN209525739 U CN 209525739U
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- Prior art keywords
- fixedly connected
- wall
- sides
- frame
- cabinet
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Abstract
The utility model discloses a hydrogeological disaster monitoring devices, the power distribution box comprises a box body, the equal fixedly connected with shock attenuation frame in both sides of box inner wall, two one side of shock attenuation frame inner wall all is fixed with the sill bar, two the equal sliding connection in surface of sill bar has a sliding plate, two equal fixedly connected with damping spring, two between the relative one side of sliding plate and shock attenuation frame the equal fixedly connected with stripper plate in the relative one side of sliding plate, two one side that the stripper plate leaves all is seted up flutedly, two the outside that the shock attenuation frame and extend to the shock attenuation frame is all run through to one side that the stripper plate is relative, two fixedly connected with measures the frame between the relative one side of the outside one end of shock attenuation frame that the stripper plate extends to. This hydrogeological calamity monitoring devices has realized the purpose of rainfall intensity early warning in grades for the staff can accurately in time send early warning information, through certain maintenance alright come into use once more, greatly reduced cost, resources are saved.
Description
Technical field
The utility model relates to hydrogeological disaster monitoring technical field, specially a kind of hydrogeological disaster monitoring dress
It sets.
Background technique
Hydrologic monitoring system is suitable for Hydrology department to rainfall, rainfall intensity, lake, reservoir, channel and underground water etc.
Hydrologic parameter carries out real-time monitoring, can greatly improve the working efficiency of Hydrology department;Various technologies and side are used in geology monitoring
Method, measurement, monitoring geological disaster activity and the work of various risk factor dynamic changes, it is prediction geological disaster
Important evidence, therefore be the important content of disaster reduction and prevention, in order to real-time monitoring hydrological geological conditions, outer setting all out of office at present
Intelligent monitoring device can monitor disaster scenarios it by radio transmitting device at any time.
However it is severe due to field environment, equipment is often damaged when heavy rainfall causes massif geological problem, is caused
Equipment secondary can not use, and will not have hierarchical detection in intensity to different, and staff can not be according to monitoring content to early warning
Information is changed in time.
Utility model content
(1) the technical issues of solving
In view of the deficiencies of the prior art, the utility model provides a kind of hydrogeological disaster monitoring device, solves inspection
Survey device be easily damaged and can not grading forewarning system the problem of.
(2) technical solution
To achieve the above object, the utility model provides the following technical solutions: a kind of hydrogeology disaster monitoring device, packet
Cabinet is included, the two sides of the cabinet wall are fixedly connected to damping frame, and the side of two damping frame inner walls is respectively and fixedly provided with
Bottom bar, the surface of two bottom bars slidably connect sliding panel, two sliding panels and the opposite side of damping frame it
Between be fixedly connected to damping spring, two opposite sides of the sliding panel are fixedly connected to stripper plate, and two described to squeeze
Pressing plate mutually from side open up fluted, the opposite side of two stripper plates runs through damping frame and extends to damping frame
Outside, two stripper plates extend between damping outer frame portion, opposite side, one end and are fixedly connected with measurement frame, described
Water inlet is offered at the top of cabinet, water inlet pipe is communicated on the right side of the water inlet bottom, and the bottom end of the water inlet pipe is run through
Measurement frame and the inner wall for extending to measurement frame, the water inlet pipe extend to that the top of measurement frame inner wall one end inner wall is fixed respectively to be connected
It is connected to the first telescopic rod, the second telescopic rod and third telescopic rod, first telescopic rod, the second telescopic rod and third telescopic rod
Bottom has been respectively fixedly connected with three class control device, two-level controller and primary controller, and the two sides of the water inlet inside pipe wall are solid
Surely it is connected with limit plate, the top of two limit plates is connected with kickboard, is fixedly connected at the top of the kickboard
The two sides of signaling switch, the cabinet wall bottom slidably connect damping device.
Preferably, the damping device includes two the first rotating blocks, and the bottom of two first rotating blocks is and case
The basal sliding connection of internal wall, the top of two first rotating blocks are rotatably connected to connecting rod, and two connecting rods are remote
One end from the first rotating block is rotatably connected to the second rotating block, the top of two second rotating blocks and the bottom of measurement frame
Portion is fixedly connected, and the inner wall of two first rotating blocks slidably connects sliding bar, and two first rotating blocks are opposite
Side between be fixedly connected with extruding spring.
Preferably, the top between the water inlet inside pipe wall two sides is fixedly connected with filter plate.
Preferably, the two sides of the cabinet wall bottom are fixedly connected to rubber block.
Preferably, the two sides of the bottom of box are fixedly connected to support rod.
Preferably, the bottom of two support rods is fixedly connected to pedestal, and the two sides of two base tops are equal
Through there is fixed link.
(3) beneficial effect
The utility model provides a kind of hydrogeological disaster monitoring device.Have it is following the utility model has the advantages that
The hydrogeology disaster monitoring device is fixed on monitoring position by fixed link, and when rainfall, rainwater passes through water inlet
Mouth enters water inlet pipe, and water inlet pipe collects rainwater and drives kickboard movement, kickboard drive signaling switch movement, when signal in the unit time
When switch touches three class control device, three class control device remotely sends three-level rainfall intensity warning information by signal projector,
If rainfall continues, rainwater continues accumulation drive signaling switch rising in the unit time, drives the first telescopic rod to shrink, signal is opened
Touching two-level controller is closed, signal projector will remotely send second level rainfall intensity early warning, and rainwater continues in the unit time, kickboard
Continue that signaling switch is driven to rise, drives the second telescopic rod to shrink, touch primary controller, signal projector will remotely be sent
Level-one rainfall intensity early warning, realizes the purpose of rainfall intensity grading forewarning system, staff is accurately and timely sent pre-
Alert information drives massif address disaster Impact monitoring device, when leading to box deformation, utilizes damping when rainfall intensity is excessive
Spring and the elastic force for squeezing the devices itself such as spring, will effectively reduce the impact force of massif stone stack device, reach protection dress
The purpose set can come into operation again by certain maintenance, substantially reduce cost, economize on resources.
Detailed description of the invention
FIG. 1 is a schematic structural view of the utility model;
Fig. 2 is the utility model front view;
Fig. 3 is the utility model damping device structural schematic diagram.
In figure: 1, cabinet;2, damping frame;3, bottom bar;4, sliding panel;5, damping spring;6, stripper plate;7, groove;8, it surveys
Measure frame;9, water inlet;10, water inlet pipe;11, the first telescopic rod;12, the second telescopic rod;13, third telescopic rod;14, three class control
Device;15, two-level controller;16, primary controller;17, limit plate;18, kickboard;19, signaling switch;20, damping device;201,
First rotating block;202, connecting rod;203, the second rotating block;204, sliding bar;205, spring is squeezed;21, filter plate;22, rubber
Block;23, support rod;24, pedestal;25, fixed link.
Specific embodiment
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work
Every other embodiment obtained, fall within the protection scope of the utility model.
As shown in Figure 1-3, the utility model provides a kind of technical solution: a kind of hydrogeology disaster monitoring device, including
Cabinet 1 is provided with battery and signal projector in cabinet 1, and the two sides of 1 inner wall of cabinet are fixedly connected to damping frame
2, the side of two 2 inner walls of damping frame is respectively and fixedly provided with bottom bar 3, and the quantity of bottom bar 3 is multiple, the table of two bottom bars 3
Face slidably connects sliding panel 4, is fixedly connected to damping between two sliding panels 4 and the opposite side of damping frame 2
Spring 5, two opposite sides of the sliding panel 4 are fixedly connected to stripper plate 6, two 6 phases of stripper plate from side
Fluted 7 are opened up, the groove 7 is adapted with bottom bar 3, and damping frame 2 is run through simultaneously in two opposite sides of the stripper plate 6
The outside of damping frame 2 is extended to, two stripper plates 6 extend to fixed company between the opposite side in 2 outside one end of damping frame
It is connected to measurement frame 8, the top of the cabinet 1 offers water inlet 9, is communicated with water inlet pipe 10 on the right side of 9 bottom of water inlet,
10 bottom of water inlet pipe and 1 surface of cabinet offer water outlet, and water outlet aperture is smaller, and water speed is slow out, water speed out when rainfall
Rate does not influence water inlet pipe and collects rainwater, and the bottom end of the water inlet pipe 10 runs through measurement frame 8 and extends to the inner wall of measurement frame 8, institute
Water inlet pipe 10 is stated to extend to the top of 8 inner wall one end inner wall of measurement frame to be fixedly connected with the first telescopic rod 11, second respectively flexible
The bottom of bar 12 and third telescopic rod 13, first telescopic rod 11, the second telescopic rod 12 and third telescopic rod 13 is fixed respectively
It is connected with three class control device 14, two-level controller 15 and primary controller 16, the two sides of 10 inner wall of water inlet pipe are fixed to be connected
It is connected to limit plate 17, the top of two limit plates 17 is connected with kickboard 18, and the top of the kickboard 18 is fixed to be connected
It is connected to signaling switch 19, the two sides of the 1 inner wall bottom of cabinet slidably connect damping device 20;
The damping device 20 includes two the first rotating blocks 201, and the bottom of two first rotating blocks 201 is and case
The basal sliding of 1 inner wall of body connects, and the top of two first rotating blocks 201 is rotatably connected to connecting rod 202, described in two
Connecting rod 202 is rotatably connected to the second rotating block 203, two second rotating blocks 203 far from one end of the first rotating block 201
Top be fixedly connected with the bottom of measurement frame 8, the inner wall of two first rotating blocks 201 slidably connects sliding bar
204, it is fixedly connected between the opposite side of two first rotating blocks 201 and squeezes spring 205;
Top between the 10 inner wall two sides of water inlet pipe is fixedly connected with filter plate 21;
The two sides of the 1 inner wall bottom of cabinet are fixedly connected to rubber block 22;
The two sides of 1 bottom of cabinet are fixedly connected to support rod 23;
The bottom of two support rods 23 is fixedly connected to pedestal 24, and the two sides at two 24 tops of pedestal are passed through
It is installed with fixed link 25.
It can to sum up obtain, the hydrogeology disaster monitoring device, monitoring position, the rain when rainfall are fixed on by fixed link 25
Water enters water inlet pipe 10 by water inlet 9, and water inlet pipe 10 collects rainwater and kickboard 18 is driven to move, and kickboard 18 drives signaling switch 19
Movement, when signaling switch 19 touches three class control device 14 in the unit time, three class control device 14 is remote by signal projector
Journey sends three-level rainfall intensity warning information, if rainfall continues, rainwater continues accumulation drive signaling switch 19 in the unit time
Rise, the first telescopic rod 11 is driven to shrink, signaling switch 19 touches two-level controller 15, and signal projector will remotely send second level
Rainfall intensity early warning, rainwater continues in the unit time, and kickboard 18 continues that signaling switch 19 is driven to rise, and drives the second telescopic rod 12
It shrinks, touches primary controller 16, signal projector will remotely send level-one rainfall intensity early warning, realize rainfall intensity point
The purpose of grade early warning, enables staff accurately and timely to send warning information, when rainfall intensity is excessive, with driving massif
Matter disaster Impact monitoring device when cabinet 1 being caused to deform, utilizes the elasticity of the devices itself such as damping spring 5 and extruding spring 205
Power will effectively reduce the impact force of massif stone stack device, achieve the purpose that protective device, can be again by certain maintenance
It comes into operation, substantially reduces cost, economize on resources.
It should be noted that, in this document, relational terms such as first and second and the like are used merely to a reality
Body or operation are distinguished with another entity or operation, are deposited without necessarily requiring or implying between these entities or operation
In any actual relationship or order or sequence.Moreover, the terms "include", "comprise" or its any other variant are intended to
Non-exclusive inclusion, so that the process, method, article or equipment including a series of elements is not only wanted including those
Element, but also including other elements that are not explicitly listed, or further include for this process, method, article or equipment
Intrinsic element.In the absence of more restrictions, the element limited by sentence "including a ...", it is not excluded that
There is also other identical elements in process, method, article or equipment including the element.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art,
It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired
Change, replacement and variant, the scope of the utility model is defined by the appended claims and the equivalents thereof.
Claims (6)
1. a kind of hydrogeology disaster monitoring device, including cabinet (1), which is characterized in that the two sides of cabinet (1) inner wall are equal
It is fixedly connected with damping frame (2), the side of two damping frame (2) inner walls is respectively and fixedly provided with bottom bar (3), two bottom bars
(3) surface slidably connects sliding panel (4), solid between two sliding panels (4) and the opposite side of damping frame (2)
Surely it is connected with damping spring (5), two opposite sides of the sliding panel (4) are fixedly connected to stripper plate (6), described in two
Stripper plate (6) mutually from side open up fluted (7), damping frame (2) are run through in two opposite sides of the stripper plate (6)
And extend to the outside of damping frame (2), two stripper plates (6) extend to the opposite side in the external one end of damping frame (2) it
Between be fixedly connected with measurement frame (8), offered water inlet (9) at the top of the cabinet (1), the right side of water inlet (9) bottom
Side is communicated with water inlet pipe (10), and the bottom end of the water inlet pipe (10) runs through measurement frame (8) and extends to the inner wall of measurement frame (8),
The top that the water inlet pipe (10) extends to measurement frame (8) inner wall one end inner wall be fixedly connected with respectively the first telescopic rod (11),
Second telescopic rod (12) and third telescopic rod (13), first telescopic rod (11), the second telescopic rod (12) and third telescopic rod
(13) bottom has been respectively fixedly connected with three class control device (14), two-level controller (15) and primary controller (16), it is described into
The two sides of water pipe (10) inner wall are fixedly connected to limit plate (17), and the top of two limit plates (17) is connected with
Kickboard (18) is fixedly connected with signaling switch (19) at the top of the kickboard (18), and the two sides of cabinet (1) the inner wall bottom are equal
Slidably connect damping device (20).
2. a kind of hydrogeological disaster monitoring device according to claim 1, it is characterised in that: the damping device (20)
Including two the first rotating blocks (201), the bottom of two first rotating blocks (201) is sliding with the bottom of cabinet (1) inner wall
Dynamic connection, the top of two first rotating blocks (201) are rotatably connected to connecting rod (202), and two connecting rods (202) are remote
One end from the first rotating block (201) is rotatably connected to the second rotating block (203), two second rotating blocks (203)
Top is fixedly connected with the bottom of measurement frame (8), and the inner wall of two first rotating blocks (201) slidably connects sliding bar
(204), it is fixedly connected between the opposite side of two first rotating blocks (201) and squeezes spring (205).
3. a kind of hydrogeological disaster monitoring device according to claim 1, it is characterised in that: in the water inlet pipe (10)
Top between wall two sides is fixedly connected with filter plate (21).
4. a kind of hydrogeological disaster monitoring device according to claim 1, it is characterised in that: cabinet (1) inner wall
The two sides of bottom are fixedly connected to rubber block (22).
5. a kind of hydrogeological disaster monitoring device according to claim 1, it is characterised in that: cabinet (1) bottom
Two sides be fixedly connected to support rod (23).
6. a kind of hydrogeological disaster monitoring device according to claim 5, it is characterised in that: two support rods
(23) bottom is fixedly connected to pedestal (24), and the two sides at the top of two pedestals (24), which are run through, fixed link (25).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920012370.5U CN209525739U (en) | 2019-01-04 | 2019-01-04 | Hydrogeological disaster monitoring devices |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920012370.5U CN209525739U (en) | 2019-01-04 | 2019-01-04 | Hydrogeological disaster monitoring devices |
Publications (1)
Publication Number | Publication Date |
---|---|
CN209525739U true CN209525739U (en) | 2019-10-22 |
Family
ID=68229011
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201920012370.5U Expired - Fee Related CN209525739U (en) | 2019-01-04 | 2019-01-04 | Hydrogeological disaster monitoring devices |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN209525739U (en) |
-
2019
- 2019-01-04 CN CN201920012370.5U patent/CN209525739U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20191022 Termination date: 20210104 |
|
CF01 | Termination of patent right due to non-payment of annual fee |