CN212812368U - Slope check out test set for hydraulic engineering based on big dipper satellite - Google Patents
Slope check out test set for hydraulic engineering based on big dipper satellite Download PDFInfo
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- CN212812368U CN212812368U CN202022164491.7U CN202022164491U CN212812368U CN 212812368 U CN212812368 U CN 212812368U CN 202022164491 U CN202022164491 U CN 202022164491U CN 212812368 U CN212812368 U CN 212812368U
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Abstract
The utility model discloses a slope check out test set for hydraulic engineering based on big dipper satellite, including mechanical sensor, detection mechanism and surveillance center, and it all through wireless connection between two liang, the joint has rather than corresponding radiating fin in the inner chamber of draw-in groove for a large amount of heats that the inside mainboard of mechanism produced for long-time work can absorb through radiating fin, have improved its heat dissipation function. The protection sliding closure of this equipment passes through slider swing joint slide rail and slider and mutually supports, and still be provided with the handle on one side outer wall of protection sliding closure, make the mechanism when using and placing for a long time, can with the protection sliding closure through the slider slide in the slide rail until the upper end that blocks shell body structure, utilize the protection sliding closure to block outside dust and rainwater, avoid the inside influence of dust and rainwater entering mechanism or corrode internals, can also utilize the handle to make things convenient for the transportation and carry simultaneously.
Description
Technical Field
The utility model relates to a relevant equipment technical field of hydraulic engineering specifically is a slope check out test set for hydraulic engineering based on big dipper satellite.
Background
The problem of slope stability is always the focus of the geotechnical engineering community due to the influence of complex geological conditions. With the rapid development of national economy, human engineering activities are inevitably more frequent and have larger scale. Meanwhile, as the options of engineering sites are being reduced, engineering design will face more complex geological conditions to a certain extent. Therefore, the influence of the geological conditions of the side slope on the stability of the side slope and the change trend of the side slope need to be considered more when the side slope is designed, the Beidou monitoring system mainly collects real-time displacement data on the side slope through a field Beidou satellite data receiver and sends the data back to a data center through various transmission means such as GPRS, an optical cable or Beidou short messages and the like, the data center processes and calculates through software and then visually displays the change of the displacement, and emergency early warning is achieved for abnormal dangerous conditions.
Current side slope check out test set, most dustproof effect is relatively poor, the heat dissipation function is not good and be not convenient for in time maintain.
To these problem and challenges that face, the utility model provides a side slope check out test set for hydraulic engineering based on big dipper satellite, it has dustproof effect better, the better and advantage such as easy maintenance of heat dissipation function.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a side slope check out test set for hydraulic engineering based on big dipper satellite, it has dustproof effect better, the better and advantages such as easy maintenance of heat dissipation function to solved traditional side slope check out test set, mostly dustproof effect is relatively poor, the heat dissipation function is not good and be not convenient for in time the problem of maintenance.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides a slope check out test set for hydraulic engineering based on big dipper satellite, includes mechanical sensor, detection mechanism and surveillance center, and all through wireless connection between it two liang, detection mechanism includes shell structure and protection sliding closure, shell structure's both sides swing joint protection sliding closure, and shell structure comprises shell body, sealed lid and mainboard, the front end of shell body is provided with control platform and sliding chamber respectively, swing joint has the instrument to store the box in the inner chamber of sliding chamber, the mounting groove has been seted up to the up end of shell body, the inner chamber bottom surface of mounting groove has set firmly the mainboard, and control platform electric connection mainboard, mainboard wireless connection surveillance center.
Furthermore, a plurality of groups of clamping grooves are processed on two sides of the inner wall of the mounting groove, radiating fins corresponding to the clamping grooves are clamped in the inner cavities of the clamping grooves, the radiating fins are matched with the clamping grooves, and the radiating fins are members made of sheet aluminum alloy materials.
Furthermore, slide rails are arranged on the outer walls of the two sides of the shell body, a slide block corresponding to the slide rails is installed on the inner side of the protective sliding cover, the protective sliding cover is movably connected with the slide rails through the slide blocks, the slide rails are matched with the slide blocks, and a handle is further arranged on the outer wall of one side of the protective sliding cover.
Further, one side outer wall border of mounting groove articulates there is sealed lid, and the outer wall border department of sealed lid installs the location fastener, and the inside panel border department of sealed lid still is provided with the sealing ring, and the mounting groove is kept away from one side inner wall upper end of sealed lid and is provided with positioning groove, and positioning groove matches each other with the location fastener.
Further, control module, microprocessor, big dipper transceiver module and data transmission module are installed respectively to the surface of mainboard, are provided with radio frequency module in big dipper transceiver module's the inner chamber, and big dipper transceiver module is used for receiving the signal of big dipper satellite transmission and fighting the satellite transmission signal north.
Compared with the prior art, the beneficial effects of the utility model are as follows:
1. the utility model provides a pair of side slope check out test set for hydraulic engineering based on big dipper satellite, the protection sliding closure passes through slider swing joint slide rail and slider and mutually supports, and still be provided with the handle on one side outer wall of protection sliding closure, make the mechanism use and when placing for a long time, can until blocking shell body structure's upper end in sliding into the slide rail through the slider with the protection sliding closure, utilize the protection sliding closure to block outside dust and rainwater, avoid dust and rainwater entering mechanism's inside influence or corrode internals, can also utilize the handle to make things convenient for the transportation and carry simultaneously.
2. The utility model provides a pair of slope check out test set for hydraulic engineering based on big dipper satellite has all processed a plurality of draw-in grooves of group in the inner wall both sides of mounting groove, and the joint has rather than corresponding radiating fin in the inner chamber of draw-in groove for a large amount of heats that the mainboard of mechanism inside works for a long time and produces can absorb through radiating fin, have improved its heat dissipation function, and radiating fin can also follow the draw-in groove and pull down simultaneously, is convenient for overhaul and change in good time.
3. The utility model provides a pair of slope check out test set for hydraulic engineering based on big dipper satellite, it has sealed lid to articulate at one side outer wall border of mounting groove, and swing joint has the instrument to store the box in the inner chamber of sliding chamber, make the mainboard when short circuit or burnout appear, roll-off protection sliding closure earlier, open sealed lid simultaneously, take out the mainboard from the mounting groove again, also can store the box with partial small-size maintenance tool from the instrument and take out and in time maintain, compare with traditional integral type check out test set, maintenance duration has also been saved.
Drawings
Fig. 1 is a topological diagram of a detection signal transmission system according to the present invention;
FIG. 2 is a schematic view of the working state structure of the detecting mechanism of the present invention;
FIG. 3 is a structural diagram of the detecting mechanism of the present invention in a non-operating state;
fig. 4 is an enlarged schematic structural view of a portion a in fig. 3 according to the present invention;
fig. 5 is a block diagram of the main board composition system of the present invention.
In the figure: 1. a mechanical sensor; 2. a detection mechanism; 21. an outer shell structure; 211. an outer housing; 2111. a control platform; 2112. a slide chamber; 21121. a tool storage case; 2113. mounting grooves; 21131. a card slot; 21132. a heat dissipating fin; 21133. positioning the clamping groove; 2114. a slide rail; 212. a sealing cover; 2121. positioning the clamping piece; 2122. a seal ring; 213. a main board; 2131. a control module; 2132. a microprocessor; 2133. a Beidou transmitting and receiving module; 21331. a radio frequency module; 2134. a data transmission module; 22. a protective sliding cover; 221. a slider; 222. a handle; 3. and a monitoring center.
Detailed Description
The technical solutions 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 the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, a slope detection device for hydraulic engineering based on beidou satellite includes a mechanical sensor 1, a detection mechanism 2 and a monitoring center 3, and the two components are wirelessly connected, the detection mechanism 2 includes an outer shell structure 21 and a protective sliding cover 22, two sides of the outer shell structure 21 are movably connected with the protective sliding cover 22, the outer shell structure 21 is composed of an outer shell 211, a sealing cover 212 and a main board 213, the front end of the outer shell 211 is respectively provided with a control platform 2111 and a sliding cavity 2112, the inner cavity of the sliding cavity 2112 is movably connected with a tool storage box 21121, the upper end face of the outer shell 211 is provided with an installation groove 2113, the bottom surface of the inner cavity of the installation groove 2113 is fixedly provided with the main board 213, the control platform 2111 is electrically connected with the main board 213, and the main; a plurality of groups of clamping grooves 21131 are formed in two sides of the inner wall of the mounting groove 2113, heat dissipation fins 21132 corresponding to the clamping grooves 21131 are clamped in the inner cavities of the clamping grooves 21131, the heat dissipation fins 21132 are matched with the clamping grooves 21131, and the heat dissipation fins 21132 are members made of sheet aluminum alloy materials; the outer walls of the two sides of the outer shell 211 are respectively provided with a sliding rail 2114, the inner side of the protective sliding cover 22 is provided with a sliding block 221 corresponding to the sliding rail 2114, the protective sliding cover 22 is movably connected with the sliding rail 2114 through the sliding block 221, the sliding rail 2114 is matched with the sliding block 221, and the outer wall of one side of the protective sliding cover 22 is also provided with a handle 222; the edge of the outer wall of one side of the mounting groove 2113 is hinged with a sealing cover 212, the edge of the outer wall of the sealing cover 212 is provided with a positioning fastener 2121, the edge of the inner side panel of the sealing cover 212 is further provided with a sealing ring 2122, the upper end of the inner wall of one side of the mounting groove 2113, which is far away from the sealing cover 212, is provided with a positioning clamping groove 21133, and the positioning clamping groove 21133 is matched with the positioning fastener 212.
Referring to fig. 3 and 5, a Beidou satellite-based slope detection device for hydraulic engineering is disclosed, wherein a control module 2131, a microprocessor 2132, a Beidou transceiver module 2133 and a data transmission module 2134 are respectively installed on the surface of a mainboard 213, a radio frequency module 21331 is arranged in an inner cavity of the Beidou transceiver module 2133, and the Beidou transceiver module 2133 is used for receiving signals transmitted by a Beidou satellite and transmitting signals to a Beidou satellite.
In summary, the following steps: the utility model provides a slope check out test set for hydraulic engineering based on big dipper satellite, both sides swing joint protection sliding closure 22 of shell structure 21, protection sliding closure 22 passes through slider 221 swing joint slide rail 2114 and slider 221 mutually support, and still be provided with handle 222 on one side outer wall of protection sliding closure 22, make the mechanism when using and placing for a long time, can slide protection sliding closure 22 into slide rail 2114 through slider 221 until the upper end of shell structure 21 is blocked, utilize protection sliding closure 22 to block outside dust and rainwater, avoid dust and rainwater to get into the inside influence or corrode the inner part of mechanism, can also utilize handle 222 to conveniently transport and carry simultaneously, the front end of shell 211 is provided with control platform 2111 and sliding chamber 2112 respectively, swing joint has the instrument to store box 21121 in the inner chamber of sliding chamber 2112, the mounting groove 2113 has been seted up to the upper end face of shell 211, the inner wall of the mounting groove 2113 is provided with a plurality of groups of slots 21131 on both sides, the inner cavity of each slot 21131 is clamped with a corresponding heat dissipation fin 21132, so that a large amount of heat generated by the main board 213 in the mechanism working for a long time can be absorbed by the heat dissipation fin 21132, the heat dissipation function is improved, meanwhile, the heat dissipation fin 21132 can be detached from the slot 21131 for timely maintenance and replacement, the main board 213 is fixedly arranged on the bottom surface of the inner cavity of the mounting groove 2113, the control platform 2111 is electrically connected with the main board 213, a sealing cover 212 is hinged on the outer wall edge of one side of the mounting groove 2113, and a tool storage box 21121 is movably connected in the inner cavity of the sliding cavity 2112, so that the main board 213 can firstly slide out of the protective sliding cover 22 when short circuit or burning loss occurs, the sealing cover 212 is turned over, then the main board 213 is taken out of the mounting groove 2113, and part of small maintenance, compared with the traditional integrated detection equipment, the maintenance time is also saved.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
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 (5)
1. The utility model provides a slope check out test set for hydraulic engineering based on big dipper satellite, includes mechanical sensor (1), detection mechanism (2) and surveillance center (3), and all through wireless connection, its characterized in that between it two liang: detection mechanism (2) are including shell body structure (21) and protection sliding closure (22), both sides swing joint protection sliding closure (22) of shell body structure (21), and shell body structure (21) is by shell body (211), sealed lid (212) and mainboard (213) are constituteed, the front end of shell body (211) is provided with control platform (2111) and smooth chamber (2112) respectively, swing joint has the instrument to store box (21121) in the inner chamber of smooth chamber (2112), mounting groove (2113) have been seted up to the up end of shell body (211), the inner chamber bottom surface of mounting groove (2113) has set firmly mainboard (213), and control platform (2111) electric connection mainboard (213), mainboard (213) wireless connection surveillance center (3).
2. The Beidou satellite-based slope detection device for hydraulic engineering according to claim 1, characterized in that: a plurality of groups of clamping grooves (21131) are formed in two sides of the inner wall of the mounting groove (2113), corresponding radiating fins (21132) are clamped in the inner cavities of the clamping grooves (21131), the radiating fins (21132) are matched with the clamping grooves (21131), and the radiating fins (21132) are members made of sheet-shaped aluminum alloy materials.
3. The Beidou satellite-based slope detection device for hydraulic engineering according to claim 1, characterized in that: all be provided with slide rail (2114) on the both sides outer wall of shell body (211), and the inboard of protection sliding closure (22) is installed and is cooperated with slide rail (2114) slider (221), and protection sliding closure (22) are mutually supported through slider (221) swing joint slide rail (2114) and slide rail (2114), and still are provided with handle (222) on the outer wall of one side of protection sliding closure (22).
4. The Beidou satellite-based slope detection device for hydraulic engineering according to claim 1, characterized in that: the edge of the outer wall of one side of the mounting groove (2113) is hinged with a sealing cover (212), the edge of the outer wall of the sealing cover (212) is provided with a positioning clamping piece (2121), the edge of the inner side panel of the sealing cover (212) is further provided with a sealing ring (2122), the upper end of the inner wall of one side, away from the sealing cover (212), of the mounting groove (2113) is provided with a positioning clamping groove (21133), and the positioning clamping piece (2121) is matched with the positioning clamping piece (21133).
5. The Beidou satellite-based slope detection device for hydraulic engineering according to claim 1, characterized in that: the surface of the mainboard (213) is respectively provided with a control module (2131), a microprocessor (2132), a Beidou transceiver module (2133) and a data transmission module (2134), a radio frequency module (21331) is arranged in an inner cavity of the Beidou transceiver module (2133), and the Beidou transceiver module (2133) is used for receiving signals transmitted by a Beidou satellite and transmitting signals to a Beidou satellite.
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CN202022164491.7U CN212812368U (en) | 2020-09-27 | 2020-09-27 | Slope check out test set for hydraulic engineering based on big dipper satellite |
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CN202022164491.7U CN212812368U (en) | 2020-09-27 | 2020-09-27 | Slope check out test set for hydraulic engineering based on big dipper satellite |
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CN212812368U true CN212812368U (en) | 2021-03-26 |
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