CN116381146B - Ecological environment and environmental pollution's monitoring facilities - Google Patents

Ecological environment and environmental pollution's monitoring facilities Download PDF

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Publication number
CN116381146B
CN116381146B CN202310321796.XA CN202310321796A CN116381146B CN 116381146 B CN116381146 B CN 116381146B CN 202310321796 A CN202310321796 A CN 202310321796A CN 116381146 B CN116381146 B CN 116381146B
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CN
China
Prior art keywords
monitoring
shielding
air
supporting
power supply
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Application number
CN202310321796.XA
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Chinese (zh)
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CN116381146A (en
Inventor
李斌
石亚林
姜成亮
杨海燕
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Xi'an Lechi Technology Co ltd
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Xi'an Lechi Technology Co ltd
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Priority to CN202310321796.XA priority Critical patent/CN116381146B/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N33/00Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
    • G01N33/0004Gaseous mixtures, e.g. polluted air
    • G01N33/0009General constructional details of gas analysers, e.g. portable test equipment
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N33/00Investigating or analysing materials by specific methods not covered by groups G01N1/00 - G01N31/00
    • G01N33/0004Gaseous mixtures, e.g. polluted air
    • G01N33/0009General constructional details of gas analysers, e.g. portable test equipment
    • G01N33/0027General constructional details of gas analysers, e.g. portable test equipment concerning the detector
    • G01N33/0029General constructional details of gas analysers, e.g. portable test equipment concerning the detector cleaning
    • 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
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/20Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters

Abstract

The invention relates to the technical field of ecological environment monitoring, in particular to an ecological environment and environmental pollution monitoring device. The device comprises a supporting device and an air monitoring component, wherein the air monitoring component is provided with a poking shielding component, the poking shielding component comprises a connecting mechanism used for locking the air monitoring component, the connecting mechanism is provided with a shielding mechanism used for preventing foreign matters from contacting the air monitoring component, the air monitoring component moves to a high position and is locked by the connecting mechanism, the connecting mechanism changes the inclination of the shielding mechanism, and the connecting mechanism and the shielding mechanism are used for relieving the wind shock force received when the monitoring equipment is at the high position. According to the invention, the height position of the power supply box is changed through the supporting part, so that the monitoring sensor is positioned at different heights to monitor the air quality, and the power supply box is locked at the adjusted height position through the contact of the locking clamping plate and the fixing part, so that the wind shock influence of wind impact on the whole monitoring device is reduced.

Description

Ecological environment and environmental pollution's monitoring facilities
Technical Field
The invention relates to the technical field of ecological environment monitoring, in particular to an ecological environment and environmental pollution monitoring device.
Background
The ecological environment monitoring means monitoring and analyzing ecological environment dirt so as to achieve the effect of monitoring the ecological environment at any time.
The current ecological environment monitoring comprises water quality monitoring and air quality monitoring, in terms of air quality monitoring, an air quality environment monitoring station is currently erected in the field, air quality is monitored through a monitoring sensor arranged on the air quality environment monitoring station, but in order to monitor and analyze the environmental air quality as much as possible, the air quality environment monitoring station is adopted, particularly, the ecological environment is monitored through lifting equipment or a monitoring mechanism, but the ecological environment is monitored by the air quality environment monitoring station, which is usually erected in the field, the air quality environment monitoring station is caused to be in the process of adjusting the height of the air quality environment monitoring station, when the air quality environment monitoring station is installed near a tree, the air quality environment monitoring station contacts branches derived from the tree in the process of upward adjustment, and the branch monitoring sensor is scratched, and the gravity center of the air quality environment monitoring station becomes high because of the change of the height of the air quality environment monitoring station from the ground, so that the air quality environment monitoring station can generate large vibration when the air quality environment monitoring station is blown by strong wind, and the air quality environment monitoring station is influenced continuously.
Disclosure of Invention
The invention aims to provide an ecological environment and environmental pollution monitoring device for solving the problems in the background technology.
In order to achieve the above object, the present invention provides an ecological environment and environmental pollution monitoring device, comprising a supporting device and an air monitoring assembly mounted on the supporting device for monitoring the air quality of the outdoor environment, wherein the supporting device is used for changing the position of the air monitoring assembly in the air, the air monitoring assembly is provided with a poking shielding assembly, the poking shielding assembly comprises a connecting mechanism for locking the air monitoring assembly, the connecting mechanism is provided with a shielding mechanism for preventing foreign matters from contacting the air monitoring assembly, wherein:
when the air monitoring component moves to a high place and is locked by the connecting mechanism, the connecting mechanism changes the inclination of the shielding mechanism, and the connecting mechanism and the shielding mechanism are used for relieving wind shock force received by the monitoring equipment when the monitoring equipment is at the high place.
As a further improvement of the technical scheme, the air monitoring assembly comprises a power supply box arranged on the supporting device, a monitoring sensor used for monitoring air quality is arranged on the power supply box, a locking clamping block is arranged on the power supply box, the connecting mechanism comprises a fixing part arranged on the supporting device, and the locking clamping block is connected with the fixing part to enable the power supply box to be in a locking state.
As a further improvement of the technical scheme, the shielding mechanism comprises a shielding plate which is movably connected to the fixing part and is in an inclined state, and the shielding plate is positioned above the power supply box and used for blocking foreign matters from contacting the power supply box.
As a further improvement of this technical scheme, the clamp plate is installed to the one end of shielding board, the one end of clamp plate is located the fixed part, when locking fixture block contact clamp plate, makes the clamp plate by the extrusion in the fixed part, wherein:
the shielding plate moves along with the pressing plate, so that the inclination angle of the shielding plate is changed by rotating.
As a further improvement of the technical scheme, the shielding plate is positioned above the monitoring sensor, and when the inclination angle is changed by rotating the shielding plate, the shielding plate blocks solar rays from irradiating the monitoring sensor.
As a further improvement of the technical scheme, a connecting part is arranged at one end of the shielding plate, the connecting part is fixed on the fixing part, and a fixing spring is arranged between the connecting part and the shielding plate.
As a further improvement of the technical scheme, the fixed part is provided with an air flow port, the pressing plate stretches out of the air flow port, the air flow port is provided with a locking clamping channel, a pressure spring is arranged between the locking clamping channel and the air flow port, and the locking clamping block is connected with the locking clamping channel, wherein:
the air flow port is used for enabling wind to pass through and enabling the wind to blow the monitoring sensor.
As a further improvement of the technical scheme, when the wind impacts the shielding plate, the shielding plate guides the wind to flow along one end of the airflow port to the other end and contact the monitoring sensor.
As a further improvement of the technical scheme, the supporting device comprises a supporting component and a transmission component, wherein the supporting component is used for supporting the power supply box, and the transmission component is used for changing the height position of the power supply box.
Compared with the prior art, the invention has the beneficial effects that:
1. in this ecological environment and environmental pollution's supervisory equipment, change the high position that the power supply box was located through supporting part, make monitoring sensor be in under the different height and carry out air quality monitoring to by the contact of locking cardboard and fixed part, with the power supply box locking in the high position after adjusting, reduce wind shock impact to the wind shock influence that whole monitoring devices caused.
2. In the monitoring equipment for ecological environment and environmental pollution, the shielding plate is used for blocking foreign matters from contacting the monitoring sensor, and the shielding plate is used for guiding wind to pass along the airflow opening, so that the wind blows dirt on the monitoring sensor through the airflow opening, and the problem that the sensor is exposed to dust attached to the outside is solved.
When the wind passes through the airflow opening, the wind is guided by the shielding plate, so that the impact force when the wind is discharged through the airflow opening is increased, the surface of the monitoring sensor is blown by the larger impact force, and the cleaning degree of the surface of the monitoring sensor is improved.
In the monitoring equipment for ecological environment and environmental pollution, the impact of wind force on the shielding plate and the fixing part is reduced through the rotation of the shielding plate;
and the movement law that solar east rises and west falls can be simulated in the rotation of shielding plate, makes the shielding plate can shelter from partial solar ray illumination monitoring sensor all the time, avoids monitoring sensor to receive the illumination temperature rise of light too fast, is convenient for monitoring sensor continuously monitor ecological air quality.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present invention;
FIG. 2 is a second schematic diagram of the overall structure of the present invention;
FIG. 3 is a third schematic diagram of the overall structure of the present invention;
FIG. 4 is a cross-sectional view of a locking latch of the present invention;
FIG. 5 is a schematic exploded view of the structure of the present invention;
FIG. 6 is a schematic view of the structure A of FIG. 5 according to the present invention;
FIG. 7 is a schematic diagram of an air monitoring assembly according to the present invention;
fig. 8 is a schematic view of a partial structure of the supporting device of the present invention.
The meaning of each reference sign in the figure is:
10. a support device;
101. a support frame; 102. a support rod; 103. a moving rod; 104. a support part; 105. a fixing plate; 106. a screw rod; 107. a base;
20. an air monitoring assembly;
201. a power box; 202. monitoring a sensor; 203. locking the clamping block;
30. a dial shielding assembly;
301. a fixing part; 302. a shielding plate; 303. an airflow port; 304. a pressing plate; 305. a connection part; 306. a fixed spring; 307. locking the clamping channel; 308. and a pressure spring.
Description of the embodiments
The following description of the embodiments of the present invention will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present invention, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the invention without making any inventive effort, are intended to be within the scope of the invention.
In the description of the present invention, it should be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings are merely for convenience in describing the present invention and simplifying the description, and do not indicate or imply that the apparatus or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present invention.
The current ecological environment monitoring comprises water quality monitoring and air quality monitoring, in terms of air quality monitoring, the air quality environment monitoring station can be erected in the wild at present, the air quality is monitored through a monitoring sensor arranged on the air quality environment monitoring station, but in order to monitor and analyze the air quality of the environment as much as possible, the air quality environment monitoring station can be adopted, particularly, the air quality environment monitoring station is formed by lifting equipment or a monitoring mechanism, but the ecological environment is monitored by the air quality environment monitoring station, the ecological environment is usually erected in the wild, the air quality environment monitoring station can be caused to contact with tree branches which are derived when the air quality environment monitoring station is arranged near the tree, the tree branches are scratched, the monitoring sensor is scratched, and the gravity center of the air quality environment monitoring station becomes high at the moment, so that the air quality environment monitoring station can vibrate greatly when being blown by strong wind, the air quality environment monitoring station can continuously monitor the air quality, then, the current monitoring equipment is optimized for the following specific scheme:
examples
Referring to fig. 1-4, the present embodiment provides an apparatus for monitoring ecological environment and environmental pollution, which comprises a supporting device 10 and an air monitoring assembly 20 mounted on the supporting device 10 for monitoring air quality of outdoor environment, wherein the air monitoring assembly 20 also needs to monitor air quality at different height positions in the process of monitoring air quality, so as to monitor and analyze air quality more accurately, therefore, the supporting device 10 is used for changing the position of the air monitoring assembly 20 in the air, the air monitoring assembly 20 comprises a power supply box 201 mounted on the supporting device 10, a monitoring sensor 202 for monitoring air quality is arranged on the power supply box 201, the supporting device 10 comprises a supporting assembly and a transmission assembly, the supporting assembly is used for supporting the power supply box 201, the transmission assembly is used for changing the height position that power box 201 is located, the supporting assembly includes support frame 101, install bracing piece 102 on the support frame 101, and install movable rod 103 on the bracing piece 102, fixed part 301 is installed on the top of movable rod 103, be provided with supporting part 104 on the movable rod 103, supporting part 104 and power box 201 fixed connection, the bottom fixedly connected with base 107 of support frame 101, base 107 is fixed subaerial, the transmission assembly is including installing the fixed plate 105 on support frame 101, be connected with lead screw 106 on the fixed plate 105 rotation, lead screw 106 passes through motor drive, and lead screw 106 and supporting part 104 threaded connection, so that drive supporting part 104 by lead screw 106 and carry out the ascending and descending motion on movable rod 103, make the height that power box 201 is located change, realize the regulation change of whole monitoring facilities height position. Air quality at different height locations may be monitored by the monitoring sensor 202;
the development and extension of the problems are made on the basis of the scheme:
accordingly, improvements are made in the technology of the above scheme, and are shown in fig. 1-7, specifically: be provided with on the air monitoring subassembly 20 and dial to shielding subassembly 30, dial to shielding subassembly 30 including being used for the coupling mechanism with air monitoring subassembly 20 locking, be provided with shielding mechanism on the coupling mechanism, shielding mechanism is used for preventing the foreign matter to contact air monitoring subassembly 20, consequently, when air monitoring subassembly 20 moves to the eminence and is locked by coupling mechanism, coupling mechanism changes the gradient that shielding mechanism is located to alleviate the wind shock force that monitoring facilities received when being in the high altitude with coupling mechanism and shielding mechanism, foretell concrete implementation condition does: because the shielding mechanism is initially arranged above the air monitoring assembly 20, the air monitoring assembly 20 can be prevented from contacting external foreign matters in the lifting process, because the ecological environment is monitored, a large number of monitoring devices are arranged in the wild, the shielding assembly 30 is pulled to block branches from contacting the air monitoring assembly 20, the height of the air monitoring assembly 20 is increased, the air monitoring assembly 20 has a certain weight and the size of the supporting device 10 is smaller, so that the gravity center of the air monitoring assembly 20 is gradually increased, the air monitoring assembly 20 can be subjected to vibration caused by blowing of wind force in a high-altitude state, the shielding mechanism is connected and locked with the shielding mechanism, the stability of the air monitoring assembly 20 in the high-altitude state is deepened, and when the shielding mechanism is contacted with the connecting mechanism, the inclination angle of the shielding mechanism is changed, the contact area of the shielding mechanism and external wind force is reduced, and the vibration influence of wind factors on the whole monitoring device is reduced.
With reference to the above technical solution, the following details are described: be provided with locking fixture block 203 on the power box 201, coupling mechanism is including installing the fixed part 301 on strutting arrangement 10, locking fixture block 203 is connected with fixed part 301, make power box 201 be in locking state, by strutting arrangement 10 lift change air monitoring assembly 20's position, make power box 201, monitor sensor 202 and locking fixture block 203 upward movement, monitor sensor 202 alright monitor the air quality of different high positions, when locking fixture block 203 and fixed part 301 contact, make power box 201 be in locking state, stability when promoting power box 201 in the eminence, reduce wind-force impact power box 201 and cause great vibrations condition to power box 201.
The explanation is made for the shielding mechanism: the shielding mechanism comprises a shielding plate 302 which is movably connected to the fixing part 301 and is in an inclined state, the shielding plate 302 is positioned above the power supply box 201 and is used for preventing foreign matters from contacting the power supply box 201, the whole monitoring equipment is installed in a wild ecological environment, trees are planted in the ecological environment generally, birds are arranged on the trees, the foreign matters are branches, fallen leaves, bird droppings and the like generally, the foreign matters are collectively called as foreign matters below, the shielding plate 302 can be used for preventing the foreign matters from contacting the power supply box 201 and the monitoring sensor 202 through the inclined state, the monitoring sensor 202 is a sensitive detection element, the power supply box 201 and the monitoring sensor 202 are prevented from contacting with external foreign matters in the lifting process, the monitoring sensor 202 and the power supply box 201 are protected, and the monitoring equipment is convenient for monitoring the air quality; wherein, connecting portion 305 is installed to one end of shielding plate 302, connecting portion 305 is fixed on fixed portion 301, is provided with fixed spring 306 between connecting portion 305 and the shielding plate 302, connecting portion 305 and shielding plate 302 rotate to be connected, therefore when clamp plate 304 is pressed, clamp plate 304 drives shielding plate 302 to incline and rotate to make the inclination angle of shielding plate 302 diminish, accomplishes shielding plate 302 inclination angle's adjustment operation.
Further analysis is made of the effect of the shielding plate 302: a pressing plate 304 is installed at one end of the shielding plate 302, one end of the pressing plate 304 is located in the fixing portion 301, when the locking clamping block 203 contacts the pressing plate 304, the pressing plate 304 is pressed in the fixing portion 301, wherein:
the shielding plate 302 moves along with the pressing plate 304, so that the shielding plate 302 rotates to change the inclination angle, the pressing plate 304 is pressed by the locking clamping block 203, the pressing plate 304 can control the shielding plate 302 to rotate, so that the inclined shielding plate 302 changes the inclination degree of the shielding plate 302 by rotation, the shielding plate 302 rotates downwards, the contact surface of the shielding plate 302 and wind force is reduced, the area of the shielding plate 302 is reduced by wind force impact, the condition that the whole monitoring equipment is greatly vibrated due to the wind force impact of the shielding plate 302 and the fixing part 301 is reduced, and the stability of the whole monitoring equipment in high altitude is improved.
Considering that the monitoring sensor 202 is exposed outside for use, dust and dirt will adhere to the monitoring sensor 202, referring to fig. 5, 6 and 8, the fixing portion 301 is provided with an air flow port 303, the pressing plate 304 extends out of the air flow port 303, the air flow port 303 is provided with a locking clip 307, and a pressure spring 308 is installed between the locking clip 307 and the air flow port 303, and the locking clip 203 is connected with the locking clip 307, wherein:
when the wind strikes the shielding plate 302, the shielding plate 302 guides the wind to flow along one end of the airflow port 303 to the other end and contact the monitoring sensor 202.
The pressure spring 308 is used for providing a limiting force for the locking clamping block 203, so that the locking clamping block 203 is stably clamped and fixed with the locking clamping channel 307, and for the air flow port 303, the locking clamping block 203 can be conveniently driven to rotate the pressing plate 304, then when the locking clamping block 203 contacts the pressing plate 304, the air flow port 303 is in a penetrating state, when wind power exists outdoors, and when the movement direction of the wind power is one direction, for example: the wind flows from one shielding plate 302 to the other shielding plate 302, and at this time, the wind is guided by the shielding plate 302 to flow from one end to the other end of the airflow port 303 in the process of impacting the shielding plate 302, so that when the wind is blocked by the shielding plate 302, the wind can also blow the two monitoring sensors 202 on the monitoring device to clean the monitoring sensors 202 by blowing force; wherein, because the inside diameter of the airflow opening 303 is smaller, when the wind is discharged from the airflow opening 303 to blow the monitoring sensor 202, a certain impact is generated, so that the cleaning strength of the monitoring sensor 202 is improved (the implementation reason of the scheme is that when the flowing direction of the wind is the impact of contacting one shielding plate 302, the wind is blocked by the shielding plate 302 at the moment, the position below the shielding plate 302 at the other side is free of the wind, and in this case, the wind can only blow to clean one monitoring sensor 202; then, when the locking clamp 203 presses the pressing plate 304, the combination of the locking clamp 203 and the pressing plate 304 seals the air flow opening 303, so that the air does not pass through the air flow opening 303, and the stability of the monitoring device at the high-altitude position is improved.
Examples
The shielding plate 302 is located above the monitoring sensor 202, and when the inclination angle is changed due to rotation of the shielding plate 302, the shielding plate 302 blocks solar rays from irradiating the monitoring sensor 202, the shielding plate 302 is located on the monitoring sensor 202 and also blocks solar rays, so that when the monitoring sensor 202 is prevented from radiating a great amount of strong rays in hot weather, the continuous rising of the temperature of the monitoring sensor 202 is avoided, and the track of early rising and late falling of the sun can be adapted to the shielding plate 302 in the rotating process, so that the shielding plate 302 always blocks part of solar rays from radiating the monitoring sensor 202, and the monitoring accuracy of the monitoring sensor 202 to air is improved, and the service life of the monitoring sensor is prolonged.
The foregoing has shown and described the basic principles, principal features and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the above-described embodiments, and that the above-described embodiments and descriptions are only preferred embodiments of the present invention, and are not intended to limit the invention, and that various changes and modifications may be made therein without departing from the spirit and scope of the invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (1)

1. The utility model provides a monitoring facilities of ecological environment and environmental pollution, includes strutting arrangement (10) and installs air monitoring subassembly (20) that are used for monitoring outdoor environmental air quality on strutting arrangement (10), its characterized in that: the supporting device (10) is used for changing the position of the air monitoring assembly (20) in the air, the air monitoring assembly (20) is provided with a steering shielding assembly (30), the steering shielding assembly (30) comprises a connecting mechanism used for locking the air monitoring assembly (20), the connecting mechanism is provided with a shielding mechanism used for preventing foreign matters from contacting the air monitoring assembly (20), when the air monitoring assembly (20) moves to a high place and is locked by the connecting mechanism, the connecting mechanism changes the inclination of the shielding mechanism, and the connecting mechanism and the shielding mechanism are used for relieving wind and vibration force born by the monitoring equipment in the high air; the air monitoring assembly (20) comprises a power supply box (201) arranged on the supporting device (10), a monitoring sensor (202) for monitoring air quality is arranged on the power supply box (201), a locking clamping block (203) is arranged on the power supply box (201), the connecting mechanism comprises a fixing part (301) arranged on the supporting device (10), and the locking clamping block (203) is connected with the fixing part (301) to enable the power supply box (201) to be in a locking state; the shielding mechanism comprises a shielding plate (302) which is movably connected to the fixing part (301) and is in an inclined state, and the shielding plate (302) is positioned above the power supply box (201) and used for blocking foreign matters from contacting the power supply box (201); a pressing plate (304) is arranged at one end of the shielding plate (302), one end of the pressing plate (304) is positioned in the fixing part (301), when the locking clamping block (203) contacts the pressing plate (304), the pressing plate (304) is pressed in the fixing part (301), and the shielding plate (302) moves along with the pressing plate (304), so that the shielding plate (302) rotates to change the inclination angle; the shielding plate (302) is positioned above the monitoring sensor (202), and when the inclination angle of the shielding plate (302) is changed by rotation, the shielding plate (302) blocks solar rays from irradiating the monitoring sensor (202); a connecting part (305) is arranged at one end of the shielding plate (302), the connecting part (305) is fixed on the fixing part (301), and a fixing spring (306) is arranged between the connecting part (305) and the shielding plate (302); the supporting device (10) comprises a supporting component and a transmission component, wherein the supporting component is used for supporting the power supply box (201), and the transmission component is used for changing the height position of the power supply box (201); the supporting component comprises a supporting frame, a supporting rod is arranged on the supporting frame, a moving rod is arranged on the supporting rod, a fixing part is arranged on the top of the moving rod, a supporting part is arranged on the moving rod, the supporting part is fixedly connected with a power supply box, a base is fixedly connected to the bottom of the supporting frame, the base is fixed on the ground, the transmission component comprises a fixing plate arranged on the supporting frame, a screw rod is rotationally connected to the fixing plate and is driven by a motor, the screw rod is in threaded connection with the supporting part, so that the screw rod drives the supporting part to ascend and descend on the moving rod, the height of the power supply box is changed, and the adjustment of the height position of the whole monitoring equipment is realized.
CN202310321796.XA 2023-03-29 2023-03-29 Ecological environment and environmental pollution's monitoring facilities Active CN116381146B (en)

Priority Applications (1)

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CN202310321796.XA CN116381146B (en) 2023-03-29 2023-03-29 Ecological environment and environmental pollution's monitoring facilities

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Application Number Priority Date Filing Date Title
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CN116381146B true CN116381146B (en) 2024-02-02

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