Solar emergency indicating device with wind speed, wind direction and gas detection function
By employing a dual power supply mode of solar panels and lithium batteries and a modular design for the emergency indicator device, the problems of inconvenient power supply and insufficient wind speed and direction detection have been solved. This enables accurate online monitoring and remote transmission of wind speed, direction, and gas detection, ensuring the safety of on-site personnel.
Patent Information
- Application Number
- CN202520491592.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-03-20
AI Technical Summary
The existing emergency indicator devices suffer from inconvenient power supply and insufficient wind speed and direction detection, making it difficult for on-site workers to accurately determine the escape direction when toxic or harmful gases leak, posing a safety hazard.
It adopts a dual power supply mode of solar panel and lithium battery, combined with ultrasonic wind speed and direction sensor and modular design, and integrates 4G communication module to realize online monitoring and remote transmission of wind speed, wind direction and gas detection. It has explosion-proof design and resin sealing treatment, and supports multi-point networking and real-time escape indication.
It can achieve stable operation in the field or dangerous areas without mains power supply, ensure the accuracy and safety of wind speed, wind direction and gas detection, dynamically analyze gas diffusion trends, upload data in real time and indicate the optimal escape direction, and improve the environmental adaptability and installation and maintenance efficiency of the equipment.
Smart Images

Figure CN223927031U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of emergency device technology, and in particular relates to a solar-powered emergency indicator device with wind speed, wind direction and gas detection functions. Background Technology
[0002] In fields such as petroleum, chemical, municipal, public places, fire emergency rescue, and archaeology, environmental gas detection and wind speed and direction monitoring are frequently required. This typically involves fixed or portable gas detection equipment and fixed wind speed and direction monitoring equipment. Detection results are uploaded to a central control room via wired or wireless means; on-site personnel are unaware of specific wind speed, direction, and gas concentration information. Furthermore, power supply limitations prevent the deployment of gas and wind speed / direction monitoring equipment in all potentially hazardous areas. In the event of a toxic or hazardous gas leak, on-site personnel may panic and flee in the direction of gas diffusion, easily leading to injuries or fatalities. Utility Model Content
[0003] In view of this, the present invention aims to propose a solar-powered emergency indicator device with wind speed, wind direction and gas detection functions, so as to solve the problems of inconvenient power supply and insufficient wind speed and wind direction detection indication of existing emergency indicator devices.
[0004] To achieve the above objectives, this utility model adopts the following technical solution: a solar-powered emergency indicator device with wind speed, direction, and gas detection functions, comprising a wind speed and direction display assembly, a column assembly, a wiring connection compartment, a battery compartment assembly, a detector module, and a solar panel. The wind speed and direction display assembly is connected to the upper end of the column assembly, and the lower end of the column assembly is connected to the wiring connection compartment. The wind speed and direction display assembly includes a transparent cover, a display screen wiring assembly, a wind speed and direction sensor assembly, a metal connecting ring, a lower housing, a reflective connecting plate, a power connection upper nut, and a power connection lower nut. The display screen wiring assembly is located inside the transparent cover and includes four screens arranged in an enclosed configuration. A wind speed and direction sensor assembly is installed on the lower housing. The display screen wiring assembly is connected to the wind speed and direction sensor assembly via a quick-connect connector. The transparent cover is connected to a metal connecting ring, which is connected to the lower housing. The lower housing is connected to a reflective connecting plate. The upper power connection nut is connected to the reflective connecting plate and to the wind speed and direction sensor assembly via a built-in wiring spring. The lower power connection nut is connected to the battery in the battery compartment assembly via a wiring connection compartment. The upper connection nut and the lower power connection nut are connected by a wire. The wiring connection compartment is connected to the battery compartment assembly. The detector module and the solar panel are both connected to the column assembly and are both connected to the battery.
[0005] Furthermore, the wiring connection compartment includes a wiring circuit board and a wiring compartment housing. The wiring circuit board is installed inside the wiring compartment housing and is connected to the battery. The power connection lower nut is connected to the wiring circuit board through a built-in wiring spring pin.
[0006] Furthermore, the wiring connection compartment also includes a wiring compartment cover, a power switch button, and a USB port connector. The wiring compartment cover, power switch button, and USB port connector are all connected to the wiring compartment housing. The wiring compartment cover is connected to the column assembly. The power switch button and USB port connector are both connected to the wiring circuit board. The USB port connector is provided with a connector protective cover.
[0007] Furthermore, the battery compartment assembly includes a battery compartment upper cover and a battery compartment lower cover, the battery compartment upper cover and the battery compartment lower cover are connected, and the battery is encapsulated in the battery compartment lower cover by resin glue.
[0008] Furthermore, the battery compartment cover is connected to the wiring compartment housing via wiring compartment connecting bolts, the battery power cable is connected to the wiring circuit board through the hole on the wiring compartment connecting bolts, and the battery compartment cover is locked to the lower thread of the wiring compartment connecting bolts by battery compartment screws pressing metal washers.
[0009] Furthermore, both the detector module and the solar panel are connected to the column assembly via a U-shaped mounting clip and a nut, and both the detector module and the solar panel are connected to the battery via an explosion-proof quick-connect connector.
[0010] Furthermore, the detector module includes a detector mounting plate and a detector, the detector being mounted on the detector mounting plate, and the detector mounting plate being connected to the column assembly.
[0011] Furthermore, the column assembly includes an upper column and a lower column, the upper column is connected to the lower column, the upper column is connected to the wind speed and direction display assembly, and the lower column is connected to the wiring connection compartment.
[0012] Furthermore, the upper and lower columns, the upper column and the wind speed and direction display assembly, and the lower column and the wiring connection compartment are all connected by retaining rings.
[0013] Furthermore, the lower housing is connected to the reflective connecting plate via a connecting screw and double-ended studs. The connecting screw is located at the center, and multiple double-ended studs are evenly distributed along the circumference. The double-ended studs are connected to the reflective connecting plate via nuts. A wiring sleeve is provided at the bottom of the connecting screw. The wind speed and direction sensor assembly is encapsulated on the lower housing with resin glue.
[0014] Compared with existing technologies, the beneficial effects of this utility model are as follows: This utility model effectively solves the problems of limited power supply and insufficient on-site indication in traditional detection equipment through integrated design. The device adopts a dual power supply mode of solar panel and lithium battery, which is suitable for scenarios where power supply is inconvenient and where wind speed and direction indication and gas detection are required, as well as other application scenarios that require detection and indication of toxic and harmful gases and wind speed and direction. It can monitor and indicate the concentration of toxic and harmful gases and wind speed and direction online, and can achieve stable operation in the field or dangerous areas without mains power supply, significantly expanding the deployment range of the equipment. The ultrasonic wind speed and direction sensor is set below the display cavity, combined with explosion-proof resin potting process, which not only ensures the accuracy of wind speed and direction detection, but also improves the safety and durability of the equipment in harsh environments such as humid and vibrating environments, ensuring that its circuit board is not affected by weather and ensuring the accuracy of the sensor. The four-way display screen, combined with the multi-point network detection function, can dynamically analyze the gas diffusion trend and display the optimal escape direction in real time, effectively preventing personnel from accidentally entering dangerous areas.
[0015] This invention can be equipped with a 4G communication module, enabling remote transmission of detection data and real-time uploading of wind speed and direction information to higher-level management software. This allows the monitoring center to monitor the situation on-site in real time. It can also be equipped with a LoRa module to transmit wind speed and direction information to receiving devices within a 350-meter radius. The modular design allows for quick-connect fittings between components, significantly improving installation and maintenance efficiency. The U-shaped clamp fixing method ensures that the detector and solar panel can be flexibly adjusted in installation position according to site requirements. The overall structure features an explosion-proof design and is sealed with resin, providing enhanced environmental adaptability in special environments such as chemical and fire-fighting applications.
[0016] This invention can be configured with 1 to N products according to actual needs on site, and can form a diffusion trend prediction based on wind speed, wind direction and gas concentration detection data through multi-point gas and wind speed and wind direction detection. According to the set four-sided dot matrix screen, it can indicate the escape route or wind direction in real time, which is conducive to escape. Attached Figure Description
[0017] The accompanying drawings, which form part of this utility model, are used to provide a further understanding of the utility model. The illustrative embodiments of the utility model and their descriptions are used to explain the utility model and do not constitute an undue limitation of the utility model. In the drawings:
[0018] Figure 1 This is a three-dimensional structural diagram of a solar-powered emergency indicator device with wind speed, wind direction, and gas detection functions as described in this utility model;
[0019] Figure 2 This is a schematic diagram of the exploded structure of a solar-powered emergency indicator device with wind speed, wind direction, and gas detection functions as described in this utility model.
[0020] Figure 3 This is a cross-sectional structural diagram of the wind speed and direction display assembly described in this utility model.
[0021] In the picture:
[0022] 1: Wind speed and direction display assembly; 2: Snap ring; 3: Upper column; 4: Lower column; 5: Wiring connection compartment; 6: Battery compartment assembly; 7: Detector module; 8: Solar panel; 1-1: Transparent cover; 1-2: Display screen wiring assembly; 1-3: Wind speed and direction sensor assembly; 1-4: Metal connecting ring; 1-5: Lower housing; 1-6: Connecting screw; 1-7: Double-ended stud; 1-8: Wiring sleeve; 1-9: Reflector connecting plate; 1-10: Nut; 1-11: Power connection nut; 1-12: Electric... 5-1: Wiring compartment cover; 5-2: Wiring circuit board; 5-3: Power switch button; 5-4: Wiring compartment housing; 5-5: USB port connector; 5-6: Connector protective cover; 6-1: Battery compartment cover; 6-2: Wiring compartment connecting bolt; 6-3: Battery; 6-4: Battery compartment cover; 6-5: Metal washer; 6-6: Battery compartment screw; 7-1: U-shaped mounting clip; 7-2: Nut; 7-3: Explosion-proof quick-connect connector; 7-4: Detector mounting plate; 7-5: Detector. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. It should be noted that, unless otherwise specified, the embodiments and features in the embodiments of the present utility model can be combined with each other, and the described embodiments are only some embodiments of the present utility model, not all embodiments.
[0024] See Figure 1-3This embodiment describes a solar-powered emergency indicator device with wind speed, direction, and gas detection functions. It includes a wind speed and direction display assembly 1, a column assembly, a wiring connection compartment 5, a battery compartment assembly 6, a detector module 7, and a solar panel 8. The wind speed and direction display assembly 1 is connected to the upper end of the column assembly, and the lower end of the column assembly is connected to the wiring connection compartment 5. The wind speed and direction display assembly 1 includes a transparent cover 1-1, a display screen wiring assembly 1-2, a wind speed and direction sensor assembly 1-3, a metal connecting ring 1-4, a lower housing 1-5, a reflective connecting plate 1-9, a power connection upper nut 1-11, and a power connection lower nut 1-12. The display screen wiring assembly 1-2 is located inside the transparent cover 1-1 and includes four screens arranged in an enclosed configuration. The wind speed and direction sensor assembly is located on the lower housing 1-5. The display screen wiring assembly 1-2 is connected to the wind speed and direction sensor assembly 1-3 via a quick-connect connector. The transparent cover 1-1 is connected to the metal connecting ring 1-4, which is connected to the lower housing 1-5. The lower housing 1-5 is connected to the reflective connecting plate 1-9. The power connection upper nut 1-11 is connected to the reflective connecting plate 1-9 and to the wind speed and direction sensor assembly 1-3 via a built-in wiring spring. The power connection lower nut 1-12 is connected to the battery 6-3 in the battery compartment assembly 6 via the wiring connection compartment 5. The upper nut 1-11 and the lower nut 1-12 are connected by wires. The wiring connection compartment 5 is connected to the battery compartment assembly 6. The detector module 7 and the solar panel 8 are both connected to the column assembly and are both connected to the battery 6-3.
[0025] In this embodiment, the wiring connection compartment 5 includes a wiring circuit board 5-2 and a wiring compartment housing 5-4. The wiring circuit board 5-2 is installed inside the wiring compartment housing 5-4 and is connected to the battery 6-3. The power connection lower nut 1-12 is connected to the wiring circuit board 5-2 through a built-in wiring spring. The wiring connection compartment 5 also includes a wiring compartment cover 5-1, a power switch button 5-3, and a USB port connector 5-5. The wiring compartment cover 5-1, the power switch button 5-3, and the USB port connector 5-5 are all connected to the wiring compartment housing 5-4. The wiring compartment cover 5-1 is connected to the column assembly. The power switch button 5-3 and the USB port connector 5-5 are both connected to the wiring circuit board 5-2. A connector protective cover 5-6 is provided on the USB port connector 5-5.
[0026] In this embodiment, the battery compartment assembly 6 includes a battery compartment upper cover 6-1 and a battery compartment lower cover 6-4. The battery compartment upper cover 6-1 is connected to the battery compartment lower cover 6-4, and the battery 6-3 is encapsulated in the battery compartment lower cover 6-4 with resin. The battery compartment upper cover 6-1 is connected to the wiring compartment housing 5-4 through a wiring compartment connecting bolt 6-2. The power cable of the battery 6-3 is connected to the wiring circuit board 5-2 through a hole on the wiring compartment connecting bolt 6-2. The battery compartment lower cover 6-4 is locked to the lower thread of the wiring compartment connecting bolt 6-2 by pressing a metal washer 6-5 against a battery compartment screw 6-6.
[0027] In this embodiment, both the detector module 7 and the solar panel 8 are connected to the column assembly via a U-shaped mounting clip 7-1 and a nut 7-2. Both the detector module 7 and the solar panel 8 are connected to the battery 6-3 via an explosion-proof quick-connect connector 7-3. The detector module 7 includes a detector mounting plate 7-4 and a detector 7-5. The detector 7-5 is mounted on the detector mounting plate 7-4, which is connected to the column assembly.
[0028] In this embodiment, the column assembly includes an upper column 3 and a lower column 4. The upper column 3 is connected to the lower column 4. The upper column 3 is connected to the wind speed and direction display assembly 1, and the lower column 4 is connected to the wiring connection compartment 5. The upper column 3 and the lower column 4, the upper column 3 and the wind speed and direction display assembly 1, and the lower column 4 and the wiring connection compartment 5 are all connected by retaining rings 2.
[0029] In this embodiment, the lower housing 1-5 and the reflective connecting plate 1-9 are connected by a connecting screw 1-6 and a double-headed stud 1-7. The connecting screw 1-6 is located at the center, and multiple double-headed studs 1-7 are evenly distributed along the circumference. The double-headed studs 1-7 are connected to the reflective connecting plate 1-9 by nuts 1-10. A wiring sleeve 1-8 is provided at the bottom of the connecting screw 1-6. The wind speed and direction sensor assembly 1-3 is encapsulated on the lower housing 1-5 with resin glue.
[0030] This embodiment mainly comprises an anemometer assembly 1, a column assembly, a wiring connection compartment 5, a battery compartment assembly 6, a detector module 7, and a solar panel 8, forming an overall structure. The anemometer assembly 1 is fixedly connected to the top of the upper column 3 of the column assembly via a retaining ring 2, and the bottom of the column assembly is assembled with the wiring connection compartment 5 via a retaining ring 2. The column assembly consists of a segmented upper column 3 and a lower column 4, which are quickly disassembled and reassembled via a retaining ring 2.
[0031] The core components of the wind speed and direction display assembly 1 include a transparent cover 1-1, a display screen wiring assembly 1-2, and a wind speed and direction sensor assembly 1-3. The transparent cover 1-1 is sealed to the lower housing 1-5 via a metal connecting ring 1-4. The four-panel enclosed display screen wiring assembly 1-2 is electrically connected to the wind speed and direction sensor assembly 1-3 via quick-connect connectors. The sensor assembly 1-3 is fixed to the top of the lower housing 1-5 using a resin potting process, and its detection signal is transmitted to the power connection nut 1-11 via built-in wiring springs.
[0032] The power system adopts a dual-power supply design. The solar panel 8 is fixed to the middle of the upper column 3 by a U-shaped mounting clip 7-1 and a nut 7-2. The output line is connected to the battery compartment assembly 6 via an explosion-proof quick-connect connector 7-3. The battery 6-3 is encapsulated in the lower cover 6-4 of the battery compartment, which is potted with resin. It is reliably connected to the wiring board 5-2 by the wiring compartment connecting bolt 6-2. The upper cover 6-1 of the battery compartment and the wiring compartment housing 5-4 adopt a threaded fastening structure. The bottom is equipped with an anti-loosening component that uses battery compartment screws 6-6 to press the metal washer 6-5.
[0033] The wiring connection compartment 5 integrates a wiring circuit board 5-2, a power switch button 5-3, and a USB connector 5-5 with a connector protective cover 5-6. The communication module uses a standard interface and is mounted on the wiring circuit board 5-2, supporting 4G and LoRa dual-mode transmission. The detector module 7 contains a detector 7-5 mounted on a detector mounting plate 7-4, which is fixed to the surface of the lower column 4 by an adjustable-angle U-shaped mounting clip 7-1.
[0034] The specific embodiments of this utility model disclosed above are merely illustrative of the present utility model. These specific embodiments do not exhaustively describe all details, nor do they limit the utility model to only the described embodiments. Many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it.
Claims
1. A solar-powered emergency indicator device with wind speed, wind direction, and gas detection functions, characterized in that: It includes wind speed and direction display instrument assembly (1), column assembly, wiring connection warehouse (5), battery warehouse assembly (6), detector module (7) and solar panel (8), the wind speed and direction display instrument assembly (1) is connected with the upper end of column assembly, the lower end of column assembly is connected with wiring connection warehouse (5), the wind speed and direction display instrument assembly (1) includes transparent cover (1-1), display screen wiring assembly (1-2), wind speed and direction sensor assembly (1-3), metal connecting ring (1-4), lower shell (1-5), reflection connecting plate (1-9), power connection upper nut (1-11) and power connection lower nut (1-12), the display screen wiring assembly (1-2) is arranged inside the transparent cover (1-1), the display screen wiring assembly (1-2) includes four display screens, the wind speed and direction sensor assembly (1-3) is arranged on the lower shell (1-5), the display screen wiring assembly (1-2) is connected with the wind speed and direction sensor assembly (1-3) through quick connector, the transparent cover (1-1) is connected with the metal connecting ring (1-4), the metal connecting ring (1-4) is connected with the lower shell (1-5), the lower shell (1-5) is connected with the reflection connecting plate (1-9), the power connection upper nut (1-11) is connected with the reflection connecting plate (1-9), and is connected with the wind speed and direction sensor assembly (1-3) through built-in wiring spring needle, the power connection lower nut (1-12) is connected with the battery (6-3) in the battery warehouse assembly (6) through the wiring connection warehouse (5), the connection upper nut (1-11) and the power connection lower nut (1-12) are connected through wires, the wiring connection warehouse (5) is connected with the battery warehouse assembly (6), the detector module (7) and solar panel (8) are connected on the column assembly, the detector module (7) and solar panel (8) are connected with the battery (6-3).
2. The solar emergency indicating device with wind speed, wind direction and gas detection functions according to claim 1, characterized in that: The wiring connection warehouse (5) includes wiring circuit board (5-2) and wiring warehouse shell (5-4), the wiring circuit board (5-2) is installed inside the wiring warehouse shell (5-4), the wiring circuit board (5-2) is connected with the battery (6-3), the power connection lower nut (1-12) is connected with the wiring circuit board (5-2) through built-in wiring spring needle.
3. The solar emergency indicating device with wind speed, wind direction and gas detection functions according to claim 2, characterized in that: The wiring connection warehouse (5) further includes wiring warehouse upper cover (5-1), power switch button (5-3) and USB socket connector (5-5), the wiring warehouse upper cover (5-1), power switch button (5-3) and USB socket connector (5-5) are connected with the wiring warehouse shell (5-4), the wiring warehouse upper cover (5-1) is connected with the column assembly, the power switch button (5-3) and the USB socket connector (5-5) are connected with the wiring circuit board (5-2), the USB socket connector (5-5) is provided with connector protection cover (5-6).
4. The solar emergency indicating device with wind speed, wind direction and gas detection functions according to claim 2, characterized in that: The battery compartment assembly (6) comprises a battery compartment upper cover (6-1) and a battery compartment lower cover (6-4), the battery compartment upper cover (6-1) is connected with the battery compartment lower cover (6-4), and the battery (6-3) is filled in the battery compartment lower cover (6-4) through resin glue.
5. The solar emergency indicating device with wind speed, wind direction and gas detection functions according to claim 4, characterized in that: The battery compartment upper cover (6-1) is connected with the wiring compartment shell (5-4) through the wiring compartment connecting bolt (6-2), the power line of the battery (6-3) is connected to the wiring line board (5-2) through the hole on the wiring compartment connecting bolt (6-2), and the battery compartment lower cover (6-4) is locked on the lower threaded part of the wiring compartment connecting bolt (6-2) by pressing the metal gasket (6-5) through the battery compartment screw (6-6).
6. The solar emergency indicating device with wind speed, wind direction and gas detection functions according to claim 1, characterized in that: The detector module (7) and the solar panel (8) are connected on the column assembly through the cooperation of the U-shaped mounting clamp (7-1) and the nut (7-2), and the detector module (7) and the solar panel (8) are connected with the battery (6-3) through the explosion-proof quick connector (7-3).
7. The solar emergency indicating device with wind speed, wind direction and gas detection functions according to claim 6, characterized in that: The detector module (7) comprises a detector mounting plate (7-4) and a detector (7-5), the detector (7-5) is mounted on the detector mounting plate (7-4), and the detector mounting plate (7-4) is connected on the column assembly.
8. The solar emergency indicating device with wind speed, wind direction and gas detection functions according to claim 1, characterized in that: The column assembly comprises an upper column (3) and a lower column (4), the upper column (3) is connected with the lower column (4), the upper column (3) is connected with the wind speed and direction display instrument assembly (1), and the lower column (4) is connected with the wiring connecting compartment (5).
9. The solar emergency indicating device with wind speed, wind direction and gas detection functions according to claim 8, characterized in that: The upper column (3) and the lower column (4), the upper column (3) and the wind speed and direction display instrument assembly (1), and the lower column (4) and the wiring connecting compartment (5) are connected through the snap ring (2) respectively.
10. The solar emergency indicating device with wind speed, wind direction and gas detection functions according to claim 1, characterized in that: The lower shell (1-5) and the reflection connecting plate (1-9) are connected through the connecting screw rod (1-6) and the stud (1-7), the connecting screw rod (1-6) is arranged at the center position, a plurality of stud (1-7) are distributed along the circumferential direction, the stud (1-7) is connected with the reflection connecting plate (1-9) through the nut (1-10), the connecting screw rod (1-6) is provided with the wiring sheath (1-8) at the bottom, and the wind speed and direction sensor assembly (1-3) is filled on the lower shell (1-5) through resin glue.