A portable outdoor weather real-time monitoring device

CN224726879UActive Publication Date: 2026-09-08SHANDONG TIANHE ENVIRONMENTAL TECH CO LTD
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Patent Information

Application Number
CN202522172636.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-14
Publication Date
2026-09-08
Estimated Expiration
2035-10-14

AI Technical Summary

Technical Problem

[0006]本实用新型针对背景技术中的不足,提供一种便携式户外气象实时监测设备,可以解决部署和收纳效率低下、测量高度调整不灵活以及车辆本身对测量数据干扰问题

Benefits of technology

通过电动伸缩杆驱动摆动臂运动,以及伸缩臂的滑动设计,设备可以快速从收纳状态切换到工作状态,无需复杂的安装步骤,大大提高了部署和收纳效率,车辆停稳后,操作员只需启动电动伸缩杆和调整伸缩臂即可完成设置;

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of portable outdoor weather real-time monitoring equipment, including weather monitoring sensor, weather monitoring sensor is fixedly installed on the one end of telescopic arm, telescopic arm is slidably arranged in swing arm inside, swing arm is hingedly installed at the top of fixed arm, fixed arm is arranged along vertical direction, fixed arm bottom is installed on vehicle by base, the side of fixed arm is equipped with electric telescopic rod for driving swing arm movement;The outer wall of telescopic arm is slidably connected with the inner wall of swing arm, the outer wall of telescopic arm is equipped with the multiple ring grooves of equidistance distribution, the end of swing arm one side is installed with screw seat, the inner end of screw seat is abutted in the ring groove of telescopic arm.The utility model provides a kind of portable outdoor weather real-time monitoring equipment, can solve deployment and storage efficiency is low, measurement height is not flexible and vehicle itself is disturbed to measurement data problem.
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Description

Technical Field

[0001] This utility model relates to a portable outdoor real-time weather monitoring device, belonging to the field of meteorological monitoring technology. Background Technology

[0002] Meteorological monitoring equipment is used to monitor meteorological parameters in a monitored area. Traditional monitoring equipment is mostly fixed and has a limited measurement range, which cannot meet the needs of different regions. Therefore, mobile and vehicle-mounted meteorological monitoring equipment is becoming increasingly common.

[0003] Vehicle-mounted meteorological monitoring equipment is usually directly fixed on the vehicle. The vehicle's heat sources (such as the engine) and metal structure can affect the accuracy of measurements such as temperature, humidity, wind speed and direction, leading to data deviation.

[0004] Vehicle-mounted meteorological monitoring equipment requires manual installation, leveling, and securing, a complex and time-consuming process, especially in outdoor environments where deployment is slow and inefficient. Furthermore, when avoiding ground turbulence or changing sensor height, reinstallation or additional tools are often necessary, resulting in inflexible height adjustment.

[0005] In conclusion, the existing technology obviously has inconveniences and defects in practical use, so it is necessary to improve it. Utility Model Content

[0006] This invention addresses the shortcomings of the prior art by providing a portable outdoor real-time weather monitoring device that solves the problems of low deployment and storage efficiency, inflexible adjustment of measurement height, and interference with measurement data caused by the vehicle itself.

[0007] To solve the above technical problems, the present invention adopts the following technical solution: A portable outdoor real-time weather monitoring device includes a weather monitoring sensor, which is fixedly installed on one end of a telescopic arm. The telescopic arm is slidably disposed inside a swing arm, which is hinged to the top of a fixed arm. The fixed arm is arranged vertically, and the bottom of the fixed arm is mounted on a vehicle via a base. An electric telescopic rod for driving the swing arm is provided on the side of the fixed arm.

[0008] Furthermore, the telescopic arm is provided with a flange integrally formed therewith at its end, and the flange is connected to the bottom of the meteorological monitoring sensor.

[0009] Furthermore, the outer wall of the telescopic arm is slidably connected to the inner wall of the swing arm, and the outer wall of the telescopic arm is provided with multiple annular grooves distributed at equal intervals.

[0010] Furthermore, a screw seat is installed on one side of the end of the swing arm, and the inner end of the screw seat abuts against the annular groove of the telescopic arm.

[0011] Furthermore, the swing arm has a hollow structure, with one end having an opening for the telescopic arm to slide in and out, and the other end being sealed.

[0012] Furthermore, a first ear plate is fixedly installed on the side of the blocking end of the swing arm, and the first ear plate is hinged to the top of the fixed arm via a pin.

[0013] Furthermore, a second ear plate is fixedly installed on the end of the blocking end of the swing arm, and the second ear plate is hinged to the head of the electric telescopic rod through a pin.

[0014] Furthermore, the tail of the electric telescopic rod is hinged to the third ear plate via a pin, and the third ear plate is fixedly installed on one side of the bottom of the fixed arm.

[0015] Furthermore, the meteorological monitoring sensor and the electric telescopic pole are both connected to the vehicle power supply and are powered by the vehicle power supply.

[0016] Compared with the prior art, the present invention, by adopting the above technical solution, has the following advantages: Driven by an electric telescopic rod, the swing arm can be moved quickly, and the sliding design of the telescopic arm allows the equipment to switch from storage to working mode quickly without complicated installation steps, greatly improving deployment and storage efficiency. After the vehicle stops, the operator only needs to start the electric telescopic rod and adjust the telescopic arm to complete the setup. The telescopic arm can slide within the swing arm and be fixed by a screw mount, allowing continuous adjustment of the sensor's extension length to adapt to different environments, such as raising the height to avoid ground interference or vehicle obstruction; By extending the sensor to a location away from the vehicle using telescopic and swing arms, the thermal radiation and structural interference generated by the vehicle are effectively isolated, thereby improving the reliability and accuracy of meteorological data.

[0017] The present invention will now be described in detail with reference to the accompanying drawings and embodiments. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of the structure of this utility model in a folded state; Figure 2 This is a schematic diagram of the structure of this utility model in its extended state; Figure 3 This is a schematic diagram of the swing arm.

[0019] In the diagram, 1-meteorological monitoring sensor, 2-telescopic arm, 21-flange, 22-ring groove, 3-swing arm, 4-fixed arm, 5-base, 6-screw seat, 7-first ear plate, 8-second ear plate, 9-electric telescopic rod, 10-third ear plate. Detailed Implementation

[0020] To provide a clearer understanding of the technical features, objectives, and effects of this utility model, the specific embodiments of this utility model are now described with reference to the accompanying drawings.

[0021] like Figures 1-3 As shown in the figure, this utility model provides a portable outdoor real-time weather monitoring device, including a weather monitoring sensor 1, which is fixedly installed on one end of a telescopic arm 2. The telescopic arm 2 is slidably disposed inside a swing arm 3. The swing arm 3 is hingedly installed on the top of a fixed arm 4. The fixed arm 4 is arranged in a vertical direction. The bottom of the fixed arm 4 is mounted on a vehicle via a base 5. An electric telescopic rod 9 for driving the swing arm 3 is provided on the side of the fixed arm 4.

[0022] The telescopic arm 2 is provided with a flange 21 integrally formed therewith at its end. The flange 21 is connected to the bottom of the meteorological monitoring sensor 1 and is used to support the meteorological monitoring sensor 1.

[0023] The outer wall of the telescopic arm 2 is slidably connected to the inner wall of the swing arm 3, and the outer wall of the telescopic arm 2 is provided with a plurality of annular grooves 22 evenly distributed.

[0024] A screw seat 6 is installed on one side of the end of the swing arm 3. The inner end of the screw seat 6 abuts against the annular groove 22 of the telescopic arm 2 to fix the position of the telescopic arm 2 and limit the extension length of the telescopic arm 2 along the swing arm 3.

[0025] The location where the screw seat 6 is installed on the swing arm 3 is thickened to improve the reliability of the screw seat 6.

[0026] The swing arm 3 has a hollow structure. One end of the swing arm 3 is provided with an opening for the telescopic arm 2 to slide in and out, and the other end is sealed.

[0027] A first ear plate 7 is fixedly installed on the side of the blocking end of the swing arm 3. The first ear plate 7 is hinged to the top of the fixed arm 4 through a pin. The swing arm 3 can swing along the hinge.

[0028] A second ear plate 8 is fixedly installed on the end of the blocking end of the swing arm 3. The second ear plate 8 is hinged to the head of the electric telescopic rod 9 through a pin. The tail of the electric telescopic rod 9 is hinged to the third ear plate 10 through a pin. The third ear plate 10 is fixedly installed on one side of the bottom of the fixed arm 4. The electric telescopic rod 9 provides power for the movement of the swing arm 3.

[0029] The meteorological monitoring sensor 1 and the electric telescopic pole 9 are both connected to the vehicle power supply and are powered by the vehicle power supply.

[0030] The specific workflow of this utility model is as follows: Once the vehicle is parked at the monitoring point, the operator activates the electric telescopic rod 9 to extend it, pushing the swing arm 3 from its retracted position to its vertical working position. The operator then manually pulls out the telescopic arm 2, extending it from the swing arm 3 to the predetermined length, and tightens the screw seat 6 to lock the telescopic arm 2. The operator then turns on the power to the meteorological monitoring sensor 1 and begins collecting meteorological data.

[0031] This invention allows for quick deployment and storage, eliminating the need for complex installation and leveling like traditional tripods. It allows for flexible adjustment of measurement height and position to adapt to different measurement needs, such as avoiding ground turbulence and preventing interference from vehicle heat sources and metal structures in the measurement of temperature, humidity, wind speed, and wind direction.

[0032] The above description provides examples of the preferred embodiments of this utility model. Any aspects not detailed herein are common knowledge to those skilled in the art. The scope of protection of this utility model is determined by the claims. Any equivalent modifications based on the technical teachings of this utility model are also within the scope of protection of this utility model.

Claims

1. A portable outdoor real-time weather monitoring device, characterized in that: The system includes a meteorological monitoring sensor (1), which is fixedly installed on one end of a telescopic arm (2). The telescopic arm (2) is slidably disposed inside a swing arm (3). The swing arm (3) is hinged to the top of a fixed arm (4). The fixed arm (4) is arranged in a vertical direction. The bottom of the fixed arm (4) is mounted on a vehicle via a base (5). The side of the fixed arm (4) is provided with an electric telescopic rod (9) for driving the swing arm (3) to move.

2. The portable outdoor real-time weather monitoring device as described in claim 1, characterized in that: The telescopic arm (2) is provided with a flange (21) integrally formed therewith at its end, and the flange (21) is connected to the bottom of the meteorological monitoring sensor (1).

3. The portable outdoor real-time weather monitoring device as described in claim 1, characterized in that: The outer wall of the telescopic arm (2) is slidably connected to the inner wall of the swing arm (3), and the outer wall of the telescopic arm (2) is provided with multiple annular grooves (22) distributed at equal intervals.

4. The portable outdoor real-time weather monitoring device as described in claim 3, characterized in that: A screw seat (6) is installed on one side of the end of the swing arm (3), and the inner end of the screw seat (6) abuts against the annular groove (22) of the telescopic arm (2).

5. A portable outdoor real-time weather monitoring device as described in claim 1, characterized in that: The swing arm (3) is a hollow structure. One end of the swing arm (3) is provided with an opening for the telescopic arm (2) to slide in and out, and the other end is sealed.

6. The portable outdoor real-time weather monitoring device as described in claim 5, characterized in that: The first ear plate (7) is fixedly installed on the side of the blocking end of the swing arm (3), and the first ear plate (7) is hinged to the top of the fixed arm (4) by a pin.

7. A portable outdoor real-time weather monitoring device as described in claim 6, characterized in that: A second ear plate (8) is fixedly installed on the end of the blocking end of the swing arm (3). The second ear plate (8) is hinged to the head of the electric telescopic rod (9) through a pin.

8. A portable outdoor real-time weather monitoring device as described in claim 7, characterized in that: The tail of the electric telescopic rod (9) is hinged to the third ear plate (10) by a pin, and the third ear plate (10) is fixedly installed on one side of the bottom of the fixed arm (4).

9. A portable outdoor real-time weather monitoring device as described in claim 1, characterized in that: The meteorological monitoring sensor (1) and the electric telescopic pole (9) are both connected to the vehicle power supply and are powered by the vehicle power supply.