Flame furnace integrated traffic meteorological monitor device

The design of the integrated traffic meteorological monitoring instrument integrates multiple types of meteorological sensors, solving the problems of discrete equipment and high cost in traditional meteorological stations. It achieves miniaturization and high-density monitoring, and supports meteorological gridding and road disaster early warning.

CN224081834UActive Publication Date: 2026-04-03NANJING BENYUAN ENVIRONMENTAL SCI & TECH RES INST CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

In the construction of existing meteorological stations, traditional sensor integration solutions for meteorological professionals suffer from problems such as discrete equipment structure, large size, high requirements for installation foundations, and high cost, which increase the construction cost of monitoring stations and make maintenance difficult, thus limiting their application in large-scale and high-density deployment.

Method used

The design of the integrated traffic meteorological monitoring instrument is based on the integration of cloud and fog imagery, ultrasonic wind speed and direction, temperature, humidity and pressure measurement modules and MCU processing module. This enables high-density monitoring of multiple meteorological elements, and the MCU processing module unifies data acquisition, analysis and transmission.

Benefits of technology

It has achieved miniaturization and integrated structure of meteorological monitoring instruments, reduced construction costs, improved installation flexibility and monitoring accuracy, supported large-scale and high-density deployment, and provided data support for meteorological gridding and road disaster early warning.

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Abstract

The utility model relates to the field of meteorological monitors, in particular to a flame furnace integrated traffic meteorological monitor device, which comprises a cloud and mist image measuring module, an ultrasonic wind speed and direction sensor measuring module, a temperature, humidity and pressure measuring module, a mounting shell and a mounting base which are sequentially connected from top to bottom. The traffic weather station is specially designed for elements required by the weather, has total element configuration required by the weather, has the advantages of being integrated in structure, small in size, light in weight, flexible and convenient to install, low in construction cost, free of construction of a large number of peripheral facilities and the like compared with a traditional traffic weather station, and can be laid and applied in a large range and high density. And a basic data support is provided for the measurement accuracy of meteorological gridding and road disaster early warning detection data.
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Description

Technical Field

[0001] This utility model relates to the field of meteorological monitoring instruments, specifically to a flame furnace integrated traffic meteorological monitoring instrument device. Background Technology

[0002] Currently, the construction of meteorological stations mainly adopts the traditional integrated measurement scheme of professional meteorological sensors. This scheme has problems such as loose sensor layout, discrete equipment structure, large equipment size, high requirements for equipment installation foundation conditions, and high equipment price and engineering construction costs. To achieve accuracy and efficiency, a large number of monitoring stations need to be built. After a large number of stations are built, the maintenance and upkeep of the monitoring stations will cause a secondary increase in costs, which limits the application and is accompanied by cost and performance waste. Therefore, it is necessary to design a flame furnace integrated traffic meteorological monitoring instrument device, which can reduce the establishment of monitoring stations and can be deployed over a large area and at high density. Utility Model Content

[0003] The purpose of this utility model is to provide an integrated traffic meteorological monitoring device for a flame furnace.

[0004] To achieve this objective, the present invention adopts the following technical solution:

[0005] An integrated traffic meteorological monitoring device is provided, comprising, from top to bottom, a cloud and fog image measurement module, an ultrasonic wind speed and direction sensor measurement module, a temperature, humidity and pressure measurement module, a mounting housing, and a mounting base. It also includes a vertical airflow measurement module mounted on the side of the mounting housing. The outer shell of the mounting housing is provided with a power supply and communication port, and an MCU processing module is fixedly installed inside the mounting housing. The power supply and communication port is connected to the MCU processing module through a power supply line and a communication line. The ultrasonic wind speed and direction sensor measurement module, the temperature, humidity and pressure measurement module, and the vertical airflow measurement module are connected to the MCU processing module through a data transmission line and a power supply line.

[0006] Furthermore, the MCU processing module includes external circuitry and a main control microcontroller.

[0007] Furthermore, the temperature, humidity and pressure measurement module is equipped with a MEMS sensor, which is used to measure air temperature, humidity and atmospheric pressure. The outer circumference of the temperature, humidity and pressure measurement module has a louver structure.

[0008] Furthermore, the power supply and communication ports use a seven-pin aviation socket.

[0009] Furthermore, the MCU processing module is equipped with a G-band wireless communication chip and an RS-band wireless communication chip.

[0010] Furthermore, the ultrasonic wind speed and direction sensor measurement module has an automatic wind direction north-pointing processor.

[0011] The beneficial effects of this utility model are as follows: This integrated traffic meteorological monitoring device is specially designed for the meteorological elements required and has all the necessary meteorological elements. Compared with traditional traffic meteorological stations, it has many advantages such as integrated structure, small size, light weight, flexible and convenient installation, low construction cost and no need to build a large number of peripheral facilities. It can be deployed and applied on a large scale and at high density, providing basic data support for the measurement accuracy of meteorological grid and road disaster early warning detection data. Attached Figure Description

[0012] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the embodiments of this utility model will be briefly introduced below.

[0013] Figure 1 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 1 ;

[0014] Figure 2 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 2 ;

[0015] Figure 3 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 3 ;

[0016] Figure 4 This is a cross-sectional view of the present invention;

[0017] In the diagram: 1. Cloud and fog image measurement module; 2. Ultrasonic wind speed and direction sensor measurement module; 3. Temperature, humidity and pressure measurement module; 4. Mounting housing; 5. Vertical airflow measurement module; 6. Mounting base; 7. Power supply and communication port. Detailed Implementation

[0018] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.

[0019] The accompanying drawings are for illustrative purposes only and are schematic diagrams, not actual images. They should not be construed as limiting the scope of this patent. To better illustrate the embodiments of this utility model, some parts in the drawings may be omitted, enlarged, or reduced, and do not represent the actual dimensions of the product.

[0020] Reference Figures 1 to 4The integrated traffic meteorological monitoring device shown includes, from top to bottom, a cloud and fog image measurement module 1, an ultrasonic wind speed and direction sensor measurement module 2, a temperature, humidity and pressure measurement module 3, a mounting housing 4, and a mounting base 6. It also includes a vertical airflow measurement module 5 mounted on the side of the mounting housing 4. A power supply and communication port 7 is provided on the outer shell of the mounting housing 4. An MCU processing module is fixedly installed inside the mounting housing 4. The power supply and communication port 7 is connected to the MCU processing module via a power supply line and a communication line. The ultrasonic wind speed and direction sensor measurement module 2, the temperature, humidity and pressure measurement module 3, and the vertical airflow measurement module 5 are connected to the MCU processing module via a data transmission line and a power supply line, with the power supply and communication port 7 handling both power and communication functions. The MCU processing module performs unified control operations such as data acquisition, data quantification, data analysis, and data transmission.

[0021] The cloud and fog image measurement module 1 achieves optimized image processing through simultaneous video compression and FTP transfer, recording and uploading the images to the cloud platform for further processing. The module operates on a 12V power supply and transmits images via RS485, 4G, or WIFI. Employing optical design principles, the module measures cloud images.

[0022] The ultrasonic wind speed and direction sensor measurement module 2 measures wind speed and direction using the ultrasonic time-of-flight method. The ultrasonic wind speed and direction sensor measurement module 2 is powered by 12V and connects to the cloud and fog image measurement module 1 via serial communication.

[0023] The temperature, humidity, and pressure measurement module 3 is used to measure air temperature, humidity, and atmospheric pressure. This module is powered by 3.3V and connects to the cloud and fog image measurement module 1 via an I2C interface.

[0024] The vertical airflow measurement module 5 uses the ultrasonic time-of-flight method to measure vertical airflow. The vertical airflow measurement module 5 is powered by 12V and is connected to the cloud and fog image measurement module 1 via analog signals.

[0025] The MCU processing module includes external circuitry and a main control microcontroller. The MCU processing module is responsible for the timing control, status monitoring, and data acquisition of some sensors or modules of the integrated meteorological monitor for the flame furnace. Finally, it transmits the result data to the data processing center in minute-by-minute intervals via 4G and RS485 communication interfaces.

[0026] The temperature, humidity, and pressure measurement module 3 is equipped with a MEMS sensor. The MEMS sensor is used to measure air temperature, humidity, and atmospheric pressure, and the outer circumference of the temperature, humidity, and pressure measurement module 3 has a louvered structure. This allows the ambient gas to come into contact with the MEMS sensor, enabling accurate measurement of these temperature, humidity, and pressure parameters.

[0027] The power supply and communication port 7 uses a seven-pin aviation socket. The seven-pin aviation socket consists of a positive power pin, a negative power pin, a 485A pin, and a 485B pin, with the remaining three pins being reserved for cables.

[0028] The MCU processing module is equipped with a 4G wireless communication chip and an RS485 communication chip. The 4G transmission can simultaneously transmit data via multiple specified IP addresses or domain names.

[0029] The ultrasonic wind speed and direction sensor measurement module 2 has an automatic wind direction north-pointing processor. Regardless of the installation angle of the integrated meteorological monitoring instrument for the flame furnace, it ensures accurate wind direction measurement.

[0030] The integrated meteorological monitoring instrument for flame furnaces is designed and developed to handle various meteorological elements such as cloud and fog images, vertical airflow, atmospheric temperature, relative humidity, atmospheric pressure, wind speed, and wind direction. It achieves miniaturization / micro-miniaturization of multiple meteorological sensors, integrated overall structure, and highly integrated circuit design, minimizing the overall size and weight of the device and enabling its widespread and high-density deployment. The integrated meteorological monitoring instrument can collect, analyze, process, and store data from different elements in real time, and then upload the data according to the data protocol. It can also remotely monitor the data of the entire system in real time, making it highly representative of the diverse needs in meteorological networking and road disaster early warning and detection research.

[0031] The integrated meteorological monitoring instrument for flame furnaces represents a technological innovation in meteorological monitoring within the current field of applied meteorology in my country. It can drive the development of meteorological monitoring technology towards miniaturization, high precision, and low power consumption.

[0032] The above are merely preferred embodiments of the present invention. It should be noted that those skilled in the art can make various improvements and modifications without departing from the technical principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.

Claims

1. Flame integrated traffic meteorological monitoring instrument device, characterized in that, It comprises cloud image measuring module (1), ultrasonic wind speed and direction sensor measuring module (2), temperature and humidity pressure measuring module (3), mounting shell (4) and mounting base (6) connected in turn from top to bottom, and it also comprises vertical air flow measuring module (5) mounted on the side of mounting shell (4), and power supply communication port (7) is arranged on the shell of mounting shell (4), and MCU processing module is fixedly arranged in the inside of mounting shell (4), power supply communication port (7) is connected with MCU processing module through power supply line and communication line, and ultrasonic wind speed and direction sensor measuring module (2), temperature and humidity pressure measuring module (3) and vertical air flow measuring module (5) are connected with MCU processing module through data transmission line and power supply line.

2. The flame integrated traffic meteorological monitor apparatus of claim 1, wherein The MCU processing module comprises an external circuit and a master control single-chip microcomputer.

3. The flame integrated traffic meteorological monitor apparatus of claim 1, wherein MEMS sensor is arranged on temperature and humidity pressure measuring module (3), and the MEMS sensor is used for measuring air temperature, humidity and atmospheric pressure, and the outer circumferential direction of temperature and humidity pressure measuring module (3) is a louver structure.

4. The flame integrated traffic meteorological monitor apparatus of claim 1, wherein The power supply communication port (7) adopts a seven-core aviation socket.

5. The flame integrated traffic meteorological monitor apparatus of claim 1, wherein A 4G transmission wireless communication chip and an RS485 transmission communication chip are arranged on the MCU processing module.

6. The flame integrated traffic meteorological monitor device of claim 1, wherein, The ultrasonic wind speed and direction sensor measuring module (2) has a wind direction automatic north processor.