4.6 Article

Dynamic and Full-Time Acquisition Technology and Method of Ice Data of Yellow River

期刊

SENSORS
卷 22, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/s22010176

关键词

river ice; remote monitoring; air-coupled radar; temperature; flow ice density and velocity; ice thickness; water level; Yellow River

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This paper proposes a fixed-point air-coupled radar remote monitoring device for effectively monitoring the ice evolution process of the Yellow River during ice periods. The device can monitor real-time ice thickness, water level, air temperature, ice surface temperature, and other parameters, and connect them with monitoring data through video monitoring. The monitoring results show high accuracy compared to manual data.
Regarding the ice periods of the Yellow River, it is difficult to obtain ice data information. To effectively grasp the ice evolution process in the ice periods of the typical reach of the Yellow River, a fixed-point air-coupled radar remote monitoring device is proposed in this paper. The device is mainly composed of an air-coupled radar ice thickness measurement sensor, radar water level measurement sensor, temperature measurement sensor, high-definition infrared night vision instrument, remote switch control, telemetry communication machine, solar and wind power supply, lightning protection, and slewing arm steel tower. The integrated monitoring device can monitor ice thickness, water level, air temperature, ice surface temperature, and other related parameters in real time. At present, devices have obtained the ice change process of fixed points in ice periods from 2020 to 2021. Through a comparison with manual data, the mean error of the monitoring results of the water level and ice thickness was approximately 1 cm. The device realizes the real-time monitoring of ice thickness and water level change in the whole cycle at the fixed position. Through video monitoring, it can take pictures and videos regularly and realize the connection between the visual river and monitoring data. The research results provide a new model and new technology for hydrological monitoring in the ice periods of the Yellow River, which has broad application prospects.

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