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HAXPT0164

The HAXPT0164 X-band dual-polarization phased array rain radar is a new type of equipment that provides real-time or near real-time rainfall detection information for water conservancy departments. By utilizing the backscattering and Doppler effect of electromagnetic waves by water particles in the atmosphere, this radar quickly detects and acquires basic parameters such as the position, intensity, average radial velocity, and velocity spectrum width of liquid water targets in the atmosphere within a 2km vertical height around the radar. Simultaneously, utilizing the dual-polarization capabilities of this radar, it can also acquire polarization domain parameters such as differential reflectivity, differential phase, specific differential phase, and correlation coefficient, greatly improving the detection and resolution capabilities of rainfall. Its applications in water conservancy monitoring include flood monitoring, water resource management, and engineering hazard detection. It is often used in reservoirs, basins, and hydrological stations. It provides equipment support for water conservancy departments to accelerate the improvement of flood and drought disaster prevention, accelerate the advancement of hydrological modernization, further improve the national hydrological station network, promote integrated "sky-ground" monitoring, and build a "three-line defense" system for rainfall monitoring and forecasting consisting of meteorological satellites, rain radars, rain gauges, and hydrological stations, with river basins as units.



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Product Details


The HAXPT0164 X-band dual-polarization phased array rain radar is a new type of equipment that provides real-time or near real-time rainfall detection information for water conservancy departments. This radar utilizes the backscattering and Doppler effect of water particles in the atmosphere to quickly detect and obtain basic parameters such as the position, intensity, average radial velocity, and velocity spectrum width of liquid water targets in the atmosphere within a 2km vertical height around the radar. At the same time, utilizing its dual-polarization capabilities, it can also obtain polarization parameters such as differential reflectivity, differential phase, specific differential phase, and correlation coefficient, greatly improving the detection and resolution capabilities of rainfall. Its applications in water conservancy monitoring include flood monitoring, water resource management, and detection of engineering hidden dangers. Application sites are mostly located at reservoirs, basins, and hydrological stations. It provides equipment support for water conservancy departments to accelerate the improvement of their waterlogging and drought disaster prevention capabilities, accelerate the advancement of hydrological modernization, further improve the national hydrological station network, promote "sky-ground" integrated monitoring, and build a "three-line defense" system for rainfall monitoring and forecasting composed of meteorological satellites and rain radars, rain gauges, and hydrological stations, with river basins as units.

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