Reliability of X-band Dual-polarization Phased Array Radars Through Comparison with an S-band Dual-polarization Doppler Radar

被引:2
|
作者
Zhou Xin-yu [1 ]
Hu Dong-ming [2 ]
Zhang Yu [1 ]
Li Hao-wen [1 ]
Tian Cong-cong [1 ]
机构
[1] China Meteorol Adm, Guangzhou Meteorol Observ, Guangzhou 511430, Peoples R China
[2] China Meteorol Adm, Guangdong Meteorol Observ, Guangzhou 510080, Peoples R China
基金
中国国家自然科学基金;
关键词
comparative observations; mesoscale weather systems; fine structure; X-band dual-polarization phased array radar; S-band dual-polarization Doppler radar; WEATHER RADAR; STORMS;
D O I
10.46267/j.1006-8775.2022.017
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
Based on the observations of a squall line on 11 May 2020 and stratiform precipitation on 6 June 2020 from two X-band dual-polarization phased array weather radars (DP-PAWRs) and an S-band dual-polarization Doppler weather radar (CINRAD/SA-D), the data reliability of DP-PAWR and its ability to detect the fine structures of mesoscale weather systems were assessed. After location matching, the observations of DP-PAWR and CINRAD/SA-D were compared in terms of reflectivity (Z(H)), radial velocity (V), differential reflectivity (Z(DR)), and specific differential phase (K-DP). The results showed that: (1) DP-PAWR has better ability to detect mesoscale weather systems than CINRAD/SA-D; the multi-elevation-angles scanning of the RHI mode enables DP-PAWR to obtain a wider detection range in the vertical direction. (2) DP-PAWR's Z(H) and V structures are acceptable, while its sensitivity is worse than that of CINRAD/SA-D. The Z(H) suffers from attenuation and the Z(H) area distribution is distorted around strong rainfall regions. (3) DP-PAWR's Z(DR) is close to a normal distribution but slightly smaller than that of CINRAD/SA-D. The K-DP products of DP-PAWR have much higher sensitivity, showing a better indication of precipitation. (4) DP-PAWR is capable of revealing a detailed and complete structure of the evolution of the whole storm and the characteristics of particle phase variations during the process of triggering and enhancement of a small cell in the front of a squall line, as well as the merging of the cell with the squall line, which cannot be observed by CINRAD/SA-D. With its fast volume scan feature and dual-polarization detection capability, DP-PAWR shows great potential in further understanding the development and evolution mechanisms of meso-gamma-scale and microscale weather systems.
引用
收藏
页码:218 / 236
页数:19
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