上海青浦CINRAD/SAD雷達和南匯WSR-88D雷達數據對比分析
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華東區域氣象科技協同創新基金項目(QYHZ202101,QYHZ202105,QYHZ202314)資助


Comparative Analysis of Shanghai Qingpu CINRAD/SAD Radar and Nanhui WSR-88D Radar Data
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    摘要:

    上海青浦CINRAD/SAD雷達和南匯WSR88D雷達型號不同,并且采用不同的雙偏振技術升級方案,實際業務運行中2部雷達存在一定的數據偏差。為了對雷達的探測性能進行定量評估,在共同探測區域遴選2022年7—9月及2023年6月共30個過程3933個時次數據,以穩定性降水與對流性降水分類并按強度分級進行對比,評估了反射率因子ZH,差分反射率ZDR,相關系數CC和差分傳播相移ΦDP的水平分布特征及隨方位變化趨勢,雷達靈敏度隨仰角變化趨勢以及ZH和ZDR偏差的定量統計。結果表明:2部雷達ZH的觀測結果接近,青浦CINRAD/SAD雷達的ZH,CC和ΦDP受地物及避雷針影響較大,隨方位變化不穩定,青浦CINRAD/SAD雷達在低層的非氣象回波濾除效果較南匯WSR88D雷達差。2部雷達ZH和ZDR的偏差在ZH大于40 dBz的區域較大,ZH平均偏差為0.9 dB,ZDR為-0.14 dB。本文基于臺風、冰雹、短時強降水和梅雨降水數據,定量化評估了上海2部S波段雙偏振天氣雷達數據之間的差異,為后續算法改進以及數據訂正提供參考。

    Abstract:

    The Qingpu CINRAD/SAD radar and the Nanhui WSR88D radar, located in Shanghai, are of different models, and different dualpolarisation technology upgrade schemes are adopted, so there is a certain data deviation between the two radars in actual business operation. In order to quantitatively evaluate the detection performance of the radars, analyse the main sources of differences in radar data, and improve the application of the data of the two radars in business forecasting, algorithm research and other aspects, a total of 3933 times of data in 30 processes are selected in the common detection area from July to September 2022 and June 2023. The data set includes typical weather processes such as hail, typhoons, and plum rains. The data are divided into stable precipitation and convective precipitation, and are compared according to intensity classification. We mainly use the data space matching method based on radars at different positions, the horizontal structure of reflectivity (ZH), differential reflectivity (ZDR), correlation coefficient (CC) and differential phase shift (ΦDP) and their variation trend with azimuth, the variation trend of radar sensitivity with elevation and the quantitative statistics of ZH and ZDR deviation for evaluation. The results show that the ZH observations of the two radars are close to each other. The ZDR, CC and ΦDP of the Qingpu CINRAD/SAD radar are more affected by the ground features and lightning rods, and are unstable with the change of azimuth, meanwhile, the nonmeteorological echo filtering effect of the Qingpu CINRAD/SAD radar is worse than that of the Nanhui WSR88D radar in the lower layers. The Nanhui 88D radar utilises azimuth superresolution technology to obtain a more refined echo structure. The Nanhui 88D radar only installs a lightning rod on the top of the radome, which is basically not affected by the lightning rod. The radar parameters are more stable as the azimuth changes. The deviation of ZH and ZDR of the two radars is larger in the area where the ZH is greater than 40 dBz. For stable precipitation of 15-25 dBz, the deviations of the ZH and ZDR of the two radars are small. Through calculation, the average deviation of ZH is 0.9 dB and ZDR is -0.14 dB. Based on the data of typhoon, hail, shortduration heavy precipitation and Meiyu precipitation, we quantitatively evaluate the differences between the two Sband dual polarisation weather radars in Shanghai from different aspects, providing a reference for subsequent algorithm improvements and data correction.

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李哲,尹春光,鄭杰,劉超.上海青浦CINRAD/SAD雷達和南匯WSR-88D雷達數據對比分析[J].氣象科技,2024,52(2):173~185

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  • 收稿日期:2023-08-20
  • 定稿日期:2023-11-28
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  • 在線發布日期: 2024-04-29
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