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Retrieval of snow precipitation rate from polarimetric X-band radar measurements in Southern Italy Apennine mountains

机译:从南部南部南部南部北部偏振X波段雷达测量的雪降水率检索

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摘要

Recently, the interest on snowfall remote sensing and quantitative precipitation estimation is becoming a popular topic by both the scientific and operational communities. As a matter of fact, snow plays a key role in the hydrological cycle and Earth energy budget and clearly represents a meteorological hazard that can seriously compromise human activities and properties. In this study, we used a dual-polarization X-band weather radar to quantify the near-surface liquid equivalent snowfall rate, proposing a new parameterization based on the use of radar reflectivity factor and specific differential phase shift. This effort adds to several recent works, mainly focused on S-band weather radar systems, demonstrating that the use of the radar specific differential phase shift (K-dp) is able to enhance the estimation precision with respect to the more customary approaches making use of radar reflectivity factor alone. To demonstrate this concept also at X-band, some case studies were collected from December 2018 to May 2019 in the Southern Apennine Mountains in the area of Naples (Italy). They were used to compare the proposed radar based liquid equivalent snowfall rate estimations, based on Z and K-dp with reference laser-optical disdrometer time series collected in the close reference site of Montevergine observatory. Findings show that also at X band the use of K-dp produces a better score between the radar-derived liquid equivalent snowfall rate and the reference one from the disdrometer.
机译:最近,对降雪遥感和定量降水估计的兴趣正由科学和运营社区成为一个流行的话题。事实上,雪在水文循环和地球能量预算中发挥着关键作用,并且清楚地代表了可能严重损害人类活动和性质的气象危害。在这项研究中,我们使用了双极化X频段天气雷达来量化近表面液体等效降雪率,提出了基于雷达反射率因子和特定差分相移的新参数化。这项努力增加了几个最近的作品,主要集中在S频段天气雷达系统上,证明使用雷达特定差分相移(K-DP)能够提高估计精度,相对于使用的惯用方法更加习惯单独雷达反射率因子。为了展示X频段的概念,从2018年12月到2019年5月在那不勒斯(意大利)的南部亚平洋山脉中收集了一些案例研究。它们用于比较基于Z和K-DP的基于雷达基于雷达的液体等效降雪率估计,其参考激光 - 光学抑菌时间序列在MonteVergine天文台的关闭参考现场收集。研究结果表明,在X频带中,K-DP的使用在雷达衍生的液体等效降雪率和来自Disfrometer的基准中产生了更好的分数。

著录项

  • 来源
    《Atmospheric research》 |2020年第5期|104796.1-104796.9|共9页
  • 作者单位

    Univ Naples Parthenope Ctr Direz Napoli Dept Sci & Technol I-80143 Naples Italy|Inst Atmospher Sci & Climate ISAC Area Ric Tor Vergata ARTOV Via Fosso Cavaliere 100 I-00133 Rome Italy;

    Inst Atmospher Sci & Climate ISAC Area Ric Tor Vergata ARTOV Via Fosso Cavaliere 100 I-00133 Rome Italy|Univ Aquila Ctr Excellence Telesensing Environm & Model Predi Via Vetoio I-67100 Laquila Italy;

    Inst Atmospher Sci & Climate ISAC Area Ric Tor Vergata ARTOV Via Fosso Cavaliere 100 I-00133 Rome Italy|Univ Bologna Dept Phys & Astron Bologna Italy;

    Inst Atmospher Sci & Climate ISAC Area Ric Tor Vergata ARTOV Via Fosso Cavaliere 100 I-00133 Rome Italy;

    Inst Atmospher Sci & Climate ISAC Area Ric Tor Vergata ARTOV Via Fosso Cavaliere 100 I-00133 Rome Italy;

    Presidency Council Ministers Dept Civil Protect Via Vitorchiano 4 I-00189 Rome Italy;

    Univ Naples Parthenope Ctr Direz Napoli Dept Sci & Technol I-80143 Naples Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Weather radar; X-band; Snowfall; Dual polarization; Disdrometer;

    机译:天气雷达;X波段;降雪;双极化;抑菌计;

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