Linking Polarimetric Radar Signatures and Raindrop Size Distribution Characteristics in Heavy‐Rainfall‐Producing Convection
ID:20 View Protection:ATTENDEE Updated Time:2026-07-31 21:37:32 Hits:0 Poster Presentation

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Abstract
Based on three years of summertime radar observations in East China, this study quantifies the relationship between polarimetric radar signatures (PRSs) and retrieved raindrop size distributions (RSDs) in heavy-rainfall-producing convection. Multiple PRSs, including the 30-dBZ and 40-dBZ echo-tops, the integrated intensities of ZDR  and KDP  columns, the maximum graupel and hail (GH) height, as well as the changes in ZH  and ZDR within the warm-cloud layer, can to some extent indicate the mean raindrop size, number concentration, and rain rate at the low level (1-km level). A Multi-Layer Perceptron (MLP) model is designed and trained to preliminarily predict these RSD parameters using the PRSs as inputs. These RSD parameters are generally reproduced and the correlations between predicted and observed values are above 0.8. The study clearly demonstrates the quantitative constraints of PRSs on low-level RSDs in heavy-rainfall-producing convection. Such microphysical constraints have potential applications for polarimetric radar in the prediction of RSDs and rainfall intensity.
Keywords
Polarimetric Radar,Raindrop Size Distribution,Heavy‐Rainfall
Speaker
CHENGANG
高工 中国气象局

Submission Author
CHENGANG 中国气象局
WENLONG Peking University
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Important Date
  • Conference Date

    Aug 12

    2026

    to

    Aug 15

    2026

  • Aug 05 2026

    Draft paper submission deadline

  • Aug 12 2026

    Registration deadline

Sponsored By
成都信息工程大学
Organized By
成都信息工程大学
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