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AN OPERATIONAL STATISTICAL SCHEME FOR TROPICAL CYCLONE INDUCED RAINFALL FORECAST

  • Qing-lan Li
  • , Hong-ping Lan
  • , Chung Leung Johnny CHAN
  • , Chun-yan Cao
  • , Cheng Li
  • , Xing-bao Wang

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

A non-parametric method is used in this study to analyze and predict short-term rainfall due to tropical cyclones (TCs) in a coastal meteorological station. All 427 TCs during 1953-2011 which made landfall along the Southeast China coast with a distance less than 700 km to a certain meteorological station - Shenzhen are analyzed and grouped according to their landfalling direction, distance and intensity. The corresponding daily rainfall records at Shenzhen Meteorological Station (SMS) during TCs landfalling period (a couple of days before and after TC landfall) are collected. The maximum daily rainfall (R-24) and maximum 3-day accumulative rainfall (R-72) records at SMS for each TC category are analyzed by a non-parametric statistical method, percentile estimation. The results are plotted by statistical boxplots, expressing in probability of precipitation. The performance of the statistical boxplots is evaluated to forecast the short-term rainfall at SMS during the TC seasons in 2012 and 2013. Results show that the boxplot scheme can be used as a valuable reference to predict the short-term rainfall at SMS due to TCs landfalling along the Southeast China coast.

Original languageEnglish
Pages (from-to)101-110
JournalJournal of Tropical Meteorology
Volume21
Issue number2
Publication statusPublished - Jun 2015

Funding

Foundation item: The Innovation of Science and Technology Commission of Shenzhen Municipality (JCYJ20120617115926 138); Scientific and Technological Project for Regional Meteorological Center in South China, Chinese Meteorological Administration (GRMC2012M15)

Research Keywords

  • tropical cyclone
  • rainfall forecast
  • non-parametric method
  • boxplot
  • WESTERN NORTH PACIFIC
  • PART I
  • RANGE FORECASTS
  • MODELS
  • ENSEMBLE
  • SHENZHEN
  • CLIMATE
  • TRACK

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