Urban extent enhances extreme precipitation over the Pearl River Delta, China

The relationship between urban extent and extreme precipitation over the Pearl River Delta in China is evaluated using the Tropical Rainfall Measurement Mission 3B42 precipitation product. The spatial pattern of extreme precipitation indices agrees well with that of the urban extent, with significan...

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Published inAtmospheric science letters Vol. 16; no. 3; pp. 310 - 317
Main Authors Wang, Dagang, Jiang, Peng, Wang, Guiling, Wang, Dashan
Format Journal Article
LanguageEnglish
Published Chichester, UK John Wiley & Sons, Ltd 01.07.2015
John Wiley & Sons, Inc
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Abstract The relationship between urban extent and extreme precipitation over the Pearl River Delta in China is evaluated using the Tropical Rainfall Measurement Mission 3B42 precipitation product. The spatial pattern of extreme precipitation indices agrees well with that of the urban extent, with significant and positive spatial correlation between the two. The correlation is stronger for extreme indices at shorter temporal scales than for those at longer temporal scales. For example, the coefficient of correlation with the natural logarithm of urban extent is 0.42 for the maximum consecutive 5‐day precipitation amount and reaches 0.74 for the maximum consecutive 3‐h precipitation amount.
AbstractList The relationship between urban extent and extreme precipitation over the Pearl River Delta in China is evaluated using the Tropical Rainfall Measurement Mission 3B42 precipitation product. The spatial pattern of extreme precipitation indices agrees well with that of the urban extent, with significant and positive spatial correlation between the two. The correlation is stronger for extreme indices at shorter temporal scales than for those at longer temporal scales. For example, the coefficient of correlation with the natural logarithm of urban extent is 0.42 for the maximum consecutive 5‐day precipitation amount and reaches 0.74 for the maximum consecutive 3‐h precipitation amount.
The relationship between urban extent and extreme precipitation over the Pearl River Delta in China is evaluated using the Tropical Rainfall Measurement Mission 3B42 precipitation product. The spatial pattern of extreme precipitation indices agrees well with that of the urban extent, with significant and positive spatial correlation between the two. The correlation is stronger for extreme indices at shorter temporal scales than for those at longer temporal scales. For example, the coefficient of correlation with the natural logarithm of urban extent is 0.42 for the maximum consecutive 5-day precipitation amount and reaches 0.74 for the maximum consecutive 3-h precipitation amount.
Author Wang, Dashan
Wang, Dagang
Wang, Guiling
Jiang, Peng
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  fullname: Jiang, Peng
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  fullname: Wang, Guiling
  organization: University of Connecticut
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  givenname: Dashan
  surname: Wang
  fullname: Wang, Dashan
  organization: Sun Yat‐sen University
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  doi: 10.1175/JHM560.1
– ident: e_1_2_6_9_1
  doi: 10.1080/13658816.2011.635594
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Snippet The relationship between urban extent and extreme precipitation over the Pearl River Delta in China is evaluated using the Tropical Rainfall Measurement...
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wiley
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SubjectTerms Atmospheric precipitations
Atmospheric sciences
Correlation
correlation coefficient
Datasets
extreme precipitation
Extreme weather
Heat
Pearl River Delta
Precipitation
Rain
Rainfall
Rainfall measurement
Rivers
Studies
Tropical climate
Tropical rainfall
urban extent
Urbanization
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Title Urban extent enhances extreme precipitation over the Pearl River Delta, China
URI https://onlinelibrary.wiley.com/doi/abs/10.1002%2Fasl2.559
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