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城市化对川渝地区极端气候事件的影响
引用本文:郭蕾, 李谢辉, 刘雨亭. 城市化对川渝地区极端气候事件的影响. 应用气象学报, 2023, 34(5): 574-585. DOI: 10.11898/1001-7313.20230506.
作者姓名:郭蕾  李谢辉  刘雨亭
作者单位:1.成都信息工程大学大气科学学院, 成都 610225;2.中国气象局兰州干旱气象研究所, 兰州 730020
摘    要:为探讨城市化对川渝地区极端气候事件的影响,利用1971—2020年川渝地区46个气象站的逐日气温和降水数据,以及社会经济、人口、土地利用、夜间灯光遥感数据,将气象站划分为城市站、城乡站和乡村站3类,得到近50年21个极端气候指数的时间序列,分析城市化对极端气候事件的影响和贡献率。结果表明:近50年川渝地区3类气象站极值指数和暖指数均呈上升趋势,而冷指数均呈下降趋势,极端降水量和极端降水强度均呈增加趋势。城市化影响对城乡站和城市站的最高和最低气温最小值、霜冻、热夜日数和日较差,以及城市站的冷夜和暖夜日数均影响较大,对其余指数的影响较小。城市化影响对城乡站和城市站的中雨日数、1 d和5 d最大降水量、强降水量和年降水量的贡献率均为100.00%,对城乡站大雨日数、城乡站和城市站特强降水量的贡献率较大,而对其余指数的影响相对较小。

关 键 词:极端温度指数   极端降水指数   城市化影响   城市化影响贡献率   川渝地区
收稿时间:2023-03-22
修稿时间:2023-06-25

Impacts of Urbanization on Extreme Climate Events in Sichuan-Chongqing Region
Guo Lei, Li Xiehui, Liu Yuting. Impacts of urbanization on extreme climate events in Sichuan-Chongqing region. J Appl Meteor Sci, 2023, 34(5): 574-585. DOI: 10.11898/1001-7313.20230506.
Authors:Guo Lei  Li Xiehui  Liu Yuting
Affiliation:1. School of Atmospheric Sciences, Chengdu University of Information Technology, Chengdu 610225;2. Insitute of Arid Meteorology, CMA, Lanzhou 730020
Abstract:Based on daily precipitation and temperature data as well as population, gross domestic product (GDP), land use and land cover change (LUCC), night lighting remote sensing data of 46 meteorological stations in Sichuan and Chongqing Region from 1971 to 2020, 21 extreme climate indices are calculated using RClimDex software, and the interannual variation trends of these indices are analyzed using linear trend method. The Mann-Kendall nonparametric method is used to test the significance levels of all indices. These meteorological stations are categorified to further investigate the impact of urbanization on extreme climate indices, especially the impact of urbanization on extreme climate events in Sichuan and Chongqing. It's found that the monthly maximum value of daily maximum temperature (TXx), maximum value of daily minimum temperature (TNx), minimum value of daily maximum temperature (TXn), minimum value of daily minimum temperature (TNn), summer days (SU25), occurrence of hot nights(TR20), warm nights (TN90P) and warm days (TX90P) all show an increasing trend in the last 50 years, while the frost days (FD0), cold nights (TN10P) and cold days (TX10P) show a decreasing trend, and the changes are all significant. The annual total precipitation in wet days (PRCPTOT), very heavy precipitation days (R25mm), very wet days (R95P), extremely wet days (R99P) and simple precipitation intensity index (SDII), which represent the extreme precipitation and the intensity of extreme precipitation, all show an increasing trend, indicating that the extreme high temperature and extreme precipitation in Sichuan and Chongqing Region have been increasing. The extreme indices show an increasing trend in all three types of meteorological sites. The increasing trend of TXx, TNx, TR20, TX90P and daily temperature range (DTR) are most obvious in urban stations, and FD0, TN10P, TX10P and DTR are most obvious in rural stations. Urbanization has basically no effects on TXx and TN90P at rural-urban sites, but has a greater effect on the monthly TXn, TNn, FD0, TR20 and DTR at rural and urban sites, as well as the number of TN10P and TN90P at urban sites. In Sichuan and Chongqing Region, among the rural sites, all indices show a significant increasing trend except for the monthly maximum 1-day precipitation (RX1DAY), monthly maximum 5-day precipitation (RX5DAY) and consecutive wet days (CWD), which show a non-significant decreasing trend. The influence of urbanization causes a decreasing trend in the number of heavy precipitation days (R10mm), R25mm, RX1DAY, RX5DAY, R95P and PRCPTOT in urban-rural and urban sites, and causes an increasing trend in SDII and CWD. The urbanization effects contribute 100.00% to R10mm, RX1DAY, RX5DAY, R95P and PRCPTOT for both urban-rural and urban sites.
Keywords:extreme temperature index  extreme precipitation index  urbanization impact  contribution rate of urbanization impact  Sichuan-Chongqing Region
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