Spatio-temporal characteristics of crop drought in southern China based on drought index of continuous days without available precipitation

被引:0
|
作者
机构
[1] [1,Huang, Wanhua
[2] 2,Sui, Yue
[3] Yang, Xiaoguang
[4] 2,Dai, Shuwei
[5] 2,Qu, Huihui
[6] Li, Maosong
来源
Yang, X. (yangxg@cau.edu.cn) | 1600年 / Chinese Society of Agricultural Engineering卷 / 30期
关键词
Continuous days without available precipitation (Dnp) - Daily drought frequency - Distribution characteristics - Drought classifications - Meteorological station - Middle and lower reaches of yangtze rivers - Southern China - Spatiotemporal characteristics;
D O I
10.3969/j.issn.1002-6819.2014.04.016
中图分类号
学科分类号
摘要
This study was based on daily precipitation data from standard meteorological stations in the 15 provinces (municipalities, or autonomous regions) in southern China. We adopted continuous days without available precipitation (Dnp) as drought index, also improved the critical values of available precipitation and drought classification standard during the data process, then calculated drought index values for crop (spring sowing-summer harvesting crop, spring sowing-autumn harvesting crop, summer sowing-autumn harvesting crop, and overwintering crop) during the most recent 50 years (from 1959 to 2009) in southern China. We analyzed the spatial distribution characteristics and inter-annual variation of crop drought frequency and crop drought duration days. In addition, we introduced daily drought frequency to study dynamic change of crop drought during the growing period. The results showed: spring sowing-summer harvesting crop drought occurred sometimes in the west of Southwest China and part of Huaibei Area during spring; spring sowing-autumn harvesting crop drought often affected the middle and lower reaches of Yangtze River, as well as the northeast of South China and the east of Southwest China during summer and autumn; summer sowing-autumn harvesting crop drought often occurred in the middle and lower reaches of Yangtze River during autumn, as well as the east and north of South China; overwintering crop drought took place in the north of Yangtze River and South China during autumn and spring, especially drought occurred frequently in the west of Southwest China during autumn to next spring. Generally, the distribution of drought duration days without available precipitation was basically consistent with the distribution of drought frequency, which meant drought lasted relatively longer in drought-prone area. The characteristics of drought change trend in southern China showed that: spring sowing-summer harvesting crop drought showed a decreasing trend in covering area as well as a reducing trend in intensity; spring sowing-autumn harvesting crop drought showed a slightly increasing trend in covering area yet a slightly reducing trend in intensity; summer sowing-autumn harvesting crop drought showed a significantly increasing trend in covering area and a slightly increasing trend in intensity with an exception of the Southwest China showing a reducing trend in intensity; overwintering crop drought showed a relatively more significantly increasing trend in covering area and an reducing trend in intensity with an exception of South China showing a increasing trend in intensity. From the perspective of daily drought frequency, early spring in the south and west of South China as well as the north of Yangtze River, together with spring in the west of Southwest China, showed a relatively higher drought frequency, hence affected spring sowing crops; midsummer drought in July and August in the middle and lower reaches of Yangtze River, autumn drought in September and October in South China, together with midsummer and autumn drought in the east of Southwest China mainly affected autumn harvesting crops; overwintering crop showed a relatively higher drought frequency in the whole study area, and the main drought period was in autumn and wintering period, however, early spring in the north of Yangtze River, as well as the south of South China, and Southwest China showed a relatively higher drought frequency.
引用
收藏
相关论文
共 50 条
  • [41] Spatio-temporal evolution trend of groundwater drought and its dynamic response to meteorological drought in Northwest China
    Su, Xiaoling
    Chu, Jiangdong
    Zhang, Te
    Jiang, Tianliang
    Wang, Guanzhi
    Water Resources Protection, 2022, 38 (01): : 34 - 42
  • [42] Spatio-Temporal Drought Assessment Using Standardized Precipitation Evapotranspiration Index (SPEI) over Mantaro Valley, Peru
    Ruedas, Del Piero R. Arana
    Guerra, Laura Soto
    Popli, Kanchan
    Madaki, Saadatu Gambo
    REVISTA INVESTIGACIONES ALTOANDINAS-JOURNAL OF HIGH ANDEAN RESEARCH, 2023, 25 (03): : 159 - 170
  • [43] Construction of 3D drought structures of meteorological drought events and their spatio-temporal evolution characteristics
    Wen, Xin
    Tu, Yu-hong
    Tan, Qiao-feng
    Li, Wen-yi
    Fang, Guo-hua
    Ding, Zi-yu
    Wang, Zhen-ni
    JOURNAL OF HYDROLOGY, 2020, 590
  • [44] Monitoring spatio-temporal pattern of drought stress using integrated drought index over Bundelkhand region, India
    N. R. Patel
    Kamana Yadav
    Natural Hazards, 2015, 77 : 663 - 677
  • [45] Monitoring spatio-temporal pattern of drought stress using integrated drought index over Bundelkhand region, India
    Patel, N. R.
    Yadav, Kamana
    NATURAL HAZARDS, 2015, 77 (02) : 663 - 677
  • [46] SPATIO-TEMPORAL VARIATION OF PRECIPITATION AND DROUGHT IN SOUTHWEST GUIZHOU AUTONOMOUS PREFECTURE OF CHINA DURING 1961-2015
    Yang, Xu
    Shao, Xiaohou
    Mao, Xinyu
    Ponce, Alejandro Perez
    Li, Xiuneng
    Guang, Jianfang
    Ding, Fuzhang
    Yuan, Youbo
    Liu, Jinhua
    FRESENIUS ENVIRONMENTAL BULLETIN, 2019, 28 (12): : 9458 - 9470
  • [47] Interdecadal Variation of the Number of Days with Drought in China Based on the Standardized Precipitation Evapotranspiration Index (SPEI)
    Wang, Zunya
    Zhang, Qiang
    Sun, Shao
    Wang, Pengling
    JOURNAL OF CLIMATE, 2022, 35 (06) : 2003 - 2018
  • [48] Uncertainties of gridded precipitation observations in characterizing spatio-temporal drought and wetness over Vietnam
    Vu, Tue M.
    Raghavan, Srivatsan V.
    Liong, Shie-Yui
    Mishra, Ashok K.
    INTERNATIONAL JOURNAL OF CLIMATOLOGY, 2018, 38 (04) : 2067 - 2081
  • [49] Spatio-temporal analysis of precipitation, temperature and drought from 1985 to 2020 in Penang, Malaysia
    Tan, Mou Leong
    Zhang, Fei
    Derek, Chan Juinn Chieh
    Yu, Kok Hwa
    Shaharudin, Shazlyn Milleana
    Chan, Ngai Weng
    Rahim, Asyirah Abdul
    WATER SUPPLY, 2022, 22 (05) : 4757 - 4768
  • [50] Spatio-Temporal Change of Drought and Flood in northern Henan Province During 1961-2015 Based on Standardized Precipitation Evapotranspiration Index
    Shan, Xin-Meng
    Li, Zhi-Guo
    Wen, Jia-Hong
    2018 9TH INTERNATIONAL CONFERENCE ON ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2018, 182