Arid Zone Research ›› 2021, Vol. 38 ›› Issue (6): 1601-1613.doi: 10.13866/j.azr.2021.06.12
• Weather and Climate • Previous Articles Next Articles
LI Ruiqing1(),SONG Guiying1(),YIN Chun2
Received:
2021-03-25
Revised:
2021-05-24
Online:
2021-11-15
Published:
2021-11-29
Contact:
Guiying SONG
E-mail:liruiqing217@126.com;sguiying@163.com
LI Ruiqing,SONG Guiying,YIN Chun. Characteristics of summer climate change and its response to El Niño in Inner Mongolia during the past 60 years[J].Arid Zone Research, 2021, 38(6): 1601-1613.
Add to citation manager EndNote|Reference Manager|ProCite|BibTeX|RefWorks
Tab. 1
EP and CP El Nino events and the decaying summer precipitation and temperature anomalies during 1961-2020"
东部型 | 中部型 | ||||||
---|---|---|---|---|---|---|---|
序号 | 起止年月 | 降水距平百分率/% | 气温/℃ | 序号 | 起止年月 | 降水距平百分率/% | 气温/℃ |
1 | 1965-05—1966-01 | 7.09 | -0.69 | 1 | 1994-07—1995-05 | 11.92 | -0.35 |
2 | 1972-06—1973-02 | 15.46 | -0.57 | 2 | 2002-04—2003-04 | 7.47 | -0.62 |
3 | 1976-07—1977-02 | 16.37 | -0.82 | 3 | 2004-07—2005-04 | -22.76 | 0.91 |
4 | 1982-08—1983-08 | 0.50 | -1.15 | 4 | 2009-10—2010-04 | -40.63 | 1.57 |
5 | 1986-11—1987-12 | 8.86 | 0.10 | 5 | 2018-08—2019-02 | 10.57 | 0.27 |
6 | 1991-11—1992-05 | 12.31 | -1.07 | 6 | 2019-06—2020-04 | 5.44 | 0.59 |
7 | 1997-06—1998-06 | 39.12 | -0.40 | ||||
8 | 2006-09—2007-01 | -13.35 | 1.35 | ||||
9 | 2014-11—2016-03 | 2.82 | 0.83 | ||||
平均 | 9.91 | -0.27 | 平均 | -4.67 | 0.40 |
[1] | 高涛, 肖苏君, 乌兰. 近47年(1961—2007年)内蒙古地区降水和气温的时空变化特征[J]. 内蒙古气象, 2009, 33(1):3-7, 49. |
[ Gao Tao, Xiao Sujun, Wu Lan. Temporal-spatial characteristics of precipitation and temperature in Inner Mongolia for the last 47 years(1961-2007)[J]. Meteorology Journal of Inner Mongolia, 2009, 33(1):3-7, 49. ] | |
[2] | 马爱华, 岳大鹏, 赵景波, 等. 近60 a来内蒙古极端降水时空变化及其影响[J]. 干旱区研究, 2020, 37(1):74-85. |
[ Ma Aihua, Yue Dapeng, Zhao Jingbo, et al. Spatiotemporal variation and effect of extreme precipitation in Inner Mongolia in recent 60 years[J]. Arid Zone Research, 2020, 37(1):74-85. ] | |
[3] | 春兰, 秦福莹, 宝鲁, 等. 近55 a内蒙古极端降水指数时空变化特征[J]. 干旱区研究, 2019, 36(4):963-972. |
[ Chun Lan, Qin Fuying, Bao Lu, et al. Spatiotemporal variation of extreme precipitation indices in Inner Mongolia in recent 55 years[J]. Arid Zone Research, 2019, 36(4):963-972. ] | |
[4] | 吴英杰, 李玮, 王文君, 等. 基于降水量距平百分率的内蒙古地区干旱特征[J]. 干旱区研究, 2019, 36(4):943-952. |
[ Wu Yingjie, Li Wei, Wang Wenjun, et al. Drought characteristics in Inner Mongolia based on precipitation anomaly percentage[J]. Arid Zone Research, 2019, 36(4):943-952. ] | |
[5] | 任志艳, 延军平, 王鹏涛. 1960—2012年内蒙古降水集中度和降水集中期时空变化[J]. 中国沙漠, 2016, 36(3):760-766. |
[ Ren Zhiyan, Yan Junping, Wang Pengtao. Spatio-temporal variations of precipitation concentration degree and precipitation concentration period in Inner Mongolia[J]. Journal of Desert Research, 2016, 36(3):760-766. ] | |
[6] | 庞波, 毛文书, 张禄英. 近50年内蒙古夏季降水气候特征分析[J]. 成都信息工程大学学报, 2019, 34(4):428-434. |
[ Pang Bo, Mao Wenshu, Zhang Luying. Climatic characteristics of summer precipitation are studied in Inner Mongolia in recent 50 years[J]. Journal of Chengdu University of Information Technology, 2019, 34(4):428-434. ] | |
[7] | 高晶. 内蒙古夏季降水变化特征及其影响因子的研究[D]. 南京: 南京信息工程大学, 2013. |
[ Gao Jin. Analysis on the Variation Characteristics and the Influencing Factors of the Summer Precipitation in Inner Mongolia[D]. Nanjing: Nanjing University of Information Science & Technology, 2013. ] | |
[8] | 李瑞青, 吕世华, 韩博. 10个CMIP5模式对亚澳季风环流及其变率的模拟[J]. 热带气象学报, 2013, 29(5):749-758. |
[ Li Ruiqing, Lyu Shihua, Han Bo. Simulations of Asian-Australian monsoon circulation and variability by 10 CMIP5 models[J]. Journal of Tropical Meteorology, 2013, 29(5):749-758. ] | |
[9] |
Li Ruiqing, Lyu Shihua, Han Bo, et al. Projections of South Asian summer monsoon precipitation based on 12 CMIP5 models[J]. International Journal of Climatology, 2016, 37(1):94-108.
doi: 10.1002/joc.2017.37.issue-1 |
[10] |
Li Ruiqing, Lyu Shihua, Han Bo, et al. Connections between the South Asian summer monsoon and the tropical sea surface temperature in CMIP5[J]. Journal of Meteorological Research, 2015, 29(1):106-118.
doi: 10.1007/s13351-014-4031-5 |
[11] |
Liu Yanju, Ding Yihui, Song Yafang, et al. Climatological characteristics of the moisture budget and their anomalies over the joining area of Asia and the Indian-Pacific Ocean[J]. Advances in Atmospheric Sciences, 2009, 26(4):642-655.
doi: 10.1007/s00376-009-9010-x |
[12] | 范伶俐, 徐峰, 徐华, 等. 春季/夏季型El Nino对中国夏季降水变化的影响[J]. 大气科学学报, 2018, 41(6):819-828. |
[ Fan Lingli, Xu Feng, Xu Hua, et al. Spring and summer El Nino events and their influences on summer precipitation in China[J]. Journal of Nanjing Institute of Meteorology, 2018, 41(6):819-828. ] | |
[13] |
Chang C P, Zhang Y S, Li Tim. Interannual and interdecadal variations of the East Asian summer monsoon and tropical Pacific SSTs. Part I: Roles of the subtropical ridge[J]. Journal of Climate, 2000, 13(24):4310-4325.
doi: 10.1175/1520-0442(2000)013<4310:IAIVOT>2.0.CO;2 |
[14] |
Wang Yi, Yan Zhongwei. Changes of frequency of summer precipitation extremes over the Yangtze River in association with large-scale Oceanic-atmospheric conditions[J]. Advances in Atmospheric Sciences, 2011, 28(5):1118-1128.
doi: 10.1007/s00376-010-0128-7 |
[15] | Ren Hongli, Jin Feifei. Nino indices for two types of ENSO[J]. Geophysical Research Letters, 2011, 38(4):L04704. |
[16] | 张人禾, 闵庆烨, 苏京志. 厄尔尼诺对东亚大气环流和中国降水年际变异的影响: 西北太平洋异常反气旋的作用[J]. 中国科学: 地球科学, 2017, 47(5):544-553. |
[ Zhang Renhe, Min Qingye, Su Jingzhi. Impact of El Niño on atmospheric circulations over East Asia and rainfall in China: Role of the anomalous western North Pacific anticyclone[J]. Science China Earth Sciences, 2017, 47(5):544-553. ] | |
[17] |
Feng Juan, Chen Wen, Tam C Y, et al. Different impacts of El Nino and El Nino Modoki on China rainfall in the decaying phases[J]. International Journal of Climatology, 2011, 31(14):2091-2101.
doi: 10.1002/joc.v31.14 |
[18] |
Li Xiuzhen, Zhou Wen, Chen Deliang, et al. Water vapor transport and moisture budget over Eastern China: Remote forcing from the two types of El Nino[J]. Journal of Climate, 2014, 27(23):8778-8792.
doi: 10.1175/JCLI-D-14-00049.1 |
[19] | 吴萍, 丁一汇, 柳艳菊. 厄尔尼诺事件对中国夏季水汽输送和降水分布影响的新研究[J]. 气象学报, 2017, 75(3):371-383. |
[ Wu Ping, Ding Yihui, Liu Yanju. A new study of E1 Nino impacts on summertime water vapor transport and rainfall in China[J]. Acta Meteorologica Sinica, 2017, 75(3):371-383. ] | |
[20] | 张人禾. El Nino盛期印度夏季风水汽输送在我国华北地区夏季降水异常中的作用[J]. 高原气象, 1999, 18(4):567-574. |
[ Zhang Renhe. The role of Indian summer monsoon water vapor transportation on the summer rainfall anomalies on the Northern part of China during the El Nino mature phase[J]. Plateau Meteorology, 1999, 18(4):567-574. ] | |
[21] | 白小娟, 赵景波. 厄尔尼诺/拉尼娜事件对内蒙古自治区气候的影响[J]. 水土保持通报, 2012, 32(6):245-249. |
[ Bai Xiaojuan, Zhao Jingbo. Effects of El Nino/La Nina events on climate in Inner Mongolia autonomous region[J]. Bulletin of Soil and Water Conservation, 2012, 32(6):245-249. ] | |
[22] |
贾艳青, 张勃. 1960—2017年中国北方气候干湿变化及其与ENSO的关系[J]. 地理科学, 2020, 40(12):2115-2124.
doi: 10.13249/j.cnki.sgs.2020.12.018 |
[ Jia Yanqing, Zhang Bo. Correlation analysis of variation of dry-wet climate and ENSO in Northern China during 1960-2017[J]. Scientia Geographica Sinica, 2020, 40(12):2115-2124. ]
doi: 10.13249/j.cnki.sgs.2020.12.018 |
|
[23] | 徐洁, 王舒, 肖高翔. 不同分型厄尔尼诺事件对新疆汛期降水的影响[J]. 沙漠与绿洲气象, 2016, 10(3):53-58. |
[ Xu Jie, Wang Su, Xiao Gaoxiang. El Nino events of different types and their impact on the flood season precipitation in Xinjiang[J]. Desert and Oasis Meteorology, 2016, 10(3):53-58. ] | |
[24] | 赵煜飞, 朱江, 许艳. 近50 a中国降水格点数据集的建立及质量评估[J]. 气象科学, 2014, 34(4):414-420. |
[ Zhao Yufei, Zhu Jiang, Xu Yan. Establishment and assessment of the grid precipitation datasets in China for recent 50 years[J]. Journal of the Meteorological Sciences, 2014, 34(4):414-420. ] | |
[25] |
Huang Boyin, Thorne Peter W, Banzon Viva F, et al. Extended reconstructed sea surface temperature version 5(ERSSTv5), upgrades, validations, and intercomparisons[J]. Journal of Climate, 2017, 30(20):8179-8205.
doi: 10.1175/JCLI-D-16-0836.1 |
[26] |
Wang Huijun. The instability of the East Asian summer monsoon-ENSO relations[J]. Advances in Atmospheric Sciences, 2002, 19(1):1-11.
doi: 10.1007/s00376-002-0029-5 |
[27] | 李维京. 1998年大气环流异常及其对中国气候异常的影响[J]. 气象, 1999, 25(4):21-26, 58. |
[ Li Weijing. General atmospheric circulation anomaly in 1998 and their impact on climate anomaly in China[J]. Meteorological Monthly, 1999, 25(4):21-26, 58. ] | |
[28] |
Yuan Yuan, Yang Song. Impacts of different types of El Nino on the East Asian climate: Focus on ENSO cycles[J]. Journal of Climate, 2012, 25(21):7702-7722.
doi: 10.1175/JCLI-D-11-00576.1 |
[29] |
Xie Shangping, Kosaka Yu, Du Yan, et al. Indo-western Pacific ocean capacitor and coherent climate anomalies in post-ENSO summer: A review[J]. Advances in Atmospheric Sciences, 2016, 33(4):411-432.
doi: 10.1007/s00376-015-5192-6 |
[30] |
Zhang Renhe. Relations of water vapor transport from Indian Monsoon with that over East Asia and the summer rainfall in China[J]. Advances in Atmospheric Sciences, 2001, 18(5):1005-1017.
doi: 10.1007/BF03403519 |
[31] | 杨洁凡. 欧亚遥相关型对印度夏季风与华北夏季降水关系的影响[D]. 南京: 南京信息工程大学, 2019. |
[ Yang Jiefan. Effect on the Relationship between Indian Summer Monsoon and North China Summer Rainfall by Eurasian Teleconnection[D]. Nanjing: Nanjing University of Information Science & Technology, 2019. ] | |
[32] |
Xie Shangping, Hu Kaiming, Hafner Jan, et al. Indian Ocean capacitor effect on Indo-Western Pacific climate during the summer following El Nino[J]. Journal of Climate, 2009, 22(3):730-747.
doi: 10.1175/2008JCLI2544.1 |
[33] | 杨金虎, 张强, 刘晓云, 等. 中国典型夏季风影响过渡区夏季降水异常时空特征及成因分析[J]. 地球物理学报, 2019, 62(11):4120-4128. |
[ Yang Jinhu, Zhang Qiang, Liu Xiaoyun, et al. Spatial-temporal characteristics and causes of summer precipitation anomalies in the transitional zone of typical summer monsoon, China[J]. Chinese Journal of Geophysics, 2019, 62(11):4120-4128. ] | |
[34] | 姬凯, 王士新, 左洪超, 等. 东亚副热带急流经向位置对中国西北东部盛夏降水的影响[J]. 干旱区研究, 2020, 37(1):10-17. |
[ Ji Kai, Wang Shixin, Zuo Hongchao, et al. Effect of meridional position of East Asian subtropical jet on midsummer precipitation in eastern part of Northwest China[J]. Arid Zone Research, 2020, 37(1):10-17. ] |
[1] | LI Yuhang, YU Wenxue, YANG Yongjun, ZHU Yanfeng, MA Jing, CHEN Fu. Spatio-temporal variation and attribution identification of natural runoff in the northern slope economic belt of Tianshan Mountains during the past 60 years [J]. Arid Zone Research, 2024, 41(9): 1446-1455. |
[2] | LU Wenjing, QU Deye, YANG Mingyue, HUANG Hanlin, YANG Shanquan. GCM-based stable isotope modelling of precipitation in the Mongolian Plateau [J]. Arid Zone Research, 2024, 41(9): 1491-1502. |
[3] | XIE Gang, WANG Tiantian, YU Tao, DONG Jingwei, CHEN Shiqiang, WANG Mengxiao, ZHANG Shengjie, ZHANG Haoming. A preliminary study on the evolution of water temperature in the estuary of the Qinghai Lake [J]. Arid Zone Research, 2024, 41(9): 1503-1513. |
[4] | YUAN Zheng, ZHANG Zhigao, YAN Jin, LIU Jiayi, HU Zhuyu, WANG Yun, CAI Maotang. Spatiotemporal characteristics of different grades of precipitation in Yellow River Basin from 1960 to 2020 [J]. Arid Zone Research, 2024, 41(8): 1259-1271. |
[5] | LI Chao, LONG Xiao, CAO Yiqing, HAN Zifei, WANG Hao, ZHENG Jingyuan. Ideal numerical tests of topographic precipitation around the Helan Mountain under different wind field structures [J]. Arid Zone Research, 2024, 41(8): 1272-1287. |
[6] | WANG Dai, LI Xin, ZHANG Wen, MA Yang, WANG Suyan, LI Jiayao. Synergistic effects of sea surface temperature and sea ice on the anomalous characteristics of precipitation distribution during the flood season in Ningxia [J]. Arid Zone Research, 2024, 41(8): 1288-1299. |
[7] | LYU Zhuangzhuang, QIAO Qingqing, DONG Sunyi, WANG Dong. Paleoclimatic evolution and driving mechanisms in arid areas of inland Asia during the Middle Miocene Climatic Optimum in the context of global climate warming [J]. Arid Zone Research, 2024, 41(8): 1309-1322. |
[8] | SHI Tianyi, ZHANG Mengmeng, PU Yang, LIU Shuoyuan. Changes in NDVI and its multiscale spatiotemporal responses to precipitation in the Mu Us Desert [J]. Arid Zone Research, 2024, 41(8): 1395-1404. |
[9] | YANG Xiaoling, ZHOU Hua, CHEN Jing, ZHAO Huihua, WU Wen. Temperature in different climate states and their influence on climate evaluation in the Hexi Corridor Eastern [J]. Arid Zone Research, 2024, 41(7): 1089-1098. |
[10] | LI Ye, JIANG Wei, CHEN Xiaojun, WU Yingjie, WANG Sinan. Drought trends in Ordos from 1961 to 2020 based on meteorological precipitation anomaly percentage [J]. Arid Zone Research, 2024, 41(7): 1099-1111. |
[11] | ZHOU Jie, WANG Xuhu, DU Weibo, ZHOU Xiaolei, YANG Jie, ZAHNG Xiaowei. Prediction of potential distribution area of Picea schrenkiana under the background of climate change [J]. Arid Zone Research, 2024, 41(7): 1167-1176. |
[12] | LIU Xin, WANG Liqun, LI Haoran, LI Yonghong, QIAO Wenguang, LI Lijuan, WANG Chenxu. Identification and optimization strategy of an ecological network in Inner Mongolia based on “service importance-habitat sensitivity-biodiversity” [J]. Arid Zone Research, 2024, 41(7): 1207-1216. |
[13] | LI Bingjie, FAN Zhitao, QU Zhicheng, YAO Shunyu, SU Xiashu, LIU Dongwei, WANG Lixin. Evaluation and prediction of ecosystem carbon storage in the Inner Mongolia section of the Yellow River Basin based on the InVEST-PLUS model [J]. Arid Zone Research, 2024, 41(7): 1217-1227. |
[14] | LIANG Shuanghe, NIU Zuirong, JIA Ling. Analysis of runoff changes and attribution in the main stream of Zuli River in the past 65 years [J]. Arid Zone Research, 2024, 41(6): 928-939. |
[15] | TANG Kexin, GUO Jianbin, HE Liang, CHEN Lin, WAN Long. Characteristics of the spatial and temporal evolution of Gross Primary Productivity and its influencing factors in China’s drylands [J]. Arid Zone Research, 2024, 41(6): 964-973. |
|