[1]蒋 帅,张 黎,景元书,等.1981-2015年中国区域极端气候事件的时空分布特征[J].水土保持研究,2023,30(06):295-306.[doi:10.13869/j.cnki.rswc.2023.06.018]
 Jiang Shuai,Zhang Li,Jing Yuanshu,et al.Spatial and Temporal Distribution Characteristics of Regional Extreme Climate Events in China from 1981 to 2015[J].Research of Soil and Water Conservation,2023,30(06):295-306.[doi:10.13869/j.cnki.rswc.2023.06.018]
点击复制

1981-2015年中国区域极端气候事件的时空分布特征

参考文献/References:

[1] 张顺利,陶诗言,张庆云,等.1998年夏季中国暴雨洪涝灾害的气象水文特征[J].应用气象学报,2001,12(4):442-457.
Zhang S L, Tao S Y, Zhang Q Y, et al. Meteorological and hydrological characteristics of heavy rainstorm flood disasters in China in the summer of 1998[J]. Journal of Applied Meteorological Science, 2001,12(4):442-457.
[2] Stone R. Ecologists report huge storm losses in China's forests[J]. Science, 2008,319:1318-1319.
[3] Zhu B L, Xue L Q, Wei G H, et al. CMIP5 projected changes in temperature and precipitation in arid and humid basins[J]. Theoretical and Applied Climatology, 2019,136:1133-1144.
[4] Xu Y, Xu C H. Preliminary assessment of simulations of climate changes over China by CMIP5 multi-models[J]. Atmospheric and Oceanic Science Letters, 2012,5(6):489-494.
[5] Stocker T F, Qin D, Plattner G K, et al. Climate Change 2013: The Physical Science Basis. Contribution of working group Ⅰ to the fourth assessment report of the Intergovernmental Panel on Climate Change(IPCC)[R]. New York, USA: Cambridge University Press, 2013.
[6] 管玥,何奇瑾,刘佳鸿,等.黄淮海地区1961—2015年极端气温及其初终日序的变化特征[J].水土保持研究,2021,28(1):147-152.
Guan Y, He Q J, Liu J H, et al. Variation characteristics of extreme temperature and its earliest and latest day sequence in Huang-Huai-Hai region during the period 1961 to 2015[J]. Research of Soil and Water Conservation, 2021,28(1):147-152.
[7] 慎璐璐,杨艳芬,吴晶,等.黄河流域极端气候事件时空变化规律[J].水土保持研究,2022,29(2):231-242.
Shen L L, Yang Y F, Wu J, et al. Spatial and temporal variation characteriatics of extreme climate events in the yellow river basin[J]. Research of Soil and Water Conservation, 2022,29(2):231-242.
[8] Zhai P, Zhang X, Wan H, et al. Trends in total precipitation and frequency of daily precipitation extremes over China[J]. Journal of Climate, 2005,18(7):1096-1108.
[9] 葛非凡,毛克彪,蒋跃林,等.华东地区夏季极端高温特征及其对植被的影响[J].中国农业气象,2017,38(1):43-51.
Ge F F, Mao K B, Jiang Y L, et al. Extreme high-temperature in summer and its impacts on vegetation in East China[J]. Chinese Journal of Agrometeorology, 2017,38(1):43-51.
[10] 罗玉.西南地区极端降水和气温的变化特征及其与高原夏季风的关系研究[D].成都:成都信息工程大学,2015.
Luo Y. Characteristics of Extreme Precipitation and Temperature Change in Southwest China and Their Relationship with Summer Winds in the Plateau[D]. Chengdu: Chengdu University of Information Science and Technology, 2015.
[11] 江志红,陈威霖,宋洁,等.7个IPCC AR4模式对中国地区极端降水指数模拟能力的评估及其未来情景预估[J].大气科学,2009,33(1):109-120.
Jiang Z H, Chen W L, Song J, et al. Assessment of the ability of the 7 IPCC AR4 models to simulate extreme precipitation indices in China and their future scenario projections[J]. Chinese Journal of Atmospheric Sciences, 2009,33(1):109-120.
[12] 朴世龙,张新平,陈安平,等.极端气候事件对陆地生态系统碳循环的影响[J].中国科学:地球科学,2019,49(9):1321-1334.
Piao S L, Zhang X P, Chen A P, et al. Effects of extreme weather events on the carbon cycle of terrestrial ecosystems[J]. Scientia Sinica(Terrae),2019,49(9):1321-1334.
[13] Schwalm C R, Williams C A, Schaefer K, et al. Reduction in carbon uptake during turn of the century drought in western North America[J]. Nature Geosciences, 2012,5:551-556.
[14] Ge J, Xiong G, Wang Z, et al. Altered dynamics of broad-leaved tree species in a Chinese subtropical montane mixed forest: The role of an anomalous extreme 2008 ice storm episode[J]. Ecology and Evolution, 2015,5(7):1484-1493.
[15] Richardson A D, Hollinger D Y, Aber J D, et al. Environmental variation is directly responsible for short-but not long-term variation in forest-atmosphere carbon exchange[J]. Global Change Biology, 2007,13(4):788-803.
[16] Song Y, Achberger C, Linderholm H W. Rain-season trends in precipitation and their effect in different climate regions of China during 1961—2008[J]. Environmental Research Letters, 2011,6(3):034025.
[17] Harris I, Jones P D, Osborn T J, et al. Updated high-resolution grids of monthly climatic observations the CRU TS3.10 Dataset[J]. International Journal of Climatology, 2014,34(3):623-642.
[18] Kalnay E, Kanamitsu M, Kistler R, et al. The NCEP/NCAR 40-year reanalysis project[J]. Bulletin of the American Meteorological Society, 1996,77(3):437-472.
[19] Saha S, Moorthi S, Wu X R, et al. The NCEP climate forecast system version 2[J]. Journal of Climate, 2014,27(6):2185-2208.
[20] 袁源,赖欣,巩远发,等. CLM4.5模式对青藏高原土壤湿度的数值模拟及评估[J].大气科学,2019,43(3):676-690.
Yuan Y, Lai X, Gong Y F, et al. CLM4.5 model simulation of soil moisture over the Qinghai-Xizang plateau and its performance evaluation[J]. Chinese Journal of Atmospheric Sciences, 2019,43(3):676-690.
[21] He J, Yang K, Tang W L, et al. The first high-resolution meteorological forcing dataset for land process studies over China[J]. Scientific Data, 2020,7(1).DOI:10.1038/s41597-020-0369-y.
[22] Cuo L, Zhang Y X, Gao Y H, et al. The impacts of climate change and land cover/use transition on the hydrology in the upper Yellow River Basin, China[J]. Journal of Hydrol, 2013,502(2):37-52.
[23] Zscheischler J, Mahecha M, Harmeling S, et al. Detection and attribution of large spatiotemporal extreme events in Earth observation data[J]. Ecological Informatics, 2013,15:66-73.
[24] Zscheischler J, Reichstein M, Buttlar J, et al. Carbon cycle extremes during the 21st century in CMIP5 models: Future evolution and attribution to climatic drivers[J]. Geophysical Research Letters, 2014,41:8853-8861.
[25] Chen W Z, Zhu D, Huang C J, et al. Negative extreme events in gross primary productivity and their drivers in China during the past three decades[J]. Agricultural and Forest Meteorology, 2019,275:47-58.
[26] 黄荣辉,蔡榕硕,陈际龙,等.我国旱涝气候灾害的年代际变化及其与东亚气候系统变化的关系[J].大气科学,2006,30(5):730-743.
Huang R H, Cai R S, Chen J L, et al. The chronologic changes of drought and flood climate disasters in China and their relationship with the changes in the climate system in East Asia[J]. Chinese Journal of Atmospheric Sciences, 2006,30(5):730-743.
[27] 郭广芬,杜良敏,肖莺,等.长江流域夏季极端降水时空分布特征[J].干旱气象,2021,39(2):235-243.
Guo G F, Du L M, Xiao Y, et al. Spatial and temporal distribution characteristics of extreme precipitation in summer in the Yangtze River Basin[J]. Journal of Arid Meteorology, 2021,39(2):235-243.
[28] 吕星玥,荣艳淑,石丹丹.长江中下游地区2010/2011年秋冬春连旱成因再分析[J].干旱气象,2019,37(2):198-208.
Lü X Y, Rong Y J, Shi D D. Re-analysis of the causes of drought in the middle and lower reaches of the Yangtze River in the autumn, winter and spring of 2010/2011[J]. Journal of Arid Meteorology, 2019,37(2):198-208.
[29] 李晓英,姚正毅,肖建华,等.1961—2010年青藏高原降水时空变化特征分析[J].冰川冻土,2016,38(5):1233-1240.
Li X Y, Yao Z Y, Xiao J H, et al. Spatial-temporal variation characteristics of precipitation on the Qinghai-Tibet Plateau from 1961 to 2010[J]. Journal of Glaciology and Geocryology, 2016,38(5):1233-1240.
[30] 王婉昭,高艳红,许建伟.青藏高原及其周边干旱区气候变化特征与GLDAS适用性分析[J].高原气象,2013,32(3):635-645.
Wang W Z, Gao Y H, Xu J W, et al. Climate change characteristics and GLDAS applicability analysis of the Qinghai-Tibet Plateau and its surrounding arid areas[J]. Plateau Meteorology, 2013,32(3):635-645.
[31] 关颖慧.长江流域极端气候变化及其未来趋势预测[D].陕西杨凌:西北农林科技大学,2015.
Guan Y H. Changes in Extreme Climate Events and Future Prediction in the Yangzi River[D]. Yangling, Shaanxi: Northwest A&F University, 2015.
[32] 朱圣男,刘卫林,万一帆,等.抚河流域干旱时空分布特征及其与ENSO的相关性[J].水土保持研究,2020,27(6):131-138.
Zhu S N, Liu W L, Wan Y F, et al. The spatiotemporal distribution characteristics of drought in the Fuhe River Basin and its correlation with ENSO[J]. Research of Soil and Water Conservation, 2020,27(6):131-138.
[33] 琚建华,任菊章,吕俊梅.北极涛动年代际变化对东亚北部冬季气温增暖的影响[J].高原气象,2004,23(4):429-434.
Ju J H, Ren J Z, Lv J M. Effects of interdecadal changes in Arctic oscillations on winter warming in northern East Asia[J]. Plateau Meteorology, 2004,23(4):429-434.
[34] 孙丞虎,任福民,周兵,等.2011/2012年冬季我国异常低温特征及可能成因分析[J].气象,2012,38(7):884-889.
Sun C H, Ren F M, Zhou B, et al. Analysis of abnormal low temperature characteristics and possible causes in China in the winter of 2011/2012[J]. Meteorological Monthly, 2012,38(7):884-889.
[35] 朱保林,管兆勇,卢楚翰,等.夏季北半球青藏高原对流层顶气压异常变动的物理机制研究[J].高原气象,2011,30(3):559-567.
Zhu B L, Guan Z Y, Lu C H, et al. Study on the physical mechanism of abnormal changes in tropospheric top pressure on the Qinghai-Tibet Plateau in the northern hemisphere in summer[J]. Plateau Meteorology, 2011,30(3):559-567.
[36] 张大任,郑静,范军亮,等.近60年中国不同气候区极端温度事件的时空变化特征[J].中国农业气象,2019,40(7):422-434.
Zhang D R, Zheng J, Fan J L, et al. Spatio-temporal variation characteristics of extreme temperature events in different climatic zones in China in the past 60 years[J]. Chinese Journal of Agrometeorology, 2019,40(7):422-434.
[37] 杨涵洧,封国林.2013年盛夏中国持续性高温事件诊断分析[J].高原气象,2016,35(2):484-494.
Yang H Y, Feng G L. Diagnostic analysis of persistent high temperature events in China in the middle of the summer of 2013[J]. Plateau Meteorology, 2016,35(2):484-494.
[38] 丁园圆,缪启龙,王勇.中国北方冬季极端温度的变化及其与AO相关分析[J].干旱区资源与环境,2010,24(5):95-101.
Ding Y Y, Liao Q L, Wang Y. Variation of winter extreme temperatures in northern China and their correlation with AO[J]. Journal of Arid Land Resources and Environment, 2010,24(5):95-101.
[39] Zhang J Y, Wu L Y. Land-atmosphere coupling amplifies hot extremes over China[J]. Chinese Science Bulletin, 2011,56(31):3328-3332.
[40] He B, Wang H L, Wang Q F, et al. A quantitative assessment of the relationship between precipitation deficits and air temperature variations[J]. Journal of Geophysical Research: Atmospheres, 2015,120(12):5951-5961.
[41] 肖秀程,黄丹青,严佩文.极端气温和极端降水复合事件的气候特征[J].气象科学,2020,40(6):744-751.
Xiao X C, Huang D Q, Yan P W. Climatic characteristics of complex events of extreme temperatures and extreme precipitation[J]. Journal of the Meteorological Sciences, 2020,40(6):744-751.
[42] Zhou T J, Zhang W X, Zhang L X, et al. The dynamic and thermodynamic processes dominating the reduction of global land monsoon precipitation driven by anthropogenic aerosols emission[J]. Science China Earth Sciences, 2020,63:919-933.
[43] 陈训来,刘军,郑群峰,等.基于卷积门控循环单元神经网络的临近预报方法研究[J].高原气象,2021,40(2):411-423.
Chen X L, Liu J, Zhen Q F, et al. Research on proximity prediction method based on convolutional gated recurrent unit neural network[J]. Plateau Meteorology, 2021,40(2):411-423.

相似文献/References:

[1]雅 茹,丽 娜,银 山,等.1960-2015年内蒙古极端气候事件的时空变化特征[J].水土保持研究,2020,27(03):106.
 YA Ru,LI Na,YIN Shan,et al.Characteristics of Temporal and Spatial Variation of Extreme Climate Events in Inner Mongolia During the Period 1960-2015[J].Research of Soil and Water Conservation,2020,27(06):106.
[2]毛喜玲,殷淑燕,刘海红.面向极端气候事件的冀鲁豫地区农业气象灾害分析[J].水土保持研究,2023,30(04):327.[doi:10.13869/j.cnki.rswc.2023.04.014.]
 MAO Xiling,YIN Shuyan,LIU Haihong.Analysis of Agrometeorological Disasters Facing Extreme Climate Events in Hebei, Shandong, and Henan Provinces[J].Research of Soil and Water Conservation,2023,30(06):327.[doi:10.13869/j.cnki.rswc.2023.04.014.]

备注/Memo

收稿日期:2022-08-18 修回日期:2022-11-02
资助项目:国家自然科学基金(31971512; 42141005; 42030509)
第一作者:蒋帅(1995—),男,安徽亳州人,硕士,研究方向为气象灾害预警与预测。E-mail:674758323@qq.com
通信作者:张黎(1982—),女,安徽泾县人,博士,副研究员,主要从事陆地生态系统碳循环模拟研究。E-mail:li.zhang@igsnrr.ac.cn

更新日期/Last Update: 2023-10-10