[1]孙 媛,张 鑫,闫 彩,等.基于GAMLSS模型的青海省非平稳NSPEI干旱时空特征分析[J].水土保持研究,2023,30(06):316-327,336.[doi:10.13869/j.cnki.rswc.2023.06.007]
 Sun Yuan,Zhang Xin,Yan Cai,et al.Spatiotemporal Characteristics of Drought Using NSPEI in Qinghai Province Based on the GAMLSS Model[J].Research of Soil and Water Conservation,2023,30(06):316-327,336.[doi:10.13869/j.cnki.rswc.2023.06.007]
点击复制

基于GAMLSS模型的青海省非平稳NSPEI干旱时空特征分析

参考文献/References:

[1] 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 Geoscience, 2012,5(8):551-556.
[2] 姜大膀,王晓欣.对IPCC第六次评估报告中有关干旱变化的解读[J].大气科学学报,2021,44(5):650-653.
Jiang D B, Wang X X. A brief interpretation of drought change from IPCC sixth assessment report[J]. Transactions of Atmospheric Sciences, 2021,44(5):650-653.
[3] 张世虎,王一峰,侯勤正,等.青海省干旱指数时空变化特征与气候指数的关系[J].草业科学,2015,32(12):1980-1987.
Zhang S H, Wang Y F, Hou Q Z, et al. Spatial and temporal characteristics of aridity index and association with AO and ENSO in Qinghai Province[J]. Pratacultural Science, 2015,32(12):1980-1987.
[4] 贾红莉,杨英莲,金义安,等.1984—2017年青海省气象灾害灾情演变[J].青海科技,2019,26(2):64-72.
Jia H L, Yang Y L, Jin Y A, et al. Evolution of meteorological disasters in Qinghai Province from 1984 to 2017[J]. Qinghai Science and Technology, 2019,26(2):64-72.
[5] 胡玉乾,胡磊,孙鹏,等.基于非平稳的淮河流域干旱时空演变特征研究[J].北京师范大学学报:自然科学版,2022,58(1):116-124.
Hu Y Q, Hu L, Sun P, et al. Spatio-temporal evolution of drought events in Huaihe River Basin: A non-stationary standardized precipitation evapotranspiration index study[J]. Journal of Beijing Normal University: Natural Science,2022,58(1):116-124.
[6] 王劲松,李耀辉,王润元,等.我国气象干旱研究进展评述[J].干旱气象,2012,30(4):497-508.
Wang J S, Li Y H, Wang R Y, et al. Preliminary analysis on the demand and review of progress in the field of meteorological drought research[J]. Journal of Arid Meteorology, 2012,30(4):497-508.
[7] McKee T B, Doesken N J, Kleist J. The relationship of drought frequency and duration to time scales[C]//Proceedings of the 8th Conference on Applied Climatology, 1993.
[8] Vicente-Serrano S M, Beguería S, López-Moreno J I. A multiscalar drought index sensitive to global warming: The standardized precipitation evapotranspiration index[J]. Journal of Climate, 2010,23(7):1696-1718.
[9] 宋玉鑫,马军霞,左其亭,等.新疆多时间尺度干湿变化特征分析[J].水资源保护,2021,37(2):43-48.
Song Y X, Ma J X, Zuo Q T, et al. Analysis on characteristics of dry-wet variation on multi-time scale in Xinjiang[J]. Water Resources Protection, 2021,37(2):43-48.
[10] 温家兴,张鑫,王云,等.多时间尺度干旱对青海省东部农业区小麦的影响[J].灌溉排水学报,2016,35(4):92-97.
Wen J X, Zhang X, Wang Y, et al. Effects of drought in multi-time scale on wheat crop in eastern agricultural region of Qinghai Province[J]. Journal of Irrigation and Drainage, 2016,35(4):92-97.
[11] 范磊,吕爱锋,张文翔.青海省干旱时空特征及与大气环流响应关系[J].干旱区资源与环境,2021,35(12):60-65.
Fan L, Lv A F, Zhang W X. Temporal-spatial variation characteristics of drought and its relationship with atmospheric circulation in Qinghai Province[J]. Journal of Arid Land Resources and Environment, 2021,35(12):60-65.
[12] Craig R K. Stationarity is dead-long live transformation: Five principles for climate change adaptation law[J].Harvard Environmental Law Review. 2010,34(1):9-73
[13] Wang Y, Li J, Feng P, et al. A time-dependent drought index for non-stationary precipitation series[J]. Water Resources Management, 2015,29:5631-5647.
[14] Li J Z, Wang Y X, Li S F, et al. A nonstationary standardized precipitation index incorporating climate indices as covariates[J]. Journal of Geophysical Research: Atmospheres, 2015,120:12082-12095.
[15] 温庆志,孙鹏,张强,等.非平稳标准化降水蒸散指数构建及中国未来干旱时空格局[J].地理学报,2020,75(7):1465-1482.
Wen Q Z, Sun P, Zhang Q, et al. A multi-scalar drought index for global warming: The non-stationary standardized precipitation evaporation index(NSPEI)and spatio-temporal patterns of future drought in China[J]. Acta Geographica Sinica, 2020,75(7):1465-1482.
[16] 宋昕熠.非一致性统计模型在水文-气象频率研究中的应用[D].江苏徐州:中国矿业大学,2017.
Song X Y. Non-stationary Statistical Model and Its Applications in Hydro-meteorological Frequency Analysis[D]. Xuzhou, Jiangsu: China University of Mining and Technology, 2017.
[17] Song Z, Xia J, She D, et al. The development of a nonstationary standardized precipitation index using climate covariates: A case study in the middle and lower reaches of Yangtze River Basin, China[J]. Journal of Hydrology, 2020,588:125115.
[18] 黄梦杰,贺新光,卢希安,等.长江流域的非平稳SPI干旱时空特征分析[J].长江流域资源与环境,2020,29(7):1597-1611.
Huang M J, He X G, Lu X A, et al. Spatio-temporal characteristics of drought in the Yangtze River Basin using non-stationary standardized precipitation index[J]. Resources and Environment in the Yangtze Basin, 2020,29(7):1597-1611.
[19] Rigby R A, Stasinopoulos D M. Generalized additive models for location, scale and shape[J]. Journal of the Royal Statistical Society: Series C(Applied Statistics),2005,54(3):507-554.
[20] 王怡璇.变化环境下滦河流域干旱演变驱动机制及定量评价研究[D].天津:天津大学,2017.
Wang Y X. Driving Mechanism and Quantitative Assessment of Drought in Luanhe River Basin Under Changing Environment[D]. Tianjin: Tianjin University, 2017.
[21] 侯陈瑶,朱秀芳,肖名忠,等.基于游程理论和Copula函数的辽宁省农业气象干旱特征研究[J].灾害学,2019,34(2):222-227.
Hou C Y, Zhu X F, Xiao M Z, et al. Research on agricultural meteorological drought in Liaoning Province based on run theory and copula function[J]. Journal of Catastrophology, 2019,34(2):222-227.
[22] 廖显薇,高峰,魏婷,等.基于Copula函数的松花江流域水文干旱频率分析[J].灌溉排水学报,2021,40(3):134-141.
Liao X W, Gao F, Wei T, et al. Using copula method to analyze drought frequency in Songhua River Basin[J]. Journal of Irrigation and Drainage, 2021,40(3):134-141.
[23] 张卓群,冯冬发,侯宇恒.基于Copula函数的黄河流域干旱特征研究[J].干旱区资源与环境,2022,36(1):66-72.
Zhang Z Q, Feng D F, Hou Y H. Study on drought characteristics in Yellow River basin based on Copula function[J]. Journal of Arid Land Resources and Environment, 2022,36(1):66-72.
[24] 韩会明.赣江流域干旱时空演变特征及重现期分析[D].南昌:南昌大学,2020.
Han H M. Spatial and Temporal Evolution Characteristics and Recurrence Period of Drought in Ganjiang River Basin[D]. Nanchang: Nanchang University, 2020.
[25] 马有绚,李万志,王丽霞,等.基于SPI的青海省春季干旱时空演变特征及环流诊断[J].干旱气象,2020,38(3):362-370.
Ma Y X, Li W Z, Wang L X, et al. Spatial and temporal evolution and atmospheric circulation diagnosis of spring drought based on SPI in Qinghai Province[J]. Journal of Arid Meteorology, 2020,38(3):362-370.
[26] 陈亚利,赵强,艾明乐,等.1959—2019年辽河流域气象干旱时空特征分析[J].水利水电技术(中英文),2023,54(1):42-52.
Chen Y L, Zhao Q, Ai M L, et al. Spatio-temporal characteristics of meteorological drought in the Liaohe River Basin from 1959 to 2019[J]. Water Resources and Hydropower Engineering, 2023,54(1):42-52.
[27] 苏夏羿,张鑫,王云,等.基于SPI和Copula的湟水流域干旱趋势研究[J].中国农村水利水电,2016,410(12):151-155.
Su X Y, Zhang X, Wang Y, et al. Research on the drought trend based on standardized precipitation index and copula function in Huangshui River Basin[J]. China Rural Water and Hydropower, 2016,410(12):151-155.
[28] 李红梅,周秉荣,申红艳,等.青海高原干旱时空分异特征及发生风险研究[J].山地学报,2019,37(2):230-239.
Li H M, Zhou B R, Shen H Y, et al. Research on temporal and spatial differentiation and occurrence risks of drought in Qinghai, China[J]. Mountain Research, 2019,37(2):230-239.
[29] 韩炳宏,周秉荣,吴让,等.基于格网的青海省干旱灾害综合风险评估[J].干旱区地理,2018,41(6):1194-1203.
Han B H, Zhou B R, Wu R, et al. Grid-based estimation of drought disaster in Qinghai Province[J]. Arid Land Geography, 2018,41(6):1194-1203.
[30] 汪青春,李凤霞,刘宝康,等.近50年来青海干旱变化及其对气候变暖的响应[J].干旱区研究,2015,32(1):65-72.
Wang Q C, Li F X, Liu B K, et al. Variation in drought and its response to climate warming in Qinghai Plateau in recent 50 years[J]. Arid Zone Research, 2015,32(1):65-72.

备注/Memo

收稿日期:2022-08-02 修回日期:2022-10-09
资助项目:陕西省科技统筹创新计划项目“现代农业节水技术模式与高效用水物联网系统基金”(2016KTZDNY-01-01)
第一作者:孙媛(1997—),女,内蒙古包头人,硕士研究生,研究方向为气候变化下的干旱识别与时空演变规律。E-mail:sunyuan0310@nwafu.edu.cn
通信作者:张鑫(1968—),男,河南淅川人,博士,教授,主要从事气候变化与水循环、干旱识别与时空演变规律研究。E-mail:zhxin@nwsuaf.edu.cn

更新日期/Last Update: 2023-10-10