RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2016, Vol. 25 >> Issue (09): 1448-1456.doi: 10.11870/cjlyzyyhj201609016
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LI Dan1, GUO Sheng-lian1, HONG Xing-jun1, GUO Jing2
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[1] 杨涛, 陆桂华, 李会会, 等. 气候变化下水文极端事件变化预测研究进展[J]. 水科学进展, 2011, 22(2):279-286. [YANG T, LU G H, LI H H, et al. Advances in the study of projection of climate change impacts on hydrological extremes[J]. Advances in Water Science, 2011, 22(2):279-286.] [2] NORBIATO D, BORGA M, SANGATI M, et al. Regional frequency analysis of extreme precipitation in the eastern Italian Alps and the August 29, 2003 flash flood[J]. Journal of Hydrology, 2007, 345(3/4):149-166. [3] 苏布达, 姜彤. 长江流域降水极值时间序列的分布特征[J]. 湖泊科学, 2008, 20(1):123-128. [SU B D, JIANG T. Distribution feature of time series of extreme precipitation over the Yangtze river basin[J]. Journal of Lake Sciences, 2008, 20(1):123-128.] [4] FU G B, YU J J, YU X B, et al. Temporal variation of extreme rainfall events in China, 1961-2009[J]. Journal of Hydrology, 2013, 487:48-59. [5] VILLAFUERTE Ⅱ M Q, MATSUMOTO J, AKASAKA I, et al. Long-term trends and variability of rainfall extremes in the Philippines[J]. Atmospheric Research, 2014, 137:1-13. [6] YADUVANSHI A, RANADE A. Effect of global temperature changes on rainfall fluctuations over river basins across Eastern Indo-Gangetic Plains[J]. Aquatic Procedia, 2015, 4:721-729. [7] YANG T, SHAO Q X, HAO Z C, et al. Regional frequency analysis and Spatio-temporal pattern characterization of rainfall extremes in the Pearl River Basin, China[J]. Journal of Hydrology, 2010, 380(3/4):386-405. [8] 张继国, 刘新仁. 降水时空分布不均匀性的信息熵分析——(Ⅰ)基本概念与数据分析[J]. 水科学进展, 2000, 11(2):133-137. [ZHANG J G, LIU X R. Information entropy analysis on nonuniformity of precipitation distribution in time-space, Ⅰ, basic concept and data analysis[J]. Advances in Water Science, 2000, 11(2):133-137.] [9] MISHRA A K, ÖZGER M, SINGH V P. An entropy-based investigation into the variability of precipitation[J]. Journal of Hydrology, 2009, 370(1/4):139-154. [10] WILLEMS P. Compound intensity/duration/frequency-relationships of extreme precipitation for two seasons and two storm types[J]. Journal of Hydrology, 2000, 233(1/4):189-205. [11] NTEGEKA V, WILLEMS P. Trends and multidecadal oscillations in rainfall extremes, based on a more than 100-year time series of 10 min rainfall intensities at Uccle, Belgium[J]. Water Resources Research, 2008, 44(7):W07402. [12] WILLEMS P. Adjustment of extreme rainfall statistics accounting for multidecadal climate oscillations[J]. Journal of Hydrology, 2013, 490:126-133. [13] 王俊, 郭生练. 南水北调中线工程水源区汉江水文水资源分析关键技术研究与应用[M]. 北京:中国水利水电出版社, 2010:21-29. [WANG J, GUO S L. Research and application of key technique for the Hydrological Features and Water Resources of Han River in the Middle Route of South-to-North Water Transfer Project[M]. Beijing:China Water Power Press, 2010:21-29.] [14] 蔡述明, 殷鸿福, 杜耘, 等. 南水北调中线工程与汉江中下游地区可持续发展[J]. 长江流域资源与环境, 2005, 14(4):409-412. [CAI S M, YIN H F, DU Y, et al. Effect of the middle route project of south to north water transfer on the sustainable development of the middle and lower reaches of Hanjiang river[J]. Resources and Environment in the Yangtze Basin, 2005, 14(4):409-412.] [15] 陈华, 郭生练, 郭海晋, 等. 汉江流域1951~2003年降水气温时空变化趋势分析[J]. 长江流域资源与环境, 2006, 15(3):340-345. [CHEN H, GUO S L, GUO H J, et al. Temporal and spatial trend in the precipitation and temperature from 1951 to 2003 in the Hanjiang basin[J]. Resources and Environment in the Yangtze Basin, 2006, 15(3):340-345.] [16] 朱明勇, 谭淑端, 张全发. 近60年汉江流域侵蚀性降雨的时空变化特征[J]. 生态环境学报, 2013, 22(9):1544-1549. [ZHU M Y, TAN S D, ZHANG Q F. Spatio-temporal variation of erosive precipitation in the Han River Basin during the past 60 years[J]. Ecology and Environmental Sciences, 2013, 22(9):1544-1549.] [17] 史道济. 实用极值统计方法[M]. 天津:天津科技出版社, 2006. [SHI D J. Practical methods of extreme value statistics[M]. Tianjin:Tianjin Science and Technology Press, 2006.] [18] SOLARI S, LOSADA M A. A unified statistical model for hydrological variables including the selection of threshold for the peak over threshold method[J]. Water Resources Research, 2012, 48(10):W10541. [19] SCARROTT C, MACDONALD A. A review of extreme value threshold estimation and uncertainty quantification[J]. REVSTAT-Statistical Journal, 2012, 10(1):33-60. [20] THOMPSON P, CAI Y Z, REEVE D, et al. Automated threshold selection methods for extreme wave analysis[J]. Coastal Engineering, 2009, 56(10):1013-1021. [21] JONES R N, CHIEW F H S, BOUGHTON W C, et al. Estimating the sensitivity of mean annual runoff to climate change using selected hydrological models[J]. Advances in Water Resources, 2006, 29(10):1419-1429. [22] NTEGEKA V, BAGUIS P, ROULIN E, et al. Developing tailored climate change scenarios for hydrological impact assessments[J]. Journal of Hydrology, 2014, 508:307-321. [23] TABARI H, AGHAKOUCHAK A, WILLEMS P. A perturbation approach for assessing trends in precipitation extremes across Iran[J]. Journal of Hydrology, 2014, 519:1420-1427. [24] SIVAKUMAR B, WOLDEMESKEL F M. A network-based analysis of spatial rainfall connections[J]. Environmental Modelling & Software, 2015, 69:55-62. [25] WATTS D J, STROGATZ S H. Collective dynamics of ‘small-world’ networks[J]. Nature, 1998, 393(6684):440-442. [26] 罗霄, 李栋梁, 王慧. 华西秋雨演变的新特征及其对大气环流的响应[J]. 高原气象, 2013, 32(4):1019-1031. [LUO X, LI D L, WANG H. New evolution features of autumn rainfall in west China and its responses to atmospheric circulation[J]. Plateau Meteorology, 2013, 32(4):1019-1031.] |
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