|
[1]
|
郭生练, 刘章君, 熊立华. 设计洪水计算方法研究进展与评价[J]. 水利学报, 2016, 47(3): 302-314.
GUO Shenglian, LIU Zhangjun and XIONG Lihua. Advances and assessment on design flood estimation methods. Journal of Hydraulic Engineering, 2016, 47(3): 302-314. (in Chinese)
|
|
[2]
|
World Meteorological Organization (WMO). Manual on estimation of probable maximum precipitation (PMP). 3rd Edition, Geneva: World Meteorological Organization (WMO), 2009.
|
|
[3]
|
林炳章, 兰平, 张叶晖, 等. 可能最大降水估算研究综述[J]. 水利学报, 2018, 49(1): 92-102.
LIN Bingzhang, LAN Ping, ZHANG Yehui, et al. Review of probable maximum precipitation estimation. Journal of Hydraulic Engineering, 2018, 49(1): 92-102. (in Chinese)
|
|
[4]
|
陈晓宏, 钟睿达, 王兆礼, 等. 新一代GPM IMERG卫星遥感降水数据在中国南方地区的精度及水文效用评估[J]. 水利学报, 2017, 48(10): 1147-1156.
CHEN Xiaohong, ZHONG Ruida, WANG Zhaoli, et al. Evaluation on the accuracy and hydrological performance of the latest-generation GPM IMERG product over South China. Journal of Hydraulic Engineering, 2017, 48(10): 1147-1156. (in Chinese)
|
|
[5]
|
Institute of Hydrology. Flood estimation handbook. Volumes 1-5. Wallingford: Institute of Hydrology, 1999.
|
|
[6]
|
水利电力部. 水利水电枢纽工程等级划分及洪水标准. SDJ12-78 (试行) [S]. 北京: 中国水利水电出版社, 1978.
Ministry of Water Resources & Electric Power. Classifying levels and flood standards for water resources and hydropower projects. SDJ12-78. Beijing: China Water Resources and Hydropower Publishing House, 1978. (in Chinese)
|
|
[7]
|
水利电力部. 水利水电工程设计洪水计算规范. SDJ22-79 (试行), SL/144-2006 [S]. 北京: 中国水利水电出版社, 2006.
Ministry of Water Resources & Electric Power. Regulation for calculating design flood of water resources and hydropower projects. SDJ22-79, SL/144-2006. Beijing: China Water Resources and Hydropower Publishing House, 2006. (in Chinese)
|
|
[8]
|
王国安. 可能最大暴雨和洪水计算原理与方法[M]. 北京: 中国水利水电出版社, 1999.
WANG Guoan. Principles and methods of PMP/PMF calculations. Beijing: China Hydrology and Hydroelectric Press, 1999. (in Chinese)
|
|
[9]
|
王国安. 中美PMP/PMF估算方法基本框架比较[J]. 水文, 2006, 25(5): 32-35.
WANG Guoan. Comparison of basic framework for PMP/PMF estimation methods between China and US. Hydrology, 2006, 25(5): 32-35. (in Chinese)
|
|
[10]
|
严小冬, 杨群, 吴战平, 等. 澜沧江上游可能最大降水(PMP)估算[C]//贵州省气象学会2013年学术年会论文集. 2013.
YAN Xiaodong, YANG Qun, WU Zhanping, et al. Estimation of probable maximum precipitation in the upper Lancang River. In Proceeding of Guizhou Meteorologic Society 2013 Annual Symposium. 2013. (in Chinese)
|
|
[11]
|
YANG, Y., TANG, G. Q., LEI, X. G., et al. Can satellite precipitation products estimate probable maximum precipitation: A comparative investigation with gauge data in the Dadu River basin. Remote Sensing, 2018, 10(1): 41-59. [Google Scholar] [CrossRef]
|
|
[12]
|
吴成兴, 李国芳, 杨白银, 等. 基于卫星降水数据的金沙江流域可能最大降水量计算方法[J]. 水电能源科学, 2020, 38(2): 5-8.
WU Chengxing, LI Guofang, YANG Baiyin, et al. Calculation method of probable maximum precipitation in Jinsha River basin based on satellite precipitation data. Water Resources and Power, 2020, 38(2): 5-8. (in Chinese)
|
|
[13]
|
朱丽虹, 李国芳, 刘守财. 基于卫星降水数据的金沙江流域可能最大降水量计算方法[J]. 中国农村水利水电, 2020(10): 60-66.
ZHU Lihong, LI Guofang and LIU Shoucai. The application of satellite precipitation products in PMP estimation in the Jinsha River basin. China Rural Water and Hydropower, 2020(10): 60-66. (in Chinese)
|
|
[14]
|
何大明. 澜沧江-湄公河水文特征分析[J]. 云南地理环境研究, 1995, 7(1): 58-74.
HE Daming. Analysis of hydrological characteristics in Lancang-Mekong River. Yunnan Geographic Environment Research, 1995, 7(1): 58-74. (in Chinese)
|
|
[15]
|
US Weather Bureau. Probable maximum precipitation, Mekong River basin (HMR No. 46). Washington DC: Environmental Science Services Administration, US Department of Commerce, 1970.
|
|
[16]
|
熊景华, 郭靖, 郭生练, 李娜, 王俊, 尹家波, 唐俊龙. 基于多源降水数据估算澜湄流域可能最大降水[J/OL]. 水力发电学报, 2022: 1-10. http://kns.cnki.net/kcms/detail/11.2241.TV.20220509.1908.002.html, 2022-06-09.
XIONG Jinghua, GUO Jing, GUO Shenglian, LI Na, WANG Jun, YIN Jiabo and TANG Junlong. Estimation of probable maximum precipitation based on multi-satellite data in the Lancang-Mekong River basin. Journal of Hydropower Engineering, 2022: 1-10. http://kns.cnki.net/kcms/detail/11.2241.TV.20220509.1908.002.html, 2022-06-09. (in Chinese)
|
|
[17]
|
YATAGAI, A., KAMIGUCHI, K., ARAKAWA, O., et al. APHRODITE constructing a long-term daily gridded precipitation dataset for Asia based on a dense network of rain gauges. Bulletin of the American Meteorological Society, 2011, 93(9): 1401-1415. [Google Scholar] [CrossRef]
|
|
[18]
|
CHEN, A., CHEN, D. and CESAR, A. Assessing reliability of precipitation data over the Mekong River basin: A comparison of ground-based, satellite, and reanalysis datasets. International Journal of Climatology, 2018, 38: 4314-4334.[CrossRef]
|
|
[19]
|
WANGWONGWIROJ, N., KHEMNGOEN, C. Probable maximum precipitation in tropical zone (Thailand) as estimated by generalized method and statistical method. International Journal of Climatology, 2019, 39(13): 4953-4966. [Google Scholar] [CrossRef]
|
|
[20]
|
THUY, L. T. T., SEIKI, K. and RANJAN, S. Estimation of probable maximum precipitation at three provinces in Northeast Vietnam using historical data and future climate change scenarios. Journal of Hydrology: Regional Studies, 2019, 23: 100599.[CrossRef]
|