全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
地理科学  2015 

暴雨洪灾风险评估研究进展

, PP. 346-351

Keywords: 暴雨,洪灾,洪灾风险评估

Full-Text   Cite this paper   Add to My Lib

Abstract:

洪灾风险评估是洪灾风险管理的首要步骤,作为非工程性防洪措施的一种,要及时、准确地把握洪水灾害的多方面特征。首先对洪灾风险形成机理、洪灾风险评估与区划、洪灾风险评估方法3个方面进行国内外研究现状及分析,指出当前洪灾风险评估中在评估指标体系、评估方法及模型、风险演变驱动机制等方面尚存在的问题,最后,对洪灾风险评估中的发展趋势进行了展望。

References

[1]  陈颙,史培军.自然灾害[M].北京:北京师范大学出版社, 2007.
[2]  Centre for Research on the Epidemiology of Disasters (CRED). EM-DAT Emergency Disasters Data Base [EB/OL].http://www. em-dat.net.
[3]  唐为安,田红,杨元建,等.基于GIS的低温冷冻灾害风险区划研究——以安徽省为例[J].地理科学,2012,32(3):356~361.
[4]  陈萍,王兴玲,陈晓玲.基于栅格的鄱阳湖生态经济区洪灾脆弱性评价[J].地理科学, 2012,32(8):958~964.
[5]  殷洁,戴尔阜,吴绍洪.中国台风灾害综合风险评估与区划[J].地理科学,2013,33(11):1370~1376.
[6]  李谢辉,王磊,谭灵芝,等.渭河下游河流沿线区域洪水灾害风险评价[J].地理科学,2009,29(5):733~739.
[7]  Lind N,Pandey M,Nathwani J.Assessing and affording the control of flood risk[J].Structural Safety,2009,31(2):143-147.
[8]  Dang N M,Babel M S,Luong H T.Evaluation of flood risk parameters in the Day River flood diversion area,RedRiver Delta, Vietnam[J].Natural Hazards,2011,56(1):169-194.
[9]  陈曜,丁晶,赵永红.基于投影寻踪原理的四川省洪灾评估[J].水利学报,2010,41(2):220~225.
[10]  康相武,吴绍洪,戴尔享,等.大尺度洪水灾害损失与影响预评估[J].科学通报,2006,51:155~164.
[11]  卢全中,彭建兵,赵法锁.地质灾害风险评估研究综述[J].灾害学,2003,18(4):59~63.
[12]  Kaplan S,Garrick B J.On The Quantitative Definition of Risk[J]. Risk Analysis,1981,1(1):11-27.
[13]  Maskrey A.Disaster mitigation: A community based approach[M].Oxford:Oxfam,1989.
[14]  United Nations Department of Humanitarian Affairs (UNDHA). Mitigating Natural DisastersPhenomena,Effects and Options: A Manual for Policy Makers and Planners[M].New York:United Nations,1991:1-164.
[15]  Shook G.An assessment of disaster risk and its management in Thailand[J].Disasters,1997,21(1):77-88.
[16]  刘希林.区域泥石流风险评价研究[J].自然灾害学报,2000,9 (1):54~61.
[17]  张继权,李宁.主要气象灾害风险评价与管理的数量化方法及其应用[M].北京:北京师范大学出版社,2007.
[18]  史培军.三论灾害研究的理论与实践[J].自然灾害学报,2002, 11(3):1~9.
[19]  Joy S,X X Lu.Remote sensing and GIS-based flood vulnerability assessment of human settlements:a case study of Gangetic West Bengal,India[J].Hydrological Process,2005,19(18):3699- 3716.
[20]  Federal Emergency Management Agency (FEMA).Guidelines and Specifications for Flood Hazard Mapping Partners[EB/OL]. http://www.fema.gov/media-library/assets/documents/6998?id= 2206
[21]  Shidawara M.Flood hazard map distribution[J].Urban Water, 1999,1(2):125-129.
[22]  Islam M M,Sado K.Flood hazard assessment in Bangladesh using NOAA AVHRR data with geographical information system[J].Hydrological Process,2000,14(3):605-620.
[23]  李吉顺,冯强,王昂生.我国暴雨洪涝灾害的危险性评估[M]. 北京:气象出版社,1996.
[24]  赵士鹏.山洪灾情评估的系统集成方法研究[D].北京:中国科学院地理科学与资源研究所,1995.
[25]  周成虎,万庆,黄诗峰,等.基于GIS的洪水灾害风险区划研究[J].地理学报,2000,55(1):15~24.
[26]  何报寅,张海林,张穗,等.基于GIS的湖北省洪水灾害危险性评价[J].自然灾害学报,2002,14(4):84~89.
[27]  唐川,朱静.基于GIS 的山洪灾害风险区划[J].地理学报, 2005,60(1):87~94.
[28]  孙才志,李秀明.基于ArcGIS 的下辽河平原地下水功能评价[J].地理科学, 2013,33(2):174~180.
[29]  宫清华,黄光庆,郭敏,等.基于GIS技术的广东省洪涝灾害风险区划[J].自然灾害学报,2009,18(1):58~63.
[30]  史培军.再论灾害研究的理论与实践[J].自然灾害学报,1996,5 (4): 6~17.
[31]  殷杰,尹占娥,于大鹏,等.风暴洪水主要承灾体脆弱性分析 ——黄浦江案例[J].地理科学,2012,32(9):1155~1160.
[32]  魏一鸣,金菊良,杨存建,等.洪水灾害风险管理理论[M].北京: 科学出版社,2002.
[33]  万君,周月华,王迎迎,等.基于GIS的湖北省区域洪涝灾害风险评估方法研究[J].暴雨灾害, 2007,26(4):328~333.
[34]  Zhu M L,Fu J M.Comparison between fuzzy reasoning and neural network method to forecast runoff discharge[J].Journal of Hydroscience and Hydraulic Engineering,1994,12(2):131-141.
[35]  Nayak P C,Sudheer K P,Ramasastri K S.Fuzzy computing based rainfall-runoff model for real time flood forecasting[J]. Hydrological Processes,2005,19(4):955-968.
[36]  刘新颜,曹晓仪,董治宝.基于T-S 模糊神经网络模型的榆林市土壤风蚀危险度评价[J].地理科学, 2013,33(6):741~747.
[37]  刘新立.区域风险评估的理论与实践[D].北京:北京师范大学, 2000.
[38]  毛德华,李景保,龚重惠,等.湖南省洪涝灾害研究[M].长沙:湖南师范大学出版社,2000.
[39]  黄崇福.自然灾害风险评价——理论与实践[M].北京:科学出版社,2005.
[40]  José I B. Major flood disasters in Europe:1950-2005[J]. Natural Hazards,2007,(42):125-148.
[41]  Feng L Y,Zhong Y C,Xian Y R,et al.Analysis of historical floods on the Yangtze River,China: Characteristics and explanations[ J].Geomeorphology, 2009,(113):210-216.
[42]  王静静,刘敏,权瑞松,等.中国东南沿海地区暴雨洪涝风险风区及评价[J].华北水利水电学院学报, 2010,31(1):14~16.
[43]  潘耀忠,史培军.区域自然灾害系统基本单元研究——I:理论部分[J].自然灾害学报,1997,6(4):1~9.
[44]  Yan Q L,Ji C,Mervyn P,et al.Flash flood hydarologic Processes of a small headwater catchment in Hong Kong[J]. Advances in Water Resources and Hydraulic Engineering,2009,(1):66-67.
[45]  Patro S,Chatterjee C,Mohanty S,et al.Flood Inundation Modeling using MIKE FLOOD and Remote Sensing Data[J].Journal of the Indian Society of Remote Sensing,2009,37(1):107-118.
[46]  Saeed G,Bahram S,Reza M.Derivation of Probabilistic Thresholds of Spatially Distributed Rainfall for Flood Forecasting[J]. Water Resources Management,2010,24(13): 3547-3559.
[47]  Mukhopadhyay B,Cornelius J,Zehner W.Application of kinematic wave theory for predicting flash flood hazards on coupled alluvial fan-piedmont plain landforms[J].Hydrological Process, 2003,17(4): 839-868.
[48]  Tawatchai T,Mohammed F.Flood hazard and risk analysis in the southwest region of Bangladesh[J].Hydrological Process,2005, (19):2055-2069.
[49]  姚长青,杨志峰,赵彦伟.分布式水文-土壤-植被模型与GIS集成研究[J].水土保持学报,2006,20(1):168~171.
[50]  黄大鹏,刘闯,彭顺风.洪灾风险评价与区划研究进展[J].地理科学进展,2007,26(4):11~22.
[51]  葛全胜,周铭,郑景云,等.中国自然灾害风险综合评估初步研究[M].北京:科学出版社, 2008.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133