RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2016, Vol. 25 >> Issue (09): 1384-1394.doi: 10.11870/cjlyzyyhj201609009
Previous Articles Next Articles
SUN Hong-hu1,2, CHENG Xian-fu1,2, CHEN Yi-xiang1,2, ZHANG Yuan1,2
CLC Number:
[1] FIELD C B, BARROS V R, STOCKER T F, et al. Managing the risks of extreme events and disasters to advance climate change adaptation:special report of the intergovernmental panel on climate change[M]. New York:Cambridge University Press, 2012:37-45. [2] 中华人民共和国中央人民政府. 国家适应气候变化战略[EB/OL]. (2013-12-09)[2015-03-28]. http://www.gov.cn/gzdt/att/att/site1/20131209/001e3741a2cc140f6a8701.pdf. [3] IPCC. Climate change 2014:impacts, adaptation, and vulnerability[M/OL]. Cambridge:Cambridge University Press, 2014. [2014-03-20]. http://www.ipcc.ch/report/ar5/wg2. [4] Asian Development Bank. Managing Asian cities:sustainable and inclusive urban solutions[M]. Manila:Asian Development Bank, 2008:89-92. [5] UNISDR. 5th Asian ministerial conference on disaster risk reduction[C]. Yogyakarta:UNISDR, 2012. [6] The World Bank. World development report 2009:reshaping economic geography[M]. Washington, DC:The World Bank, 2009:73-78. [7] MILETI D S. Disasters by design:a reassessment of natural hazards in the united states, natural hazards and disasters[M]. Washington, DC:Joseph Henry Press, 1999:45-49. [8] WALKER B, HOLLING C S, CARPENTER S. Social-ecological resilience to coastal disasters[J]. Ecology Social, 2004, 9(2):165. [9] 刘婧, 史培军, 葛怡, 等. 灾害恢复力研究进展综述[J]. 地球科学进展, 2006, 21(2):211-218. [LIU J, SHI P J, GE Y, et al. The review of disaster resilience research[J]. Advances in Earth Science, 2006, 21(2):211-218.] [10] KANG B, LEE S J, KANG D H, et al. A flood risk projection for Yongdam dam against future climate change[J]. Journal of Hydro-environment Research, 2007, 1(2):118-125. [11] CUTTER S L, BARNES L, BERRY M. et al. A Place-based model for understanding community resilience to natural disasters[J]. Global Environmental Change, 2008, 18(4):598-606. [12] The World Bank. Climate resilient cities:A primer on reducing vulnerabilities to climate change impacts and strengthening disaster risk management in East Asian cities[M]. Washington, DC:The World Bank, 2008. [13] MAYUNGA J S. Understanding and applying the concept of community disaster resilience:a capital-based approach[EB/OL]. (2007-08-21)[2015-03-28]. http://www.ehs.unu.edu/file/get/3761.pdf. [14] United Nations International Strategy for Disaster Reduction (UNISDR). UNISDR terminology on disaster risk reduction (2009)[M]. Geneva:UNISDR, 2009:24. [15] UK Department for International Development. Humanitarian emergency response review[M]. UK:UK Department for International Development, 2011. [16] 费璇, 温家洪, 杜士强, 等. 自然灾害恢复力研究进展[J]. 自然灾害学报, 2014, 23(6):19-31. [FEI X, WEN J H, DU S Q, et al. Progress in research on natural disaster resilience[J]. Journal of Natural Disasters, 2014, 23(6):19-31.] [17] SHAW R, IEDM Team. Climate disaster resilience:focus on coastal urban cities in Asia[M]. Kyoto:The Asian Journal of Environment and Disaster Management, 2009:4. [18] SHAW R, FERNANDEZ G. Urban risk management in South Asia[R]. New Delhi:SAARC Disaster Management Centre (SDMC), 2010:23-34. [19] 张灵, 陈晓宏, 千怀遂. 北江下游防洪保护区恢复力诊断[J]. 水利学报, 2011, 42(9):1129-1134. [ZHANG L, CHEN X H, QIAN H S. Diagnosis of resilience to flood hazard in lower reaches of the Beijiang River[J]. Journal of Hydraulic Engineering, 2011, 42(9):1129-1134.] [20] PRASHAR S K, SHAW R. Urbanization and hydro-meteorological disaster resilience:the case of Delhi[J]. International Journal of Disaster Resilience in the Built Environment, 2012, 3(1):7-19. [21] CHAN S L, WEY W M, CHANG P H. Establishing disaster resilience indicators for Tan-sui River basin in Taiwan[J]. Social Indicators Research, 2014, 115(1):387-418. [22] CUTTER S L, BURTON C G, EMRICH C T. Disaster resilience indicators for benchmarking baseline conditions[J]. Journal of Homeland Security and Emergency Management, 2010, 7(1):1547-7355. [23] JOERIN J, SHAW R, TAKEUCHI Y, et al. Action-oriented resilience assessment of communities in Chennai, India[J]. Environmental Hazards, 2012, 11(3):226-241. [24] Saaty T L. The analytic network process:decision making with dependence and feedback[M]. Pittsburgh:RWS Publication, 2001:98-113. [25] 葛怡, 史培军, 周忻, 等. 水灾恢复力评估研究:以湖南省长沙市为例[J]. 北京师范大学报(自然科学版), 2011, 47(2):197-201. [GE Y, SHI P J, ZHOU X, et al. A framework to understand and quantitatively assess social resilience to flood hazards[J]. Journal of Beijing Normal University (Natural Science), 2011, 47(2):197-201.] [26] 孙鸿鹄, 程先富, 戴梦琴, 等. 基于DEMATEL的区域洪涝灾害恢复力影响因素及评价指标体系研究-以巢湖流域为例[J]. 长江流域资源与环境, 2015, 24(9):1577-1583. [SUN H H, CHENG X F, DAI M Q, et al. Study on the influence factors and evaluation index system of regional flood disaster resilience based on DEMATEL method-taking Chaohu Basin as a case[J]. Resources and Environment in the Yangtze Basin, 2015, 24(9):1577-1583.] [27] 程先富, 戴梦琴, 郝丹丹. 区域洪涝灾害风险评价研究进展[J]. 安徽师范大学学报(自然科学版), 2015, 38(1):74-79. [CHENG X F, DAI M Q, HAO D D. Research progress on regional flood risk assessment[J]. Journal of Anhui Normal University (Natural Science), 2015, 38(1):74-79.] [28] 董文涛, 程先富, 张群, 等. SCS-CN模型在巢湖流域地表产流估算中的应用[J]. 水土保持通报, 2012, 32(3):174-177, 187. [DONG W T, CHENG X F, ZHANG Q, et al. Application of SCS-CN model estimating surface runoff to Chaohu Lake Basin[J]. Bulletin of Soil and Water Conservation, 2012, 32(3):174-177, 187.] |
[1] | QIAN Hong, YAN Yun-zhi, CHU Ling, ZHU Ren, GAO Jun-feng, CAI Yong-jiu. SPATIAL AND TEMPORAL PATTERNS OF FISH ASSEMBLAGES IN THE RIVERS OF CHAOHU BASIN [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2016, 25(02): 257-264. |
[2] | SUN Hong-hu, CHENG Xian-fu, DAI Meng-qin, WANG Xiang, KANG Hai-di. Study on the influence factors and evaluation index system of regional flood disaster resilience based on dematel method-taking chaohu basin as a case [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2015, 24(09): 1577-1583. |
|