[1]马建华,胡维忠.我国山洪灾害防灾形势及防治对策[J]. 人民长江,2005,36(6):3-5.
[2]黄蕙,温家洪,司瑞洁,等.自然灾害风险评估国际计划述评Ⅰ[J].灾害学,2008,23(2):112-116.
[3]万军,周月华,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.
WAN Jun, ZHOU Yuehua, et al. Flood disaster and risk evaluation approach based on the GIS in Hubei province[J]. Torrential Rain and Disasters, 2007, 26(4): 328-333.
[4]孙鸿鹄,程先富,等.基于云模型和熵权法的巢湖流域防洪减灾能力评估[J].灾害学,2015,30,(1):222-227.
SUN Honghu,CHENG Xianfu,NI Ling,et al. Capacity evaluation of flood disaster prevention and reduction in chaohu basin based on cloud model and entropy weight method[J]. Journal of Catastrophology, 2015, 30(1): 222-227.
[5]田玉刚,杜渊会,覃东华,等. 基于数据场和云模型的洪水灾害风险等级评估[J].中国安全科学学报,2011,21(8):158-163.
TIAN Yugang, DU Yuanhui, QIN Donghu, et al. Flood risk evaluation methods based on data field and cloud model[J]. China Safety Science Journal, 2011, 21(8): 158-163.
[6]殷杰,尹占娥,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.
YIN Jie, YIN Zhane, et al. Vulnerability analysis for storm induced flood: a case study of Huangpu River Basin[J]. Scientia Geographica Sinca, 2012,32(9):1155-1160.
[7]葛学礼,朱立新,李永红,等.自然灾害对村镇建筑的破坏与防御[J].中国减灾,2001,11(1):38-42.
[8]张平仓,任洪玉, 等.中国山洪放置区划初探[J].水土保持学报,2006,20(6): 196-200.
ZHANG Pingcang, REN Hongyu, et al. An elementary study on Chinese mountain torrents disaster prevention regionalization[J]. Journal of Soil and Water Conservation, 2006, 20(6): 196-200.
[9]王凯博,高宝玲,等.博州山洪灾害防治对策探讨[J].水土保持研究,2007,14(1): 289-294.
WANG Kaibo, GAO Baoling, et al. Disscussion on the prevention and control measures of mountain torrents in Bozhou District[J]. Research of Soil and Water Conservation, 2007, 14(1): 289-294.
[10]张磊,王文,文明章,等.基于“FloodArea”模型的山洪灾害精细化预警方法研究[J].复旦学报(自然科学版),2015,54(3):282-287.
ZHANG Lei, WANG Wen, WEN Mingzhang, et al. Reaserch on refined early-warning method of mountain flood disaster based on flood area[J]. Journal of Fudan University(Natural Science), 2015, 54(3): 282-287.
[11]冯平,钟翔,张波.基于人工神经网络的干旱程度评估方法[J].系统工程理论与实践,2000,20(3):141-144.
FENG Ping, ZHONG Xiang, ZHANG Bo. A drought degree evaluation method based on the artificial neural network[J]. System Engineering Theory & Practice, 2000, 20(3): 141-144.
[12]曹秀英,梁静国.基于粗糙集理论的属性权重确定方法[J].中国管理科学,2002,10(5):98-100.
CAO Xiuying, LIANG Jingguo. The method of ascertaining attribute weight based on rough sets theory[J]. Chinese Journal of Management Science, 2002, 10(5): 98-100.
[13]高娇娇,王威,苏经宇,等.区域自然灾害综合风险模糊随机评价方法[J].中国安全生产科学技术,2014,10(5): 103-108.
GAO Jiaojiao, WANG Wei, SU Jingyu, et al. Fuzzy stochastic simulation method for comprehensive risk assessment of regional natural disaster[J]. Journal of Safety Science and Technology, 2014,10(5): 103-108.
[14]黄建文,王东,廖再毅, 等. 基于组合赋权法和云理论的震后重建住宅工程质量评价研究[J].中国安全生产科学技术,2016,12(3): 127-132.
HUANG Jianwen, WANG Dong, LIAO Zaiyi, et al. Evaluation on engineering quality of post-earthquake reconstruction residential buildings based on combined weight method and cloud theory[J]. Journal of Safety Science and Technology, 2016,12(3): 127-132.
[15]李德毅,杜鹢.不确定性人工智能[M].北京:国防工业出版社,2014.