[1] 冯培华,向灵芝,罗亮,等.基于灾害熵与层次分析法的泥石流危险性评价对比分析:以甘肃省迭部县为例[J].科学技术与工程,2023,23(29):12416-12426.
FENG Peihua, XIANG Lingzhi, LUO Liang, et al. Comparative analysis of debris flow risk assessment based on disaster entropy and analytic hierarchy process: A case study of Diebu County, Gansu Province[J]. Science Technology and Engineering, 2023, 23(29): 12416-12426.
[2] 刘善军,刘诗瑶,魏恋欢,等.基于子流域单元的抚顺市泥石流易发性及危险性评价[J].东北大学学报(自然科学版),2024,45(5):713-720.
LIU Shanjun, LIU Shiyao, WEI Lianhuan. Debris flow susceptibility and hazard assessment in Fushun City based on hydrological response units[J]. Journal of Northeastern University(Natural Science), 2024, 45(5):713-720.
[3] 徐繁树,王保云,韩俊.一种沟谷型潜在泥石流危险性评价方法:基于多源数据融合的卷积神经网络[J].地球信息科学学报,2023,25(3):588-605.
XU Fanshu, WANG Baoyun, HAN Jun. A potential gully debris flows hazard assessment method: A CNN model based on multi-source data fusion[J]. Journal of Geo-information Science, 2023, 25(3):588-605.
[4] 李莉,倪波,强跃,等.基于改进云模型和线性规划优化算法的山区泥石流危险性评价[J].重庆交通大学学报(自然科学版),2024,43(7):34-43.
LI Li, NI Bo, QIANG Yue, et al. Risk assessment of mountain debris flows based on improved cloud model and linear programming optimization algorithm[J]. Journal of Chongqing Jiaotong University (Natural Science), 2024, 43(7):34-43.
[5] 李宝幸,蔡强,宋军,等.基于FLO-2D的泥石流灾害风险评价—以麦多沟泥石流为例[J].自然灾害学报,2022,31(4):256-265.
LI Baoxing, CAI Qiang, SONG Jun, et al. Risk assessment of debris flow hazard based on FLO-2D: A case study of debris flow in Maiduo Gully[J]. Journal of Natural Disasters, 2022, 31(4):256-265.
[6] 庞海松,谢骏锦,张小明,等.基于RAMMS数值模拟的短时强降雨型泥石流危险性评价[J].地质科技通报,2024,43(2):215-225.
PANG Haisong, XIE Junjin, ZHANG Xiaoming, et al. Hazard assessment of debris flow induced by short-time heavy rainfall based on RAMMS numerical simulation[J]. Bulletin of Geological Science and Technology, 2024, 43(2):215-225.
[7] 杨鑫,孟华君,路璐,等.基于Massflow的达摩沟泥石流模拟与危险性分析[J].人民长江,2023,54(8):146-152.
YANG Xin, MENG Huajun, LU Lu, et al. Numerical simulation and risk analysis of mudslide in Dharma Gully sub-basin based on Massflow[J]. Yangtze River, 2023, 54(8):146-152.
[8] 熊朝正,吉锋,石豫川.基于Massflow模型的青龙沟台风暴雨型泥石流运动特征研究[J].人民珠江,2023,44(3):17-22.
XIONG Chaozheng, JI Feng, SHI Yuchuan. Movement characteristics of typhoon rainstorm-triggered debris flow in Qinglong Gully based on Massflow model[J]. Pearl River, 2023, 44(3):17-22.
[9] SUN Tong, SUN Dongya, WANG Xiekang, et al. Numerical analysis of landslide-generated debris flow on July 3, 2021 in Izu Mountain area, Shizuoka County, Japan[J]. Journal of Mountain Science, 2022, 19(6):1738-1747.
[10] 史继帅,姜亮,翟胜强.四川甘洛县黑西洛沟“8·31”泥石流动力过程[J].中国地质灾害与防治学报,2024,35(3):52-60.
SHI Jishuai, JIANG Liang, ZHAI Shengqiang. Dynamic process of the “8·31” debris flow in Luoxi gulley of Ganluo County, Sichuan Province[J].The Chinese Journal of Geological Hazard and Control, 2024, 35(3):52-60.
[11] 邱恩喜,王彬,孙希望,等.四川甘洛自勒沟泥石流运动特征及预测防治效果研究[J].防灾减灾工程学报,2023,43(5):934-945.
QIU Enxi, WANG Bing, SUN Xiwang, et al. Study on the movement characteristics and predicted prevention effect of debris flow in Zile Valley, Ganluo, Sichuan[J]. Journal of Disaster Prevention and Mitigation Engineering, 2023, 43(5):934-945.
[12] 常鸣.基于遥感及数值模拟的强震区泥石流定量风险评价研究[D].成都:成都:成都理工大学,2014.
CHANG Ming.Quantitative Risk Assessment of Debris Flow in Coseismic Area Based on Remote Sensing and Numerical Simulation[D]. Chengdu: Chengdu University of Technology, 2014. |