China Safety Science Journal ›› 2025, Vol. 35 ›› Issue (5): 255-262.doi: 10.16265/j.cnki.issn1003-3033.2025.05.1448
• Emergency technology and management • Previous Articles Next Articles
LIU Donghua(), ZHANG Ruiyang, GUO Li
Received:
2024-12-11
Revised:
2025-02-19
Online:
2025-05-28
Published:
2025-11-28
CLC Number:
LIU Donghua, ZHANG Ruiyang, GUO Li. Emergency response capacity assessment for urban flooding disasters based on improved DS theory and FBN[J]. China Safety Science Journal, 2025, 35(5): 255-262.
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URL: http://www.cssjj.com.cn/EN/10.16265/j.cnki.issn1003-3033.2025.05.1448
Table 4
Evaluation results of tertiary indicators by 4 experts
指标 | 专家1 | 专家2 | 专家3 | 专家4 |
---|---|---|---|---|
A11 | ({V1},0.8;{V2},0.2}) | ({V1,1}) | ({V1},0.9;{V2},0.1}) | ({V1},0.5;{V2},0.5}) |
A12 | ({V1},0.2;{V2},0.8}) | ({V2},1}) | ({V1},0.3;{V2},0.7}) | ({V1},0.1;{V2},0.9}) |
A13 | ({V2},0.8;{V3},0.2}) | ({V2},0.3;{V3},0.7}) | ({V2},0.6;{V3},0.4}) | ({V2},0.5;{V3},0.5}) |
A14 | ({V1},0.6;{V2},0.4}) | ({V1},0.3;{V2},0.7}) | ({V1},0.7;{V2},0.3}) | ({V1},0.2;{V2},0.8}) |
Table 6
Fusion results of index evaluation and their weights
指标 | 融合评估 | 最终评估结果 | 权重 |
---|---|---|---|
A11 | m({V1})=0.997 6;m({V2}) =0.002 4 | 0.899 5 | 0.299 9 |
A12 | m({V1})=0.001 0;m({V2}) =0.999 0 | 0.700 2 | 0.233 4 |
A13 | m({V2})=0.690 5;m({V3}) =0.309 5 | 0.638 1 | 0.212 7 |
A14 | m({V1})=0.309 5;m({V2}) =0.690 5 | 0.761 9 | 0.254 0 |
A1 | m({V1})=0.998 3;m({V2}) =0.001 7 | 0.899 7 | 0.515 0 |
A2 | m({V1})=0.736 5;m({V2}) =0.263 5 | 0.847 3 | 0.485 0 |
A | m({V1})=0.999;m({V2}) =0.001 | 0.899 7 | 0.321 2 |
B | m({V2})=0.996 4;m({V3}) =0.003 6 | 0.699 3 | 0.249 6 |
C | m({V1})=0.012 2;m({V2}) =0.987 8 | 0.702 4 | 0.250 3 |
D | m({V3})=0.998 8;m({V4}) =0.001 2 | 0.499 8 | 0.178 7 |
Table 7
Fault tree basic event probabilities
编号 | 事件 | 排序 | φi | Pi |
---|---|---|---|---|
X1 | 运维管理不当 | 4 | 0.727 | 0.083 |
X2 | 调度措施不当 | 5 | 0.636 | 0.073 |
X3 | 雨水设施规划设计标准低 | 3 | 0.818 | 0.093 |
X4 | 管网建设不完善 | 1 | 1 | 0.114 |
X5 | 雨水设施组件老化 | 8 | 0.364 | 0.041 |
X6 | 雨污分流不彻底 | 2 | 0.909 | 0.104 |
X7 | 源头减排设施欠缺 | 6 | 0.545 | 0.062 |
X8 | 不透水面增加 | 7 | 0.455 | 0.052 |
X9 | 河道运力不足 | 10 | 0.182 | 0.021 |
X10 | 调蓄设施欠缺 | 9 | 0.273 | 0.031 |
X11 | 排放通道缺乏 | 11 | 0.091 | 0.010 |
Table 8
Bayesian root node prior probabilities
编号 | 状态 | 专家1 | 专家2 | 专家3 | 专家4 | 均值 | 解模糊 | 归一化 |
---|---|---|---|---|---|---|---|---|
A11 | 是 | (0,0,0.1) | (0,0,0.1) | (0,0,0.1) | (0,0,0.1) | (0,0,0.1) | 0.0250 | 0.0250 |
否 | (0.9,1,1) | (0.9,1,1) | (0.9,1,1) | (0.9,1,1) | (0.9,1,1) | 0.9750 | 0.9750 | |
A12 | 是 | (0,0,0.1) | (0,0.1,0.3) | (0,0.1,0.3) | (0,0,0.1) | (0,0.05,0.2) | 0.0750 | 0.0750 |
否 | (0.9,1,1) | (0.7,0.9,1) | (0.7,0.9,1) | (0.9,1,1) | (0.8, 0.95, 1.0) | 0.9250 | 0.9250 | |
A13 | 是 | (0.0.1,0.3) | (0.1,0.3,0.5) | (0.0.1,0.3) | (0.0.1,0.3) | (0.025,0.15,0.35) | 0.1687 | 0.1687 |
否 | (0.7,0.9,1) | (0.5,0.7,0.9) | (0.7,0.9,1) | (0.7,0.9,1) | (0.65,0.85,0.975) | 0.8313 | 0.8313 | |
A14 | 是 | (0,0.1,0.3) | (0,0.1,0.3) | (0,0,0.1) | (0.1,0.3,0.5) | (0.025,0.125,0.3) | 0.1437 | 0.1437 |
否 | (0.7,0.9,1) | (0.7,0.9,1) | (0.9,1,1) | (0.5,0.7,0.9) | (0.7, 0.875, 0.975) | 0.8563 | 0.8563 |
[1] |
赵超辉, 万金红, 张云霞, 等. 城市内涝特征、成因及应对研究综述[J]. 灾害学, 2023, 38(1): 220-228.
|
|
|
[2] |
汪军能, 秦年秀, 姜彤, 等. IPCC AR6报告解读:气候变化对城市、住宅和关键基础设施的影响与适应[J]. 气候变化研究进展, 2022, 18(4): 433-441.
|
|
|
[3] |
中华人民共和国应急管理部. 国家防灾减灾救灾委员会办公室应急管理部发布2023年全国自然灾害基本情况[EB/OL].(2024-01-20).https://www.mem.gov.cn/xw/yjglbgzdt/202401/t20240120_475697.shtml.
|
[4] |
|
[5] |
|
[6] |
刘云熹, 时德轶, 张鹏, 等. 城市灾害事故应急能力评估指标体系构建研究[J]. 中国安全生产科学技术, 2024, 20(1): 179-186.
|
|
|
[7] |
|
[8] |
齐春泽, 代文锋. 基于云模型的城市灾害应急能力评价[J]. 统计与决策, 2019, 35(4): 41-45.
|
|
|
[9] |
彭恒明, 王铁骊. 基于Z-numbers的城市内涝灾害应急能力评价研究[J]. 中国安全生产科学技术, 2020, 16(5): 115-121.
|
|
|
[10] |
胡孙琪, 徐晓玲, 胡煜文, 等. 基于AHP-模糊综合法的城市应急管理能力评价研究[J]. 武汉理工大学学报:信息与管理工程版, 2022, 44(2): 188-194.
|
|
|
[11] |
|
[12] |
|
[13] |
李金蓉, 杨玉中. DS理论-贝叶斯网络下的煤矿通风系统风险评估[J]. 中国安全科学学报, 2022, 32(8): 146-153.
doi: 10.16265/j.cnki.issn1003-3033.2022.08.1633 |
doi: 10.16265/j.cnki.issn1003-3033.2022.08.1633 |
|
[14] |
蒋俊, 陈妍, 贺钢锋, 等. 城市应急准备能力评估体系构建及应用[J]. 中国安全科学学报, 2023, 33(6): 190-197.
doi: 10.16265/j.cnki.issn1003-3033.2023.06.2446 |
doi: 10.16265/j.cnki.issn1003-3033.2023.06.2446 |
|
[15] |
徐瑞华, 张攀科, 罗帆, 等. 河南省社区居民洪涝灾害应急能力评价研究[J]. 安全与环境工程, 2024, 31(3): 23-31.
|
|
|
[16] |
GB 50318—2017, 城市排水工程规划规范[S].
|
GB 50318-2017, Code for urban wastewater and stormwater engineering planning[S].
|
|
[17] |
GB 51222—2017, 城镇内涝防治技术规范[S].
|
GB 51222-2017, Technical specification for urban flood control[S].
|
|
[18] |
|
[19] |
杨震, 刘哲明, 郭梨. 金属矿深井充填管道系统失效风险可视化分析方法[J]. 金属矿山, 2022 (4): 173-179.
|
|
|
[20] |
|
[21] |
赵振武, 贾朋霖. 融合改进D-S理论与贝叶斯网络的机场旅客风险研究[J]. 安全与环境学报, 2023, 23(12): 4425-4434.
|
|
|
[22] |
田晓敏, 李晓冬. 基于故障树-模糊贝叶斯网络的装配式建筑施工质量风险分析[J]. 科学技术与工程, 2024, 24(30): 13 119-13 126.
|
|
[1] | LI Jinrong, YANG Yuzhong. Risk assessment of ventilation system in coal mines based on DS theory and Bayesian network [J]. China Safety Science Journal, 2022, 32(8): 146-153. |
[2] | WANG Jiakun, WANG Xinhua, WANG Chen. Research on coal miners' unsafe behavior based on job satisfaction [J]. China Safety Science Journal, 2018, 28(11): 14-20. |
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