China Safety Science Journal ›› 2023, Vol. 33 ›› Issue (6): 88-95.doi: 10.16265/j.cnki.issn1003-3033.2023.06.0860
• Safety engineering technology • Previous Articles Next Articles
LUO Zhenhua1(), GUO Juntao1,**(
), HAN Jianqiang2
Received:
2023-01-10
Revised:
2023-04-08
Online:
2023-08-07
Published:
2023-12-28
Contact:
GUO Juntao
LUO Zhenhua, GUO Juntao, HAN Jianqiang. Construction safety risk assessment of prefabricated subway station based on cloud model[J]. China Safety Science Journal, 2023, 33(6): 88-95.
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URL: http://www.cssjj.com.cn/EN/10.16265/j.cnki.issn1003-3033.2023.06.0860
Tab.1
Weights of construction safety assessment index
指标 | 客观权重 | 主观权重 | 组合权重 |
---|---|---|---|
R1 | 0.184 0 | 0.171 4 | 0.178 3 |
R2 | 0.119 9 | 0.133 2 | 0.125 9 |
R3 | 0.192 4 | 0.191 9 | 0.192 2 |
R4 | 0.224 9 | 0.201 4 | 0.214 3 |
R5 | 0.147 8 | 0.145 5 | 0.146 7 |
R6 | 0.131 0 | 0.156 7 | 0.142 6 |
R11 | 0.358 1 | 0.337 5 | 0.352 3 |
R12 | 0.385 5 | 0.348 0 | 0.374 9 |
R13 | 0.256 3 | 0.314 6 | 0.272 8 |
R21 | 0.285 7 | 0.296 6 | 0.289 6 |
R22 | 0.388 9 | 0.360 2 | 0.378 8 |
R23 | 0.325 3 | 0.343 3 | 0.331 7 |
R31 | 0.214 2 | 0.224 7 | 0.218 8 |
R32 | 0.197 5 | 0.195 2 | 0.196 5 |
R33 | 0.224 1 | 0.210 9 | 0.218 4 |
R34 | 0.171 3 | 0.193 4 | 0.180 9 |
R35 | 0.192 9 | 0.175 7 | 0.185 5 |
R41 | 0.212 3 | 0.162 1 | 0.192 2 |
R42 | 0.149 2 | 0.148 6 | 0.149 0 |
R43 | 0.169 7 | 0.160 5 | 0.166 0 |
R44 | 0.143 7 | 0.146 8 | 0.144 9 |
R45 | 0.111 4 | 0.133 5 | 0.120 3 |
R46 | 0.100 2 | 0.123 0 | 0.109 3 |
R47 | 0.113 6 | 0.125 4 | 0.118 3 |
R51 | 0.302 1 | 0.325 5 | 0.310 7 |
R52 | 0.325 5 | 0.309 5 | 0.319 6 |
R53 | 0.372 4 | 0.365 0 | 0.369 7 |
R61 | 0.237 8 | 0.224 5 | 0.232 7 |
R62 | 0.333 1 | 0.272 6 | 0.309 9 |
R63 | 0.217 2 | 0.259 8 | 0.233 6 |
R64 | 0.211 9 | 0.243 0 | 0.223 9 |
Tab.3
Digital characteristics of second-level index clouds
二级指标 | |||
---|---|---|---|
R11 | 70.832 0 | 3.865 6 | 0.502 1 |
R12 | 69.545 2 | 2.764 8 | 1.638 5 |
R13 | 70.872 1 | 4.237 2 | 2.752 4 |
R21 | 84.367 8 | 4.852 4 | 1.683 7 |
R22 | 78.569 5 | 5.533 7 | 2.545 8 |
R23 | 82.274 4 | 4.468 2 | 1.287 1 |
R31 | 83.189 5 | 4.623 1 | 0.926 1 |
R32 | 77.870 6 | 3.763 2 | 1.511 7 |
R33 | 79.623 8 | 5.034 6 | 0.493 4 |
R34 | 78.485 4 | 3.782 5 | 1.357 3 |
R35 | 80.358 6 | 4.368 3 | 0.497 2 |
R41 | 66.592 6 | 4.056 2 | 1.249 3 |
R42 | 68.269 1 | 5.670 6 | 1.104 1 |
R43 | 70.257 6 | 4.645 8 | 1.362 4 |
R44 | 67.468 5 | 4.260 5 | 1.137 6 |
R45 | 73.638 2 | 3.357 3 | 1.093 4 |
R46 | 66.377 8 | 5.236 9 | 1.742 5 |
R47 | 75.896 5 | 3.567 3 | 0.890 1 |
R51 | 86.150 1 | 5.332 5 | 0.783 2 |
R52 | 87.065 5 | 4.949 6 | 0.347 5 |
R53 | 82.438 4 | 5.463 1 | 0.564 7 |
R61 | 80.764 2 | 4.538 8 | 1.674 6 |
R62 | 86.235 4 | 7.221 5 | 2.062 4 |
R63 | 76.124 7 | 5.364 1 | 1.316 2 |
R64 | 84.224 3 | 5.902 7 | 1.067 6 |
Tab.5
Similarity calculation result
相似度 | 低风险 | 较低风险 | 中风险 | 较高风险 | 高风险 |
---|---|---|---|---|---|
R | 0.000 2 | 0.265 9 | 0.036 7 | 0.017 6 | 0.000 9 |
R1 | 0.000 0 | 0.070 3 | 0.171 8 | 0.043 8 | 0.001 6 |
R2 | 0.001 7 | 0.370 7 | 0.011 9 | 0.015 7 | 0.000 3 |
R3 | 0.001 0 | 0.338 8 | 0.016 5 | 0.012 9 | 0.000 0 |
R4 | 0.000 0 | 0.058 7 | 0.204 8 | 0.043 8 | 0.000 9 |
R5 | 0.013 0 | 0.336 5 | 0.003 7 | 0.008 9 | 0.000 3 |
R6 | 0.001 3 | 0.365 6 | 0.008 5 | 0.010 5 | 0.000 3 |
Tab.6
Calculation results of various methods
指标 | 文中 方法 | 熵权-云 模型 | 模糊综合 评判 | 灰色聚类 分析 |
---|---|---|---|---|
R | 77.266 4 | 77.121 8 | 75.410 4 | 79.458 7 |
R1 | 70.360 5 | 70.335 6 | 71.286 3 | 72.025 8 |
R2 | 81.477 4 | 81.527 1 | 79.080 3 | 81.121 6 |
R3 | 79.989 7 | 79.992 4 | 77.666 9 | 80.850 4 |
R4 | 69.502 5 | 69.404 9 | 69.128 8 | 71.611 5 |
R5 | 85.070 5 | 85.197 1 | 77.657 4 | 81.882 6 |
R6 | 82.150 4 | 82.200 3 | 81.075 0 | 81.230 9 |
[1] |
国务院办公厅. 关于大力发展装配式建筑的指导意见[Z]. 2016-09-30.
|
[2] |
doi: 10.1016/j.scs.2018.11.010 |
[3] |
doi: 10.1016/j.tust.2022.104533 |
[4] |
宋冉, 张继清, 崔涛, 等. 双跨无柱装配式地铁车站结构力学特性分析[J]. 铁道标准设计, 2021, 65(2):123-127, 178.
|
|
|
[5] |
陈久恒. 预制装配式地铁车站施工技术研究[J]. 铁道建筑技术, 2015(11):62-65,69.
|
|
|
[6] |
doi: 10.1016/j.tust.2020.103717 |
[7] |
王乾坤, 亢显卫, 朱科. 地铁深基坑施工风险耦合评价方法[J]. 东北大学学报:自然科学版, 2021, 42(8): 1153-1158.
|
|
|
[8] |
doi: 10.1007/s12205-019-1854-8 |
[9] |
潘海泽, 贺建, 陈梦捷, 等. 基于突变级数法的地铁车站基坑施工风险研究[J]. 地下空间与工程学报, 2017, 13(3): 840-845.
|
|
|
[10] |
|
[11] |
王刚, 李俊松, 张兴刚. 地铁区间暗挖隧道下穿既有铁路站场安全风险管理研究[J]. 铁道标准设计, 2014, 58(9): 93-98.
|
|
|
[12] |
GB 50715—2011, 地铁工程施工安全评价标准[S].
|
GB50715-2011, Standard for construction safety assessment of metro engineering[S].
|
|
[13] |
GB 50652—2011, 城市轨道交通地下工程建设风险管理规范[S].
|
GB 50652-2011, Code for risk management of underground works in urban rail transit[S].
|
|
[14] |
闫文周, 门雪, 杨翻艳. 基于相互作用矩阵的地铁施工风险评价[J]. 武汉大学学报:工学版, 2019, 52(9):796-801.
|
|
|
[15] |
姜明. 高速公路长大隧道交通标志效用机理研究[D]. 北京: 北京工业大学, 2019.
|
|
|
[16] |
申建红, 盖立庭, 万索妮, 等. 基于模糊集与改进证据理论的深基坑施工风险评价[J]. 土木工程与管理学报, 2019, 36(2):28-34,41.
|
|
|
[17] |
李英攀, 刘名强, 王芳, 等. 装配式建筑项目安全绩效云模型评价方法[J]. 中国安全科学学报, 2017, 27(6): 115-120.
doi: 10.16265/j.cnki.issn1003-3033.2017.06.020 |
doi: 10.16265/j.cnki.issn1003-3033.2017.06.020 |
|
[18] |
鲍学英, 王起才, 宫文昌. 基于模糊层次分析法的地铁工程施工安全评价[J]. 中国安全生产科学技术, 2013, 9(1):136-139.
|
|
|
[19] |
陈茸, 韩宝安, 韩宝华, 等. 基于CUOWGA算子赋权的建筑施工安全灰色聚类评价[J]. 安全与环境工程, 2020, 27(5): 98-105.
|
|
|
[20] |
申玲, 唐晔文, 牟月. 基于Cloud-BN的装配式住宅构件吊装安全评价[J]. 中国安全科学学报, 2019, 29(10):147-153.
doi: 10.16265/j.cnki.issn1003-3033.2019.10.023 |
doi: 10.16265/j.cnki.issn1003-3033.2019.10.023 |
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