China Safety Science Journal ›› 2026, Vol. 36 ›› Issue (2): 262-270.doi: 10.16265/j.cnki.issn1003-3033.2026.02.0643
• Intelligent Safety Technology • Previous Articles
WANG Shangang(
), YU Qunzhou**(
), YU Jingju
Received:2025-09-11
Revised:2025-12-06
Online:2026-02-28
Published:2026-08-28
Contact:
YU Qunzhou
CLC Number:
WANG Shangang, YU Qunzhou, YU Jingju. Safety evaluation and control of shield tunnel underpass buildings based on entropy weight cloud model[J]. China Safety Science Journal, 2026, 36(2): 262-270.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.cssjj.com.cn/EN/10.16265/j.cnki.issn1003-3033.2026.02.0643
Table 2
Evaluation index system of safety status during shield tunneling construction
| 准则层 | 一级指标 | 二级指标 | 指标符号 |
|---|---|---|---|
| 盾构下 穿施工 过程安 全状 态C | 开挖面 失稳C1 | 土舱压力设置合理性 | C11 |
| 推进和出土速度控制效果 | C12 | ||
| 地下水稳定性 | C13 | ||
| 盾构机和千斤顶性能 | C14 | ||
| 刀盘设计合理性 | C15 | ||
| 渣土改良剂效果 | C16 | ||
| 勘探资料准确性 | C17 | ||
| 盾构机停留时间 | C18 | ||
| 隧道埋深 | C19 | ||
| 水平方向控制效果 | C110 | ||
| 盾构机 环侧土 体位移 C2 | 盾构机和围岩摩擦力 | C21 | |
| 不良地质条件 | C22 | ||
| 地下管网保护效果 | C23 | ||
| 管片密封效果 | C24 | ||
| 同步注浆合理性 | C25 | ||
| 后续土体 固结C3 | 静孔水压力消散 | C31 | |
| 二次注浆合理性 | C32 | ||
| 施工管理 水平C4 | 参建方工程经验 | C41 | |
| 控制措施落实情况 | C42 | ||
| 建筑与隧 道位置关 系C5 | 建筑与隧道水平位置 | C51 | |
| 建筑与隧道竖直距离 | C52 | ||
| 隧道与建筑长边夹角 | C53 |
Table 4
Safety state evaluation cloud of primary indicators for shield tunneling under buildings
| 指标 | 盾构下穿粮库建筑 | 盾构下穿交警大队建筑 | ||||
|---|---|---|---|---|---|---|
| Ex | En | He | Ex | En | He | |
| B1 | 2.834 | 0.394 | 0.101 | 2.690 | 0.417 | 0.176 |
| B2 | 2.516 | 0.478 | 0.261 | 1.678 | 0.460 | 0.125 |
| B3 | 2.849 | 0.565 | 0.269 | 2.357 | 0.469 | 0.112 |
| C1 | 1.819 | 0.458 | 0.159 | 1.949 | 0.501 | 0.206 |
| C2 | 1.908 | 0.674 | 0.193 | 2.083 | 0.459 | 0.251 |
| C3 | 2.001 | 0.532 | 0.195 | 2.084 | 0.282 | 0.213 |
| C4 | 2.542 | 0.436 | 0.105 | 2.655 | 0.358 | 0.084 |
| C5 | 2.922 | 0.449 | 0.339 | 2.332 | 0.500 | 0.207 |
Table 5
Similarity between primary indicator evaluation cloud and standard cloud for shield tunneling under buildings
| 一级 指标 | 评价标准云 | 安全 等级 | ||||
|---|---|---|---|---|---|---|
| 安全(Ⅰ) (0.5,0.167,0.03) | 较安全(Ⅱ) (1.5,0.167,0.03) | 一般安全(Ⅲ) (2.5,0.167,0.03) | 较不安全(Ⅳ) (3.5,0.167,0.03) | 不安全(Ⅴ) (4.5,0.167,0.03) | ||
| BG1 | 0.000 20 | 0.028 09 | 0.515 98 | 0.237 07 | 0.006 99 | Ⅲ |
| BG2 | 0.003 52 | 0.118 81 | 0.973 57 | 0.129 41 | 0.004 04 | Ⅲ |
| BG3 | 0.002 21 | 0.066 78 | 0.574 78 | 0.333 92 | 0.027 65 | Ⅲ |
| BP1 | 0.000 21 | 0.036 63 | 0.677 66 | 0.139 05 | 0.002 02 | Ⅲ |
| BP2 | 0.051 26 | 0.712 04 | 0.157 56 | 0.003 54 | 0.000 01 | Ⅱ |
| BP3 | 0.003 36 | 0.147 24 | 0.764 87 | 0.060 79 | 0.000 77 | Ⅲ |
| CG1 | 0.035 67 | 0.546 59 | 0.242 46 | 0.008 55 | 0.000 04 | Ⅱ |
| CG2 | 0.080 26 | 0.554 11 | 0.412 08 | 0.050 61 | 0.002 13 | Ⅱ |
| CG3 | 0.030 69 | 0.411 27 | 0.413 31 | 0.030 95 | 0.000 49 | Ⅲ |
| CG4 | 0.001 15 | 0.080 99 | 0.924 66 | 0.105 47 | 0.001 79 | Ⅲ |
| CG5 | 0.000 17 | 0.022 91 | 0.436 06 | 0.306 52 | 0.012 27 | Ⅲ |
| CP1 | 0.035 18 | 0.452 48 | 0.369 15 | 0.024 95 | 0.000 34 | Ⅱ |
| CP2 | 0.016 57 | 0.324 11 | 0.461 05 | 0.030 48 | 0.000 35 | Ⅲ |
| CP3 | 0.002 74 | 0.224 58 | 0.366 18 | 0.007 06 | 0.000 01 | Ⅲ |
| CP4 | 0.000 28 | 0.042 63 | 0.730 84 | 0.125 50 | 0.001 72 | Ⅲ |
| CP5 | 0.008 90 | 0.199 05 | 0.753 76 | 0.082 82 | 0.002 16 | Ⅲ |
Table 6
Sensitive risk factors based on weighted fitting weight values
| 二级 指标 | 二级指标 权重值 | 一级指标 权重值 | 加权拟合 权重值 | 安全 状态 |
|---|---|---|---|---|
| C11 | 0.195 0 | 0.209 8 | 0.040 9 | 一般安全 |
| C12 | 0.115 9 | 0.209 8 | 0.024 3 | 一般安全 |
| C13 | 0.090 4 | 0.209 8 | 0.019 0 | 一般安全 |
| C16 | 0.101 2 | 0.209 8 | 0.021 2 | 一般安全 |
| C17 | 0.057 3 | 0.209 8 | 0.012 0 | 一般安全 |
| C21 | 0.304 4 | 0.142 0 | 0.043 2 | 一般安全 |
| C22 | 0.169 9 | 0.142 0 | 0.024 1 | 一般安全 |
| C25 | 0.246 9 | 0.142 0 | 0.035 1 | 一般安全 |
| C31 | 0.465 6 | 0.249 6 | 0.116 2 | 一般安全 |
| C32 | 0.534 4 | 0.249 6 | 0.133 4 | 一般安全 |
| C41 | 0.440 1 | 0.170 7 | 0.075 1 | 一般安全 |
| C42 | 0.559 9 | 0.170 7 | 0.095 6 | 一般安全 |
| [1] |
刘祥勇, 张鑫, 王军, 等. 盾构施工对邻近建筑物群结构影响评价[J]. 隧道与地下工程灾害防治, 2022, 4(3): 99-106.
|
|
|
|
| [2] |
doi: 10.1108/EC-07-2018-0314 |
| [3] |
doi: 10.1016/j.tust.2015.04.004 |
| [4] |
|
| [5] |
|
| [6] |
doi: 10.1007/s11771-023-5307-7 |
| [7] |
|
| [8] |
|
| [9] |
doi: 10.1016/j.autcon.2016.09.003 |
| [10] |
|
| [11] |
骆建军, 张顶立, 王梦恕, 等. 地铁施工对邻近建筑物安全风险管理[J]. 岩土力学, 2007, 28(7):1477-1482.
|
|
|
|
| [12] |
梁超强, 葛忻声, 赵娟, 等. 盾构下穿浅基础建筑的沉降规律分析[J]. 太原理工大学学报, 2021, 52(2): 256-262.
|
|
|
|
| [13] |
陈大川, 刘翔, 何蓓, 等. 长沙城际铁路隧道沿线砌体房屋安全风险研究[J]. 中国安全生产科学技术, 2015, 11(6):87-94.
|
|
|
|
| [14] |
孙斌, 李浩, 毛占利, 等. 基于序关系分析法的大型综合体火灾风险评估[J]. 中国安全科学学报, 2025, 35(2):81-88.
doi: 10.16265/j.cnki.issn1003-3033.2025.02.0202 |
|
doi: 10.16265/j.cnki.issn1003-3033.2025.02.0202 |
|
| [15] |
李德毅, 孟海军, 史雪梅. 隶属云和隶属云发生器[J]. 计算机研究与发展, 1995, 32(6):15-20.
|
|
|
|
| [16] |
李长明, 赵开功, 张晓蕾, 等. 煤矿智能化项目风险评价云模型及其应用[J]. 中国安全科学学报, 2024, 34(5):168-174.
doi: 10.16265/j.cnki.issn1003-3033.2024.05.1680 |
|
doi: 10.16265/j.cnki.issn1003-3033.2024.05.1680 |
|
| [17] |
龚艳冰, 蒋亚东, 梁雪春. 基于模糊贴近度的正态云模型相似度度量[J]. 系统工程, 2015, 33(9):133-137.
|
|
|
| [1] | XIE Hong, YU Yue, XIE Jianfei. Deduction and analysis of safety evaluation models from perspective of work safety [J]. China Safety Science Journal, 2025, 35(S1): 9-13. |
| [2] | QIN Tingrong, ZHANG Xiaojing, LUO Pingping, WU Zhixuan, GUI Yuxiang, XI Yongtao. Risk assessment of ship berthing operations in heavy fog based on cloud model [J]. China Safety Science Journal, 2025, 35(9): 159-166. |
| [3] | DAI Mengfan, LI Lingzhi, QIAN Yuxin, YUAN Jingfeng, HAN Xiaojian, ZHAO Changhao. Decision-support model for safety evaluation of existing civil buildings and its application [J]. China Safety Science Journal, 2025, 35(9): 193-201. |
| [4] | ZOU Patrick X W, LIANG Kunhao. Developing an assessment criteria and method for intrinsic safety of smart highway system [J]. China Safety Science Journal, 2025, 35(9): 28-35. |
| [5] | ZHU Lianbo, YU Zhiqi, TAO Yu, FANG Haixiang. Maturity evaluation of safety management in smart construction site based on trio spaces [J]. China Safety Science Journal, 2025, 35(9): 36-44. |
| [6] | LI Hang, LIU Xinyue, HU Xiaobing. A two-layer assessment model for resilience of civil airport transport services in severe weather [J]. China Safety Science Journal, 2025, 35(9): 78-86. |
| [7] | YOU Bo, WANG Siqi, LIU Heqing, LUO Xiao, YANG Ming, GAO Ke. Research on human heat stress evaluation indexes based on EWM-VIKOR model [J]. China Safety Science Journal, 2025, 35(6): 232-239. |
| [8] | WANG Jingchun, TIAN Siao. Intelligent generation of tunnel high ground temperature prevention and control measures based on cloud case-based reasoning [J]. China Safety Science Journal, 2025, 35(5): 47-55. |
| [9] | HE Yuzhen, WANG Wenjie, CHEN Zhongjie. Downward layered mining based on G1-RF combined empowerment cloud model evaluation of filling stability [J]. China Safety Science Journal, 2025, 35(4): 165-172. |
| [10] | LI Yanjun, XIA Huahua, YAN Hongshuai, LIU Kewei, SONG Ruitao. Safety evaluation of metro station construction in confined space under 500 kV high-voltage lines [J]. China Safety Science Journal, 2025, 35(4): 204-210. |
| [11] | SUN Bin, LI Hao, MAO Zhanli, BAI Zicong, LIU Yanqian. Fire risk assessment of large complex based on order relation analysis method [J]. China Safety Science Journal, 2025, 35(2): 81-88. |
| [12] | LIU Jin'e, JIANG Ming, YUN Ke, XIE Xumeng, LI Yongquan, WANG Banqiao. Safety evaluation of lifting machinery based on game theory-improved cloud model [J]. China Safety Science Journal, 2025, 35(11): 81-91. |
| [13] | CHEN Dachuan, DUAN Xiaofeng, CHEN Mingsi, WEN Zhengdong, SHI Jinsong. Structural safety evaluation of commercial buildings in operation andmaintenance phase based on combined empowerment and improved TOPSIS [J]. China Safety Science Journal, 2025, 35(10): 140-148. |
| [14] | HAO Hongxun, ZHAO Zehai, HUANG Cheng, XU Jiahui. Situational awareness evaluation of flight trainees based on combined weighting cloud model [J]. China Safety Science Journal, 2025, 35(10): 36-43. |
| [15] | ZHENG Xuezhao, DONG Beibei, TONG Xin, WANG Yishuo. Emergency rescue equipment support capability assessment model [J]. China Safety Science Journal, 2025, 35(1): 194-201. |
| Viewed | ||||||
|
Full text |
|
|||||
|
Abstract |
|
|||||