基于DEMATEL-CRITIC方法的复合云模型对倾倒岩质边坡的评价

IF 3.7 Q1 WATER RESOURCES Water science and engineering Pub Date : 2023-09-01 DOI:10.1016/j.wse.2023.04.002
Huan-ling Wang , Xu-fei Zhao , Hong-jie Chen , Kui Yi , Wei-chau Xie , Wei-ya Xu
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引用次数: 3

摘要

库区倾倒岩质边坡发育的安全性评价至关重要。为了降低安全评价的不确定性,本研究建立了复合云模型,通过准则间相关性(CRITIC)方法提高了决策试验与评价实验室(DEMATEL)和准则重要性(criterion importance)的组合权重。根据现场监测数据,建立了安全评价体系。利用后向云生成器计算定量指标云模型的数值特征,并利用不同的虚拟云将一些云综合成一个广义云。通过计算综合数值特征,对岩体边坡的安全性进行综合评价。利用黄登水电站投产以来的监测数据,对黄登水电站附近某岩体垮塌边坡进行了实例分析。结果表明,该倾倒岩质边坡为中等安全边坡,安全裕度较低。复合云模型考虑了安全评价的模糊性和随机性,实现了定性知识和定量知识的相互交换。该研究为评价倾倒岩质边坡的安全性提供了一种新的理论方法。它可以帮助预测、控制甚至预防灾害。
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Evaluation of toppling rock slopes using a composite cloud model with DEMATEL–CRITIC method

Safety evaluation of toppling rock slopes developing in reservoir areas is crucial. To reduce the uncertainty of safety evaluation, this study developed a composite cloud model, which improved the combination weights of the decision-making trial and evaluation laboratory (DEMATEL) and criteria importance through intercriteria correlation (CRITIC) methods. A safety evaluation system was developed according to in situ monitoring data. The backward cloud generator was used to calculate the numerical characteristics of a cloud model of quantitative indices, and different virtual clouds were used to synthesize some clouds into a generalized one. The synthesized numerical characteristics were calculated to comprehensively evaluate the safety of toppling rock slopes. A case study of a toppling rock slope near the Huangdeng Hydropower Station in China was conducted using monitoring data collected since operation of the hydropower project began. The results indicated that the toppling rock slope was moderately safe with a low safety margin. The composite cloud model considers the fuzziness and randomness of safety evaluation and enables interchange between qualitative and quantitative knowledge. This study provides a new theoretical method for evaluating the safety of toppling rock slopes. It can aid in the predication, control, and even prevention of disasters.

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来源期刊
CiteScore
6.60
自引率
5.00%
发文量
573
审稿时长
50 weeks
期刊介绍: Water Science and Engineering journal is an international, peer-reviewed research publication covering new concepts, theories, methods, and techniques related to water issues. The journal aims to publish research that helps advance the theoretical and practical understanding of water resources, aquatic environment, aquatic ecology, and water engineering, with emphases placed on the innovation and applicability of science and technology in large-scale hydropower project construction, large river and lake regulation, inter-basin water transfer, hydroelectric energy development, ecological restoration, the development of new materials, and sustainable utilization of water resources.
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