Seepage behavior assessment of earth-rock dams based on Bayesian network

Author:

He Lu1ORCID,Wang Shijun12,Gu Yanchang12,Pang Qiong12,Wu Yunxing12,Ding Jiefa1,Yan Jihao12

Affiliation:

1. Dam Safety Management Department, Nanjing Hydraulic Research Institute, Nanjing, China

2. Dam Safety Management Center of the Ministry of Water Resources, Nanjing, China

Abstract

Seepage behavior assessment is an important part of the safety operation assessment of earth-rock dams, because of insufficient intelligent analysis of monitoring information, abnormal phenomena or measured values are often ignored or improperly processed. To improve the intelligent performance of the monitoring system, this article has established an assessment framework covering project quality, maintenance status, monitoring data analysis, and on-site inspection based on the relevant norms of seepage safety assessment of earth-rock dams and the expert survey scoring method, and the Leaky Noisy-OR Gate extended model were used to determine the probability of events, and the dynamic and static Bayesian networks used to assess the possibility of seepage failure of earth-rock dams and diagnose the most likely cause of failure. The function of static and dynamic Bayesian networks to assess the seepage behavior of earth-rock dams, abnormal measured values, and causes of anomalies can make up for the limitations of reservoir management personnel and monitoring system in seepage failure experience and seepage knowledge of earth-rock dams and enable better handling of abnormal phenomena and monitoring information, making the monitoring system more intelligent.

Funder

National Natural Science Foundation of China

national key research and development program of china

Publisher

SAGE Publications

Subject

Computer Networks and Communications,General Engineering

Reference34 articles.

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2. National register of reservoir dam failures. Beijing: Engineering Administration Bureau of Resources, 1981.

3. National register of reservoir dam failures (1981–1990). Beijing: Water Conservancy Management Department Resources, 1993.

4. Deterioration of dams and reserviors. Paris: International Commission on Large Dams, 1974.

5. Deterioration of dams and reserviors. Paris: International Commission on Large Dams, 1983.

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