On Dam Failure Induced Seismic Signals Using Laboratory Tests and on Breach Morphology due to Overtopping by Modeling
Dam models were constructed in an indoor flume to test dam breach failure processes to study the seismic signals induced. A simple dam breach model was also proposed to estimate hydrographs for dam breach floods. The test results showed that when the retrogressive erosion due to seepage of the dam c...
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MDPI AG
2021-10-01
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Online Access: | https://www.mdpi.com/2073-4441/13/19/2757 |
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author | Chi-Yao Hung I-Fan Tseng Su-Chin Chen Zheng-Yi Feng |
author_facet | Chi-Yao Hung I-Fan Tseng Su-Chin Chen Zheng-Yi Feng |
author_sort | Chi-Yao Hung |
collection | DOAJ |
description | Dam models were constructed in an indoor flume to test dam breach failure processes to study the seismic signals induced. A simple dam breach model was also proposed to estimate hydrographs for dam breach floods. The test results showed that when the retrogressive erosion due to seepage of the dam continues, it will eventually reach the crest at the upstream side of the dam, and then trigger overtopping and breaching. The seismic signals corresponding to the failure events during retrogressive erosion and overtopping of the dam models were evaluated. Characteristics of the seismic signals were analyzed by Hilbert–Huang transform. Based on the characteristics of the seismic signals, we found four types of mass movement during the retrogressive erosion process, i.e., the single, intermittent, and successive slides and fall. There were precursor seismic signals found caused by cracking immediately before the sliding events of the dam. Furthermore, the dam breach modeling results coincided well with the test results and the field observations. From the test and modeling results, we confirmed that the overtopping discharge and the lateral sliding masses of the dam are also among the important factors influencing the evolution of the breach. In addition, the widening rate of the breach decreases with decreased discharge. The proposed dam breach model can be a useful tool for dam breach warning and hazard reduction. |
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institution | Directory Open Access Journal |
issn | 2073-4441 |
language | English |
last_indexed | 2024-03-10T06:48:39Z |
publishDate | 2021-10-01 |
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series | Water |
spelling | doaj.art-db388696eac8400f838fd3536e793f932023-11-22T17:02:14ZengMDPI AGWater2073-44412021-10-011319275710.3390/w13192757On Dam Failure Induced Seismic Signals Using Laboratory Tests and on Breach Morphology due to Overtopping by ModelingChi-Yao Hung0I-Fan Tseng1Su-Chin Chen2Zheng-Yi Feng3Department of Soil and Water Conservation, National Chung Hsing University, Taichung 40227, TaiwanDepartment of Soil and Water Conservation, National Chung Hsing University, Taichung 40227, TaiwanDepartment of Soil and Water Conservation, National Chung Hsing University, Taichung 40227, TaiwanDepartment of Soil and Water Conservation, National Chung Hsing University, Taichung 40227, TaiwanDam models were constructed in an indoor flume to test dam breach failure processes to study the seismic signals induced. A simple dam breach model was also proposed to estimate hydrographs for dam breach floods. The test results showed that when the retrogressive erosion due to seepage of the dam continues, it will eventually reach the crest at the upstream side of the dam, and then trigger overtopping and breaching. The seismic signals corresponding to the failure events during retrogressive erosion and overtopping of the dam models were evaluated. Characteristics of the seismic signals were analyzed by Hilbert–Huang transform. Based on the characteristics of the seismic signals, we found four types of mass movement during the retrogressive erosion process, i.e., the single, intermittent, and successive slides and fall. There were precursor seismic signals found caused by cracking immediately before the sliding events of the dam. Furthermore, the dam breach modeling results coincided well with the test results and the field observations. From the test and modeling results, we confirmed that the overtopping discharge and the lateral sliding masses of the dam are also among the important factors influencing the evolution of the breach. In addition, the widening rate of the breach decreases with decreased discharge. The proposed dam breach model can be a useful tool for dam breach warning and hazard reduction.https://www.mdpi.com/2073-4441/13/19/2757dam breachseepageovertoppingseismic signalflume testbreach model |
spellingShingle | Chi-Yao Hung I-Fan Tseng Su-Chin Chen Zheng-Yi Feng On Dam Failure Induced Seismic Signals Using Laboratory Tests and on Breach Morphology due to Overtopping by Modeling Water dam breach seepage overtopping seismic signal flume test breach model |
title | On Dam Failure Induced Seismic Signals Using Laboratory Tests and on Breach Morphology due to Overtopping by Modeling |
title_full | On Dam Failure Induced Seismic Signals Using Laboratory Tests and on Breach Morphology due to Overtopping by Modeling |
title_fullStr | On Dam Failure Induced Seismic Signals Using Laboratory Tests and on Breach Morphology due to Overtopping by Modeling |
title_full_unstemmed | On Dam Failure Induced Seismic Signals Using Laboratory Tests and on Breach Morphology due to Overtopping by Modeling |
title_short | On Dam Failure Induced Seismic Signals Using Laboratory Tests and on Breach Morphology due to Overtopping by Modeling |
title_sort | on dam failure induced seismic signals using laboratory tests and on breach morphology due to overtopping by modeling |
topic | dam breach seepage overtopping seismic signal flume test breach model |
url | https://www.mdpi.com/2073-4441/13/19/2757 |
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