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Analysis of seismic disaster failure mechanism and dam-break simulation of high arch dam
Authors:Jingkui Zhang  Liaojun Zhang
Institution:1. Anhui and Huaihe River Institute of Hydraulic Research, Bengbu, 233000, China
3. Anhui and Huaihe River Institute of Hydraulic Research, No.771, Zhihuai Road, Bengbu, 233000, Anhui, China
2. College of Water Conservancy and Hydropower Engineering, Hohai University, Nanjing, 210098, China
Abstract:Based on a Chinese national high arch dam located in a meizoseismal region, a nonlinear numerical analysis model of the damage and failure process of a dam-foundation system is established by employing a 3-D deformable distinct element code (3DEC) and its re-development functions. The proposed analysis model considers the dam-foundation-reservoir coupling effect, influence of nonlinear contact in the opening and closing of the dam seam surface and abutment rock joints during strong earthquakes, and radiation damping of far field energy dissipation according to the actual workability state of an arch dam. A safety assessment method and safety evaluation criteria is developed to better understand the arch dam system disaster process from local damage to ultimate failure. The dynamic characteristics, disaster mechanism, limit bearing capacity and the entire failure process of a high arch dam under a strong earthquake are then analyzed. Further, the seismic safety of the arch dam is evaluated according to the proposed evaluation criteria and safety assessment method. As a result, some useful conclusions are obtained for some aspects of the disaster mechanism and failure process of an arch dam. The analysis method and conclusions may be useful in engineering practice.
Keywords:high arch dam  complex foundation  DEC  disaster mechanism  dam-break process simulation  seismic safety evaluation
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