Seismic Response of Earth-Rock Dams with Innovative Antiseepage Walls on the Effect of Microscopic Fluid-Solid Coupling

Author:

Zhang Jingwei1,Chen Xuanyu1,Li Jia2,Xu Shuaiqi3

Affiliation:

1. School of Civil Engineering, Zhengzhou University, Zhengzhou 450002, China

2. School of Water Conservancy and Transportation, Zhengzhou University, Zhengzhou 450002, China

3. Henan Aviation Investment Aviation Basic Industry Development Co., Ltd., HNCA, Zhengzhou 450003, China

Abstract

In dykes and dam projects, the microscopic fluid-solid coupling effect from the interaction between soil skeleton and pore water during an earthquake is crucial to consider, as it can lead to dam safety problems. To control seepage in medium- and small-sized dams, polymer antiseepage walls have emerged as effective measures. In recent years, this method has been increasingly utilized in projects worldwide as it is essential for preventing potential dam safety issues. To address concerns related to seismic safety, this study conducts theoretical analysis, model tests, and numerical simulations to investigate the seismic response of earth-rock dams with polymer antiseepage walls, with a specific focus on the microscopic fluid-solid coupling effect. The dynamic viscoelastic constitutive model used in this study incorporates Biot’s theory of dynamic consolidation and the results of dynamic mechanical analysis (DMA) of polymer materials. To validate the model, a centrifuge test is performed, and it is then utilized to study the seismic response of earth-rock dams with polymer antiseepage walls. Furthermore, the influence of factors such as fluid-solid coupling, water level, polymer material density, and wall thickness on the seismic response of dams with antiseepage walls is analyzed. Finally, the seismic safety of the earth-rock dam with the polymer antiseepage wall is thoroughly examined. The results emphasize the need to consider the fluid-solid coupling effect, as factors like water level and design parameters of the antiseepage wall significantly impact the seismic response of earth-rock dams with polymer antiseepage walls.

Funder

National Natural Science Foundation of China

Key Scientific and Technological Project of Henan Province

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference44 articles.

1. Features of High-hazard Potential Dam and Key Issues in Reinforcement Design;Yang;China Water Resour.,2008

2. New Seepage-proof and Reinforcing Technologies for Dikes and Dams and their Applications;Wang;J. Hydroelectr. Eng.,2016

3. Formation of a Polymer Thin Wall Using the Level Set Method;Wang;Int. J. Geomech.,2014

4. The Feasibility of Non-water Reaction Rolymer Grouting Technology Application in Seepage Prevention for Tailings Reservoirs;Guo;Water Sci. Technol.-Water Supply,2018

5. Mechanism Study on the Construction of Ultra-Thin Antiseepage Wall by Polymer Injection;Guo;J. Mater. Civ. Eng.,2012

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