Affiliation:
1. Wrocław University of Science and Technology , Wybrzeże Wyspiańskiego 27 , Wrocław , Poland
Abstract
Abstract
The article proposes the methodology of designing dams of dry flood control reservoirs. The algorithm is developed so as to meet all the requirements given in the Eurocode 7 and, at the same time, to be efficient in terms of necessary calculation time. Furthermore, the presented numerical procedure enables the optimization of design solutions, e.g. the depth and length of the anti-filtration barrier, by means of parametric analyses. The approach assumes the use of numerical methods, in particular, finite element (FE) analysis. Three-dimensional (3D) reconstruction of the terrain topography and subsoil layer arrangement performed in step (1) sets the base for further analyses. In step (2), the filtration phenomena are assessed based on the 3D analysis of a transient groundwater flow. In step (3), the state of displacement is evaluated and the stability is verified for all the relevant phases of construction and operation of the facility, in particular, in the course of simulated flood detention. The analyses in step (3) are carried out on 2D models corresponding to the design cross-sections of the dam. This significantly reduces the computation time (compared to 3D analysis) and, at the same time, provides a safe estimate of factor of safety. The performance of the proposed algorithm is shown on the numerical examples of the computations concerning the dam of Szalejów Górny dry anti-flood reservoir located in Poland.
Subject
Computers in Earth Sciences,Mechanics of Materials,Geotechnical Engineering and Engineering Geology,Civil and Structural Engineering
Reference28 articles.
1. Abramov, C. K. (1952). Method of calculation and selection of filters for drilled wells. Works of Hydrogeology and Engineering Geology Section, The Federal Scientific Technical Mining Society, Moscow.
2. Bieniawski, Z. (1988). The rock mass rating (RMR) system (geomechanics classification) in engineering practice. In Rock Classification Systems for Engineering Purposes. ASTM International.
3. Bolton Seed, H., & Duncan, J. M. (1987). The failure of Teton Dam. Engineering Geology, 24(1), 173–205. https://doi.org/10.1016/0013-7952(87)90060-3
4. Cała, M. (2007). Convex and concave slope stability analyses with numerical methods. Archives of Mining Sciences, 52(1), 75–89.
5. Deere, D. (1988). The rock quality designation (RQD) index in practice. In Rock classification systems for engineering purposes. ASTM International.
Cited by
2 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献