4.7 Article

Unsteady 2-D seepage simulation using physical analog, case of Sattarkhan embankment dam

Journal

JOURNAL OF HYDROLOGY
Volume 519, Issue -, Pages 177-189

Publisher

ELSEVIER
DOI: 10.1016/j.jhydrol.2014.07.011

Keywords

Seepage; Diffusion equation; Analog modeling; Multiple Reservoirs and Tubes Analog (MRTA); Finite difference method (FDM); Sattarkhan embankment dam

Funding

  1. University of Tabriz, Iran

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This study proposes a distributed arrangement of Multiple Reservoirs and Tubes Analog (MRTA) for simulating seepage through an embankment dam in the laboratory. Each MRTA circuit contains two major components of reservoir and friction elements whose parameters are related to those of the prototype dam by appropriate scale factors. Several circuits of MRTA were designed and assembled with a distributed arrangement in the laboratory. To evaluate the capability of MRTA in simulating seepage through the dam, an experiment was conducted under a transient condition. The outputs of MRTA were compared to the piezometric heads observed in the dam body and also to the results obtained from a numerical finite difference method (FDM). Experimental measurements revealed that MRTA was a reliable and convenient experimental tool for seepage simulation in transient conditions. The ability to provide a visual solution of the seepage partial differential equation is the most advantageous trait of the proposed MRTA. (C) 2014 Elsevier B.V. All rights reserved.

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