Impact of Soil Properties’ Spatial Correlation Lengths and Inclination on Permanent Slope Displacements Due to Earthquake Excitation

Author:

Alamanis Nikolaos1ORCID,Dakoulas Panagiotis2

Affiliation:

1. Department of Agrotechnology, School of Agricultural Sciences, University of Thessaly, 41500 Larissa, Greece

2. Department of Civil Engineering, School of Engineering, University of Thessaly, 38334 Volos, Greece

Abstract

Natural disasters, when and where they occur, often cause serious social and economic consequences, which require an urgent solution to the problem. In particular, Greece, which is characterized by a complex geological structure and intense tectonic stress, has suffered and continues to suffer the consequences of such catastrophic phenomena. Among the various destructive phenomena recorded on the Earth’s surface, two of the most important problems are landslides and land subsidence. The above phenomena may cause, in addition to the serious case of loss of human life, a threat to the social and economic fabric affecting sustainability in general, i.e., the quality of life of an area (destruction of property, filling of reservoirs, blockage of streams and rivers, etc.). In fact, landslides are a phenomenon with enormous social and economic consequences, since apart from the financial burden due to the collapse of a technical project or the interruption of transportation, they are accompanied by the loss of human life. This research examines the stochastic characteristics of a slopes’ stability to investigate the variation range of permanent earthquake movements. More specifically, the influence of inclination as well as the lengths of the spatial correlation of ground are investigated. The method in the present study follows the development of arbitrary fields of soil properties, which follow the Gaussian distribution characterized by autocorrelation lengths lx and ly in the horizontal and vertical directions, respectively, mean value μ, standard deviation σ, and cross-correlation coefficients ρij. The estimation of permanent displacements is performed by the combination of the Local Average Subdivision algorithm and the FLAC software (Fast Lagrangian Analysis of Continua) used in the parametric investigation of this work. The results of this research showed that the spatial correlation of the properties has an important impact on the permanent displacements of slopes caused by strong earthquake excitations.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference32 articles.

1. Simulation of Random Fields via Local Average Subdivision;Fenton;J. Eng. Mech.,1990

2. Fenton, A.G., and Griffiths, D.V. (2008). Risk Assessment in Geotechnical Engineering, John Viley & Sons.

3. Itasca (2011). Fast Langrangian Analysis of Continua, User Manual, Itasca Consulting Group Inc.

4. Probabilistic slope stability analysis by finite elements;Griffiths;J. Geotech. Geoenviron. Eng.,2004

5. Influence of spatial variability on slope reliability using 2D Random Fields;Griffiths;J. Geotech. Geoenviron. Eng. ASCE,2009

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