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AEC Slope 2009 - Slope Stability Analyzer

Earth embankments are widely used for roads, railways, river training works, canal embankments, dams, etc. The main economy and safety of these works can be accomplished by adopting proper and economical methods of design. Failure of these structures is likely to result in loss of life and damages to property. It may also result in damage and/or washout of the structure fully or partially. AEC Slope 2009 is used for analyzing stability of slopes for the above structures and reporting safety factors.

Components Of Earth Dam

construction project Cut off
basic building blocks Core
Work-Breakdown Structure Casing
Once tasks are assigned Internal drainage system & foundations
Once sequencing of tasks Slope protection
Once sequencing of tasks Surface drainage
Once sequencing of tasks Impervious blanket

Method of Stability Analysis

construction project There are many methods of analysis for determining the stability of slopes.
basic building blocks The method of slices, called the Swedish method of analysis.
Work-Breakdown Structure In this method, a surface of failure of embankment is assumed and the factor of safety of
   embankment worked out.
Once tasks are assigned This process is repeated with a number of trial surfaces and the one with the least factor of
   safety is called the critical slip surface.
Once sequencing of tasks If the factor of safety for the critical slip surface is more than one, the slope is taken to be
   stable.
Once sequencing of tasks The Swedish method assumes that the slip surface is an arc of a circle.

AEC Slope 2009 –Analysis

construction project AEC Slope 2009 considers total stress method of analysis on AutoCAD platform.
basic building blocks It does not consider pore water measurements.
Work-Breakdown Structure No shearing stresses act across the plane of the cross section and the analysis is treated as
   two  dimensional of embankment worked out.
Once tasks are assigned The section of the dam analyzed is of unit thickness of safety is called the critical slip surface.
Once sequencing of tasks The sliding mass is divided into a convenient number of slices.
Once sequencing of tasks Each slice is assumed to act independently of its adjoining slices.
Once sequencing of tasks The forces acting on the sides of a slice have no influence on the shear resistance.
Once sequencing of tasks The shear strength of the various zones along the potential failure surface is mobilized
   simultaneously.

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