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The deterministic Finite Element Method (FEM) is a valuable tool for understanding and predicting the mechanical behaviour of earth structures.
Dynamic properties of soils at very small strains are of particular interest for geotechnical engineers for the characterization of the behaviour of earth structures subjected to a variety of static and dynamic stress states.
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High-sensitivity monitoring solutions are crucial for early warning systems of earth structures.
Seismic stability, liquefaction, and deformation of earth structures are critical issues in geotechnical earthquake engineering practice.
Limit analysis methods can be used to directly calculate the bearing capacities of earth structures.
This article is about assessing the quality of earth structures in terms of possibilities of using alternative methods.
The article is about assessing the quality of earth structures in terms of possibilities of using alternative methods.
Types of earth structure include earth shelters, where a dwelling is wholly or partly embedded in the ground or encased in soil.
Other types of earth structure include mounds and pyramids used for religious purposes, levees, mechanically stabilized earth retaining walls, forts, trenches and embankment dams.
In past years, many researchers studied the behaviour of several reinforced earth structures (i.e., mechanically stabilised earth wall/embankment) on Bangkok soft soil.
Understanding the dynamic characteristics of rammed earth structures will help engineers in their design of new rammed earth buildings but also in earthquake analyses of existing rammed earth buildings.
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