Strength and energy consumption of inherently anisotropic rocks at failure

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On Applicability of Some Indirect Tests for Estimation of Tensile Strength of Anisotropic Rocks

The tensile strength of rocks plays a noteworthy role in their failure mechanism, and its determination can be beneficial in optimizing the design of the rock structures. Schistose rocks due to their inherent anisotropy in different foliation directions show a diverse strength at each direction. The purpose of this work was to compare and assess the tensile strength of phyllite, which was obtai...

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A Critical Plane Approach to Anisotropic Strength of Rocks

The paper is concerned with the derivation of failure criteria for anisotropic materials through a simple extension of the Mohr Coulomb failure criterion and embracing the critical plane concept. We revisit the classic problem of determining the macroscopic strength of a rock specimen with an initial structural anisotropy in relation to the directions of externally applied principal stresses. M...

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Optimized Mamdani fuzzy models for predicting the strength of intact rocks and anisotropic rock masses

Development of accurate and reliable models for predicting the strength of rocks and rock masses is one of the most common interests of geologists, civil and mining engineers and many others. Due to uncertainties in evaluation of effective parameters and also complicated nature of geological materials, it is difficult to estimate the strength precisely using theoretical approaches. On the other...

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Elastic Properties of Sedimentary Anisotropic Rocks

In multidisciplinary studies carried out in the Budare Oil Field of the Great Oficina Oil Field, there was difficulty matching well log synthetic seismograms with 2D and 3D seismic data. In addition, the seismically determined depths of reservoir horizons are greater than the well sonic log depths. To examine this discrepancy we conducted an experimental study of dynamic elastic parameters of t...

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ژورنال

عنوان ژورنال: EPJ Web of Conferences

سال: 2021

ISSN: 2100-014X

DOI: 10.1051/epjconf/202124907003