Global ETD Search

Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.

Results

Showing 1 to 3 of 3 for “"Finite Discrete Element Method"”.

  1. Using the Finite Discrete Element Method (FDEM) to Correlate Simulated Microfractures to Acoustic Emissions in Brittle Anisotropic Rock

    … both laboratory testing and numerical simulation methods. These include the recording of Acoustic Emissions (AE) during laboratory tests which are elastic vibrations emitted when microcracks form and/or propagate, and numerical simulation using the combined Finite-Discrete Element Method (FDEM). …

    queens Repository record for Using the Finite Discrete Element Method (FDEM) to Correlate Simulated Microfractures to Acoustic Emissions in Brittle Anisotropic Rock (opens in a new tab)

  2. A study of brittle powder compaction using a combined discrete finite element approach

    The Discrete Element Method (DEM) is a collection of numerical techniques based on a discontinuum idealisation of a physical system. Discrete Element Methods have been successfully applied to the simulation of the dynamic behaviour of granular media. Using the Finite Element Method to model the …

    cape-town Repository record for A study of brittle powder compaction using a combined discrete finite element approach (opens in a new tab)

  3. Combined finite-discrete element modelling of key instabilities which characterise deep-seated landslides from massive rock slope failure

    … deformations which may involve movement along discrete shear surfaces and deep seated mass creep. The long-term development of deep-seated slope deformations creates suitable conditions for the subsequent occurrence of other slope deformations. Deep-seated landslides in mountain areas can be …

    poli-torino Repository record for Combined finite-discrete element modelling of key instabilities which characterise deep-seated landslides from massive rock slope failure (opens in a new tab)