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Ioannis Vazaios - Senior Geotechnical Engineer - Arup | LinkedIn
Schematic of failure envelope for brittle failure, showing four zones... | Download Scientific Diagram
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Properties of the DFN models used in the conducted analyses. A normal | Download Scientific Diagram
3: An overview of data of the study | Download Table
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Journal of Rock Mechanics and Geotechnical Engineering | Vol 11, Issue 1, Pages 1-218 (February 2019) | ScienceDirect.com by Elsevier
Geomechanica (@Geomechanica) / Twitter
Ioannis Zarikos - Research Associate - NCSR "DEMOKRITOS" | LinkedIn
Refined Approaches for Estimating the Strength of Rock Blocks | SpringerLink
Assessment of strain bursting in deep tunnelling by using the finite-discrete element method - ScienceDirect
Ioannis Zarikos - Research Associate - NCSR "DEMOKRITOS" | LinkedIn
Mechanical analysis and interpretation of excavation damage zone formation around deep tunnels within massive rock masses using hybrid finite–discrete element approach: case of Atomic Energy of Canada Limited (AECL) Underground Research Laboratory (
Ioannis Zarikos - Research Associate - NCSR "DEMOKRITOS" | LinkedIn
Velocity magnitude versus analysis step of the block with the highest... | Download Scientific Diagram
Laboratory Experiments and Grain Based Discrete Element Numerical Simulations Investigating the Thermo-Mechanical Behaviour of Sandstone | SpringerLink
Laboratory Experiments and Grain Based Discrete Element Numerical Simulations Investigating the Thermo-Mechanical Behaviour of Sandstone | SpringerLink
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Ioannis VAZAIOS | Senior Engineer | Geotechnical/Tunnel Engineer-PhD | Arup, London | Arup | Geotechnical
PDF) Laboratory Experiments and Grain Based Discrete Element Numerical Simulations Investigating the Thermo-Mechanical Behaviour of Sandstone
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Ioannis Zarikos - Research Associate - NCSR "DEMOKRITOS" | LinkedIn
Assessment of strain bursting in deep tunnelling by using the finite-discrete element method - ScienceDirect
Laboratory Experiments and Grain Based Discrete Element Numerical Simulations Investigating the Thermo-Mechanical Behaviour of Sandstone | SpringerLink