A COMPARATIVE STUDY OF SAFETY FACTOR AND STRENGTH FACTOR IN UNDERGROUND MINE PILLARS USING NUMERICAL MODELING BASED ON MOHR-COULOMB CRITERIA
Underground mine pillars play a crucial role in ensuring the stability of the mine and the safety of workers. Pillar failure can lead to catastrophic collapses, endangering lives, causing economic losses, and harming the environment. This research aims to analyze the comparison between the Safety...
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id-itb.:853582024-08-20T11:13:04ZA COMPARATIVE STUDY OF SAFETY FACTOR AND STRENGTH FACTOR IN UNDERGROUND MINE PILLARS USING NUMERICAL MODELING BASED ON MOHR-COULOMB CRITERIA Putra Rosadi, Aslammabad Indonesia Final Project Underground Mine Pillars, Safety Factor, Strength Factor, Numerical Modeling, Mohr-Coulomb, RS2. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/85358 Underground mine pillars play a crucial role in ensuring the stability of the mine and the safety of workers. Pillar failure can lead to catastrophic collapses, endangering lives, causing economic losses, and harming the environment. This research aims to analyze the comparison between the Safety Factor and Strength Factor in underground mine pillars using numerical modeling based on the Mohr- Coulomb criterion. The modeling was conducted using RS2 software at various width-to-height ratios to evaluate whether the rock strength factor can represent the safety factor. The outcome of this research is to ensure whether the Strength Factor can effectively represent the value of the Safety Factor. The findings indicate a correlation between these two factors, where variations in the W/H ratio influence the resulting values. This study provides important insights for safer and more efficient pillar design in underground mining operations. text |
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Underground mine pillars play a crucial role in ensuring the stability of the mine
and the safety of workers. Pillar failure can lead to catastrophic collapses,
endangering lives, causing economic losses, and harming the environment. This
research aims to analyze the comparison between the Safety Factor and Strength
Factor in underground mine pillars using numerical modeling based on the Mohr-
Coulomb criterion. The modeling was conducted using RS2 software at various
width-to-height ratios to evaluate whether the rock strength factor can represent the
safety factor. The outcome of this research is to ensure whether the Strength Factor
can effectively represent the value of the Safety Factor. The findings indicate a
correlation between these two factors, where variations in the W/H ratio influence
the resulting values. This study provides important insights for safer and more
efficient pillar design in underground mining operations. |
format |
Final Project |
author |
Putra Rosadi, Aslammabad |
spellingShingle |
Putra Rosadi, Aslammabad A COMPARATIVE STUDY OF SAFETY FACTOR AND STRENGTH FACTOR IN UNDERGROUND MINE PILLARS USING NUMERICAL MODELING BASED ON MOHR-COULOMB CRITERIA |
author_facet |
Putra Rosadi, Aslammabad |
author_sort |
Putra Rosadi, Aslammabad |
title |
A COMPARATIVE STUDY OF SAFETY FACTOR AND STRENGTH FACTOR IN UNDERGROUND MINE PILLARS USING NUMERICAL MODELING BASED ON MOHR-COULOMB CRITERIA |
title_short |
A COMPARATIVE STUDY OF SAFETY FACTOR AND STRENGTH FACTOR IN UNDERGROUND MINE PILLARS USING NUMERICAL MODELING BASED ON MOHR-COULOMB CRITERIA |
title_full |
A COMPARATIVE STUDY OF SAFETY FACTOR AND STRENGTH FACTOR IN UNDERGROUND MINE PILLARS USING NUMERICAL MODELING BASED ON MOHR-COULOMB CRITERIA |
title_fullStr |
A COMPARATIVE STUDY OF SAFETY FACTOR AND STRENGTH FACTOR IN UNDERGROUND MINE PILLARS USING NUMERICAL MODELING BASED ON MOHR-COULOMB CRITERIA |
title_full_unstemmed |
A COMPARATIVE STUDY OF SAFETY FACTOR AND STRENGTH FACTOR IN UNDERGROUND MINE PILLARS USING NUMERICAL MODELING BASED ON MOHR-COULOMB CRITERIA |
title_sort |
comparative study of safety factor and strength factor in underground mine pillars using numerical modeling based on mohr-coulomb criteria |
url |
https://digilib.itb.ac.id/gdl/view/85358 |
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