SLOPE STABILITY ANALYSIS OF P3 WEST GRASBERG MINE PT FREEPORT INDONESIA USING THE ROCK MASS CLASSIFICATION METHOD

Presumption of the existence of the local geological structures such as fold around the P3 West slope have triggered more detail research about the effect of the cracks existence and orientation to the slope stability condition. Core Orienting activity had done to collect the information about the e...

Full description

Saved in:
Bibliographic Details
Main Author: ENRICO SITOHANG (NIM 12103056), ROY
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/9153
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:9153
spelling id-itb.:91532017-09-27T10:39:02ZSLOPE STABILITY ANALYSIS OF P3 WEST GRASBERG MINE PT FREEPORT INDONESIA USING THE ROCK MASS CLASSIFICATION METHOD ENRICO SITOHANG (NIM 12103056), ROY Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/9153 Presumption of the existence of the local geological structures such as fold around the P3 West slope have triggered more detail research about the effect of the cracks existence and orientation to the slope stability condition. Core Orienting activity had done to collect the information about the existence, orientation and characteristic of the cracks. Results of this Core Orienting activity were analyzed using the rock mass classification methods such as Rock Mass Rating (RMR) and Slope Mass Rating (SMR) to gather information about the slope stability condition. Generally, the results of this research show that the rock mass RMR values are classified into fair rock mass class (RMR range 41-60) and good rock mass class (RMR range 61-80). Also the rock mass SMR values are classified into good rock mass class (SMR range 61-80) and very good rock mass class (SMR range 81-100). It indicates that generally, the P3 West slope is in a stable condition and the probability of the failure that might happen is just in some small blocks. So, there is no need using the supporting system for this slope. The SMR rock mass classification method has a limitation in slope stability analysis because it doesn't calculate the influence of slope geometry to the slope stability condition. It should not be used as the only way to analyze and design a slope. Therefore, some further research using the slope modeling is needed. <br /> <br /> text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Presumption of the existence of the local geological structures such as fold around the P3 West slope have triggered more detail research about the effect of the cracks existence and orientation to the slope stability condition. Core Orienting activity had done to collect the information about the existence, orientation and characteristic of the cracks. Results of this Core Orienting activity were analyzed using the rock mass classification methods such as Rock Mass Rating (RMR) and Slope Mass Rating (SMR) to gather information about the slope stability condition. Generally, the results of this research show that the rock mass RMR values are classified into fair rock mass class (RMR range 41-60) and good rock mass class (RMR range 61-80). Also the rock mass SMR values are classified into good rock mass class (SMR range 61-80) and very good rock mass class (SMR range 81-100). It indicates that generally, the P3 West slope is in a stable condition and the probability of the failure that might happen is just in some small blocks. So, there is no need using the supporting system for this slope. The SMR rock mass classification method has a limitation in slope stability analysis because it doesn't calculate the influence of slope geometry to the slope stability condition. It should not be used as the only way to analyze and design a slope. Therefore, some further research using the slope modeling is needed. <br /> <br />
format Final Project
author ENRICO SITOHANG (NIM 12103056), ROY
spellingShingle ENRICO SITOHANG (NIM 12103056), ROY
SLOPE STABILITY ANALYSIS OF P3 WEST GRASBERG MINE PT FREEPORT INDONESIA USING THE ROCK MASS CLASSIFICATION METHOD
author_facet ENRICO SITOHANG (NIM 12103056), ROY
author_sort ENRICO SITOHANG (NIM 12103056), ROY
title SLOPE STABILITY ANALYSIS OF P3 WEST GRASBERG MINE PT FREEPORT INDONESIA USING THE ROCK MASS CLASSIFICATION METHOD
title_short SLOPE STABILITY ANALYSIS OF P3 WEST GRASBERG MINE PT FREEPORT INDONESIA USING THE ROCK MASS CLASSIFICATION METHOD
title_full SLOPE STABILITY ANALYSIS OF P3 WEST GRASBERG MINE PT FREEPORT INDONESIA USING THE ROCK MASS CLASSIFICATION METHOD
title_fullStr SLOPE STABILITY ANALYSIS OF P3 WEST GRASBERG MINE PT FREEPORT INDONESIA USING THE ROCK MASS CLASSIFICATION METHOD
title_full_unstemmed SLOPE STABILITY ANALYSIS OF P3 WEST GRASBERG MINE PT FREEPORT INDONESIA USING THE ROCK MASS CLASSIFICATION METHOD
title_sort slope stability analysis of p3 west grasberg mine pt freeport indonesia using the rock mass classification method
url https://digilib.itb.ac.id/gdl/view/9153
_version_ 1820664609676197888