SHEAR WAVE VELOCITY ANALYTIC OF 2-D MULTICHANNEL ANALYSIS OF SURFACE WAVE (MASW) TO INTERPRET SUBSURFACE FAULT OF ALTERNATIVE BRIDGE CONSTRUCTION IN KELOK SAGO JAMBI

Geotechnics require geophysical methods for the classification of soil types. S wave velocity (Vs), wave velocity P (Vp), and density (&#961;), are the most important <br /> parameters in the classification of soil types. There are various methods to identify Vs, one of them is P...

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Main Author: FARRAS FARHAN (NIM : 10213102), MUHAMMAD
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/29184
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:29184
spelling id-itb.:291842018-07-20T09:25:09ZSHEAR WAVE VELOCITY ANALYTIC OF 2-D MULTICHANNEL ANALYSIS OF SURFACE WAVE (MASW) TO INTERPRET SUBSURFACE FAULT OF ALTERNATIVE BRIDGE CONSTRUCTION IN KELOK SAGO JAMBI FARRAS FARHAN (NIM : 10213102), MUHAMMAD Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/29184 Geotechnics require geophysical methods for the classification of soil types. S wave velocity (Vs), wave velocity P (Vp), and density (&#961;), are the most important <br /> parameters in the classification of soil types. There are various methods to identify Vs, one of them is P-S logging method. However, this method is less suitable to be applied in urban areas due to the difficulties of data acquisition and expensive operational costs. In 1999, a seismic method that uses surface waves to interpret Vs profile with a higher signal to noise ratio was introduced by the name of <br /> Multichannel Analysis of Surface Waves (MASW). A surface wave, especially Rayleigh wave, has a way larger amplitude than a body wave. It causes the energy of surface wave to be the strongest one. Moreover, the surface wave propagates <br /> very slowly in the soil, so that, the S / N ratio is higher than other seismic methods. MASW 2-D method is used in this Final Project to determine subsoil properties and to identify the fault under the bridge abutments plan (abutment 1 and abutment 2) in Kelok Sago Jambi. The main advantage is the ability to recognize different types of seismic waves based on comprehensive wave propagation characteristics, so that, the obtained data can be used and analyzed as a whole group at once. 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 Geotechnics require geophysical methods for the classification of soil types. S wave velocity (Vs), wave velocity P (Vp), and density (&#961;), are the most important <br /> parameters in the classification of soil types. There are various methods to identify Vs, one of them is P-S logging method. However, this method is less suitable to be applied in urban areas due to the difficulties of data acquisition and expensive operational costs. In 1999, a seismic method that uses surface waves to interpret Vs profile with a higher signal to noise ratio was introduced by the name of <br /> Multichannel Analysis of Surface Waves (MASW). A surface wave, especially Rayleigh wave, has a way larger amplitude than a body wave. It causes the energy of surface wave to be the strongest one. Moreover, the surface wave propagates <br /> very slowly in the soil, so that, the S / N ratio is higher than other seismic methods. MASW 2-D method is used in this Final Project to determine subsoil properties and to identify the fault under the bridge abutments plan (abutment 1 and abutment 2) in Kelok Sago Jambi. The main advantage is the ability to recognize different types of seismic waves based on comprehensive wave propagation characteristics, so that, the obtained data can be used and analyzed as a whole group at once.
format Final Project
author FARRAS FARHAN (NIM : 10213102), MUHAMMAD
spellingShingle FARRAS FARHAN (NIM : 10213102), MUHAMMAD
SHEAR WAVE VELOCITY ANALYTIC OF 2-D MULTICHANNEL ANALYSIS OF SURFACE WAVE (MASW) TO INTERPRET SUBSURFACE FAULT OF ALTERNATIVE BRIDGE CONSTRUCTION IN KELOK SAGO JAMBI
author_facet FARRAS FARHAN (NIM : 10213102), MUHAMMAD
author_sort FARRAS FARHAN (NIM : 10213102), MUHAMMAD
title SHEAR WAVE VELOCITY ANALYTIC OF 2-D MULTICHANNEL ANALYSIS OF SURFACE WAVE (MASW) TO INTERPRET SUBSURFACE FAULT OF ALTERNATIVE BRIDGE CONSTRUCTION IN KELOK SAGO JAMBI
title_short SHEAR WAVE VELOCITY ANALYTIC OF 2-D MULTICHANNEL ANALYSIS OF SURFACE WAVE (MASW) TO INTERPRET SUBSURFACE FAULT OF ALTERNATIVE BRIDGE CONSTRUCTION IN KELOK SAGO JAMBI
title_full SHEAR WAVE VELOCITY ANALYTIC OF 2-D MULTICHANNEL ANALYSIS OF SURFACE WAVE (MASW) TO INTERPRET SUBSURFACE FAULT OF ALTERNATIVE BRIDGE CONSTRUCTION IN KELOK SAGO JAMBI
title_fullStr SHEAR WAVE VELOCITY ANALYTIC OF 2-D MULTICHANNEL ANALYSIS OF SURFACE WAVE (MASW) TO INTERPRET SUBSURFACE FAULT OF ALTERNATIVE BRIDGE CONSTRUCTION IN KELOK SAGO JAMBI
title_full_unstemmed SHEAR WAVE VELOCITY ANALYTIC OF 2-D MULTICHANNEL ANALYSIS OF SURFACE WAVE (MASW) TO INTERPRET SUBSURFACE FAULT OF ALTERNATIVE BRIDGE CONSTRUCTION IN KELOK SAGO JAMBI
title_sort shear wave velocity analytic of 2-d multichannel analysis of surface wave (masw) to interpret subsurface fault of alternative bridge construction in kelok sago jambi
url https://digilib.itb.ac.id/gdl/view/29184
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