THE COMPATIBILITY OF INVERSION 1D AND 2D APPLICATION SOFTWARE TO IDENTIFY ANDESITE USING DIPOLE-DIPOLE ARRAY OF RESISTIVITY METHOD

The electrical resistivity method in general is carried out with two types of field procedure : one dimensional (1D) and two dimensional (2D) measurement. Resistivity sounding is used to determine the distribution of resistivity value varies with depth. Computer inversion programs to process and int...

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Main Author: TRI DANU BARANTI (NIM : 22107006), IGNATIUS
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/20182
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:20182
spelling id-itb.:201822017-09-27T14:56:01ZTHE COMPATIBILITY OF INVERSION 1D AND 2D APPLICATION SOFTWARE TO IDENTIFY ANDESITE USING DIPOLE-DIPOLE ARRAY OF RESISTIVITY METHOD TRI DANU BARANTI (NIM : 22107006), IGNATIUS Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/20182 The electrical resistivity method in general is carried out with two types of field procedure : one dimensional (1D) and two dimensional (2D) measurement. Resistivity sounding is used to determine the distribution of resistivity value varies with depth. Computer inversion programs to process and interpret resistivity data are widespread these days, but many of these are not give the same result. This topic became a main problem for interpreter. The result of resistivity interpretation survey with dipole dipole array by using 1D and 2D inversion program gives the different value. This problem is occurred because of the one dimensional (1D) inversion program, namely DcInv, modeled the earth as horizontal layer. Because of the earth is assumed as horizontal layer, then the calculation of every dipole separation factor (n) changing only represented by one resistivity value. With the result, that resistivity value in lateral changes should be calculated in average value. If the contrast of apparent resistivity value in lateral changes is great, there is possibility that the <br /> <br /> <br /> interpretation give bad result. One dimensional (1D) inversion program is suitable for modeling the horizontal layer and massive mineral deposit. Two dimensional (2D) inversion program is suitable for modeling the variation of resistivity value in lateral changes and the area with various topography. 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 The electrical resistivity method in general is carried out with two types of field procedure : one dimensional (1D) and two dimensional (2D) measurement. Resistivity sounding is used to determine the distribution of resistivity value varies with depth. Computer inversion programs to process and interpret resistivity data are widespread these days, but many of these are not give the same result. This topic became a main problem for interpreter. The result of resistivity interpretation survey with dipole dipole array by using 1D and 2D inversion program gives the different value. This problem is occurred because of the one dimensional (1D) inversion program, namely DcInv, modeled the earth as horizontal layer. Because of the earth is assumed as horizontal layer, then the calculation of every dipole separation factor (n) changing only represented by one resistivity value. With the result, that resistivity value in lateral changes should be calculated in average value. If the contrast of apparent resistivity value in lateral changes is great, there is possibility that the <br /> <br /> <br /> interpretation give bad result. One dimensional (1D) inversion program is suitable for modeling the horizontal layer and massive mineral deposit. Two dimensional (2D) inversion program is suitable for modeling the variation of resistivity value in lateral changes and the area with various topography.
format Theses
author TRI DANU BARANTI (NIM : 22107006), IGNATIUS
spellingShingle TRI DANU BARANTI (NIM : 22107006), IGNATIUS
THE COMPATIBILITY OF INVERSION 1D AND 2D APPLICATION SOFTWARE TO IDENTIFY ANDESITE USING DIPOLE-DIPOLE ARRAY OF RESISTIVITY METHOD
author_facet TRI DANU BARANTI (NIM : 22107006), IGNATIUS
author_sort TRI DANU BARANTI (NIM : 22107006), IGNATIUS
title THE COMPATIBILITY OF INVERSION 1D AND 2D APPLICATION SOFTWARE TO IDENTIFY ANDESITE USING DIPOLE-DIPOLE ARRAY OF RESISTIVITY METHOD
title_short THE COMPATIBILITY OF INVERSION 1D AND 2D APPLICATION SOFTWARE TO IDENTIFY ANDESITE USING DIPOLE-DIPOLE ARRAY OF RESISTIVITY METHOD
title_full THE COMPATIBILITY OF INVERSION 1D AND 2D APPLICATION SOFTWARE TO IDENTIFY ANDESITE USING DIPOLE-DIPOLE ARRAY OF RESISTIVITY METHOD
title_fullStr THE COMPATIBILITY OF INVERSION 1D AND 2D APPLICATION SOFTWARE TO IDENTIFY ANDESITE USING DIPOLE-DIPOLE ARRAY OF RESISTIVITY METHOD
title_full_unstemmed THE COMPATIBILITY OF INVERSION 1D AND 2D APPLICATION SOFTWARE TO IDENTIFY ANDESITE USING DIPOLE-DIPOLE ARRAY OF RESISTIVITY METHOD
title_sort compatibility of inversion 1d and 2d application software to identify andesite using dipole-dipole array of resistivity method
url https://digilib.itb.ac.id/gdl/view/20182
_version_ 1821120072490418176