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The progression of time-lapse microgravity in surface to monitor fluide mass change caused by injection and production process in reservoir have been improving rapidly. The technology of borehole gravity help to identify massa change in reservoir. Using the mixed-determined linear inversion method b...

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Main Author: PRAMUDITO (NIM: 12305013), DIMAS
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/20032
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:20032
spelling id-itb.:200322017-10-09T10:31:16Z#TITLE_ALTERNATIVE# PRAMUDITO (NIM: 12305013), DIMAS Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/20032 The progression of time-lapse microgravity in surface to monitor fluide mass change caused by injection and production process in reservoir have been improving rapidly. The technology of borehole gravity help to identify massa change in reservoir. Using the mixed-determined linear inversion method between surface and borehole gravity, perhaps, it can investigate density change of fluide movement in reservoir. In my final project, forward modeling program is validated using GEOMODEL software while inversion modeling progam is tested using three synthetic models such as fault, single body, and complex model. Synthetic model is made in 3D geometry whose have mass dense certainly. Then, anomaly gravity response is used as inversion component. <br /> <br /> <br /> <br /> <br /> In this case, I use mixed determined inversion linear technique with damped least square factor as the important aspect to to minimize error length and solution length. Based on data processing, the forward modeling program is a good to apply in problem. Experiment to inversion program provide Lagrange number approximate 0.1. To get limit of error approximate 0.1 &#956;Gal, the program needs more thickness and width imitation model than synthetic model. Besides, application of joint inversion can investigate density change more detail and precision than both surface inversion and borehole inversion. 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 progression of time-lapse microgravity in surface to monitor fluide mass change caused by injection and production process in reservoir have been improving rapidly. The technology of borehole gravity help to identify massa change in reservoir. Using the mixed-determined linear inversion method between surface and borehole gravity, perhaps, it can investigate density change of fluide movement in reservoir. In my final project, forward modeling program is validated using GEOMODEL software while inversion modeling progam is tested using three synthetic models such as fault, single body, and complex model. Synthetic model is made in 3D geometry whose have mass dense certainly. Then, anomaly gravity response is used as inversion component. <br /> <br /> <br /> <br /> <br /> In this case, I use mixed determined inversion linear technique with damped least square factor as the important aspect to to minimize error length and solution length. Based on data processing, the forward modeling program is a good to apply in problem. Experiment to inversion program provide Lagrange number approximate 0.1. To get limit of error approximate 0.1 &#956;Gal, the program needs more thickness and width imitation model than synthetic model. Besides, application of joint inversion can investigate density change more detail and precision than both surface inversion and borehole inversion.
format Final Project
author PRAMUDITO (NIM: 12305013), DIMAS
spellingShingle PRAMUDITO (NIM: 12305013), DIMAS
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author_facet PRAMUDITO (NIM: 12305013), DIMAS
author_sort PRAMUDITO (NIM: 12305013), DIMAS
title #TITLE_ALTERNATIVE#
title_short #TITLE_ALTERNATIVE#
title_full #TITLE_ALTERNATIVE#
title_fullStr #TITLE_ALTERNATIVE#
title_full_unstemmed #TITLE_ALTERNATIVE#
title_sort #title_alternative#
url https://digilib.itb.ac.id/gdl/view/20032
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