MODELING SUBSIDENCE ON GEOTHERMAL RESERVOIR USING STARS SIMULATOR

The decrease of ground level associated with geothermal field development has been observed and studied in geothermal fields, for example in New Zealand. Deformable reservoir modeling is needed to include geomechanical influence on the geothermal reservoir model, so the model can simulate deformatio...

Full description

Saved in:
Bibliographic Details
Main Author: HARYANTO LUKMANA, ALLEN
Format: Theses
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/20970
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:20970
spelling id-itb.:209702017-09-27T15:06:48ZMODELING SUBSIDENCE ON GEOTHERMAL RESERVOIR USING STARS SIMULATOR HARYANTO LUKMANA, ALLEN Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/20970 The decrease of ground level associated with geothermal field development has been observed and studied in geothermal fields, for example in New Zealand. Deformable reservoir modeling is needed to include geomechanical influence on the geothermal reservoir model, so the model can simulate deformation and subsidence processes. The reservoir simulation in this study uses CMG-STARS® Advanced Process and Thermal Reservoir Simulator, which can model fluid flow with geomechanical influence. The purpose of this study was to investigate important parameters related to geomechanics and fluid flow. CMG-STARS® uses an iterative coupling scheme, by completing a fluid flow module and the results are used in the calculation of geomechanical modules. The synthetic model used in this study represents the geothermal reservoir model of water dominance with a total fluid production rate of 600 kg/s. After simulation done for thirty years there was a decrease of porosity, permeability and subsidence +2.4 meters in production well area. The sensitivity test was performed with geomechanical parameters and total flow rate of fluid production / injection, to see the effect on subsidence. The result of the sensitivity is known some parameters that influence the value of subsidence generated, such as the number of production flow rates, the number of flow rates of injection wells, young modulus, poisson ratio, porosity, and biot coefficient. Based on the result of research, simulator able to do geomechanical simulation and fluid flow simulation. 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 decrease of ground level associated with geothermal field development has been observed and studied in geothermal fields, for example in New Zealand. Deformable reservoir modeling is needed to include geomechanical influence on the geothermal reservoir model, so the model can simulate deformation and subsidence processes. The reservoir simulation in this study uses CMG-STARS® Advanced Process and Thermal Reservoir Simulator, which can model fluid flow with geomechanical influence. The purpose of this study was to investigate important parameters related to geomechanics and fluid flow. CMG-STARS® uses an iterative coupling scheme, by completing a fluid flow module and the results are used in the calculation of geomechanical modules. The synthetic model used in this study represents the geothermal reservoir model of water dominance with a total fluid production rate of 600 kg/s. After simulation done for thirty years there was a decrease of porosity, permeability and subsidence +2.4 meters in production well area. The sensitivity test was performed with geomechanical parameters and total flow rate of fluid production / injection, to see the effect on subsidence. The result of the sensitivity is known some parameters that influence the value of subsidence generated, such as the number of production flow rates, the number of flow rates of injection wells, young modulus, poisson ratio, porosity, and biot coefficient. Based on the result of research, simulator able to do geomechanical simulation and fluid flow simulation.
format Theses
author HARYANTO LUKMANA, ALLEN
spellingShingle HARYANTO LUKMANA, ALLEN
MODELING SUBSIDENCE ON GEOTHERMAL RESERVOIR USING STARS SIMULATOR
author_facet HARYANTO LUKMANA, ALLEN
author_sort HARYANTO LUKMANA, ALLEN
title MODELING SUBSIDENCE ON GEOTHERMAL RESERVOIR USING STARS SIMULATOR
title_short MODELING SUBSIDENCE ON GEOTHERMAL RESERVOIR USING STARS SIMULATOR
title_full MODELING SUBSIDENCE ON GEOTHERMAL RESERVOIR USING STARS SIMULATOR
title_fullStr MODELING SUBSIDENCE ON GEOTHERMAL RESERVOIR USING STARS SIMULATOR
title_full_unstemmed MODELING SUBSIDENCE ON GEOTHERMAL RESERVOIR USING STARS SIMULATOR
title_sort modeling subsidence on geothermal reservoir using stars simulator
url https://digilib.itb.ac.id/gdl/view/20970
_version_ 1821120318952964096