OPTIMASI PANJANG HYDRAULIC FRACTURE PADA RESERVOIR NON-KONVENSIONAL DENGAN METODE UNIFORM CONDUCTIVITY RECTANGULAR FRACTURE

Energy needs in the future will continue to grow along with the growth of the population. Renewable and non-renewable energy sources continue to develop with various innovations. However, energy consumption from non-renewable energy such as coal, oil, and natural gas still dominates. Therefore, one...

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Published in:ROTOR
Main Authors: D.S., Eriska Eklezia, Abror, Hadziqul
Format: Article in Journal/Newspaper
Language:English
Published: Jurusan Teknik Mesin Fakultas Teknik Universitas Jember 2020
Subjects:
Online Access:https://jurnal.unej.ac.id/index.php/RTR/article/view/19135
https://doi.org/10.19184/rotor.v13i1.19135
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spelling ftunivjemberojs:oai:jurnal.unej.ac.id:article/19135 2023-05-15T17:12:08+02:00 OPTIMASI PANJANG HYDRAULIC FRACTURE PADA RESERVOIR NON-KONVENSIONAL DENGAN METODE UNIFORM CONDUCTIVITY RECTANGULAR FRACTURE D.S., Eriska Eklezia Abror, Hadziqul 2020-04-30 application/pdf https://jurnal.unej.ac.id/index.php/RTR/article/view/19135 https://doi.org/10.19184/rotor.v13i1.19135 eng eng Jurusan Teknik Mesin Fakultas Teknik Universitas Jember https://jurnal.unej.ac.id/index.php/RTR/article/view/19135/8521 https://jurnal.unej.ac.id/index.php/RTR/article/view/19135 doi:10.19184/rotor.v13i1.19135 Copyright (c) 2020 ROTOR ROTOR; Vol 13 No 1 (2020); 6-10 2460-0385 1979-018X info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion Peer-reviewed Article 2020 ftunivjemberojs https://doi.org/10.19184/rotor.v13i1.19135 2021-12-24T06:55:59Z Energy needs in the future will continue to grow along with the growth of the population. Renewable and non-renewable energy sources continue to develop with various innovations. However, energy consumption from non-renewable energy such as coal, oil, and natural gas still dominates. Therefore, one of the potential non-renewable energy sources that can be optimized at present is unconventional oil and gas reserves. Unconventional oil and gas are oil and gas that comes from sourcerock, low permeability reservoirs, such as shale oil, shale gas, tight sand gas, coal bed methane, and methane-hydrate. To produce oil and gas from the tight sand gas reservoir, the hydraulic fracture method is a commonly used method. A hydraulic fracture is a well stimulation technique in which rock is fractured by a pressurized liquid. The process involves the high-pressure injection of fracking fluid into the wellbore to create crack in the deep rock formation through which natural gas, petroleum and brine will flow more freely. When the hydraulic pressure is removed from the well, small grains of hydraulic fracturing proppants hold the fracture open. Well log data such as gamma ray log, SP log, density log, resistivity log and so on will be processed and produce shale volume, porosity, permeability, and water saturation. Procced data from well log will be validated by core data. These data will be input into a reservoir model. A hydraulic fracture design will be made in the reservoir model with a certain length, width, and permeability using the uniform conductivity rectangular fracture method. The simulation will continue by using different length fracture design so that the optimum fracture length value is obtained. Keywords: Hydraulic Fracture, Reservoir Modelling, Reservoir Simulation Article in Journal/Newspaper Methane hydrate Jurnal University of Jember ROTOR 13 1 6
institution Open Polar
collection Jurnal University of Jember
op_collection_id ftunivjemberojs
language English
description Energy needs in the future will continue to grow along with the growth of the population. Renewable and non-renewable energy sources continue to develop with various innovations. However, energy consumption from non-renewable energy such as coal, oil, and natural gas still dominates. Therefore, one of the potential non-renewable energy sources that can be optimized at present is unconventional oil and gas reserves. Unconventional oil and gas are oil and gas that comes from sourcerock, low permeability reservoirs, such as shale oil, shale gas, tight sand gas, coal bed methane, and methane-hydrate. To produce oil and gas from the tight sand gas reservoir, the hydraulic fracture method is a commonly used method. A hydraulic fracture is a well stimulation technique in which rock is fractured by a pressurized liquid. The process involves the high-pressure injection of fracking fluid into the wellbore to create crack in the deep rock formation through which natural gas, petroleum and brine will flow more freely. When the hydraulic pressure is removed from the well, small grains of hydraulic fracturing proppants hold the fracture open. Well log data such as gamma ray log, SP log, density log, resistivity log and so on will be processed and produce shale volume, porosity, permeability, and water saturation. Procced data from well log will be validated by core data. These data will be input into a reservoir model. A hydraulic fracture design will be made in the reservoir model with a certain length, width, and permeability using the uniform conductivity rectangular fracture method. The simulation will continue by using different length fracture design so that the optimum fracture length value is obtained. Keywords: Hydraulic Fracture, Reservoir Modelling, Reservoir Simulation
format Article in Journal/Newspaper
author D.S., Eriska Eklezia
Abror, Hadziqul
spellingShingle D.S., Eriska Eklezia
Abror, Hadziqul
OPTIMASI PANJANG HYDRAULIC FRACTURE PADA RESERVOIR NON-KONVENSIONAL DENGAN METODE UNIFORM CONDUCTIVITY RECTANGULAR FRACTURE
author_facet D.S., Eriska Eklezia
Abror, Hadziqul
author_sort D.S., Eriska Eklezia
title OPTIMASI PANJANG HYDRAULIC FRACTURE PADA RESERVOIR NON-KONVENSIONAL DENGAN METODE UNIFORM CONDUCTIVITY RECTANGULAR FRACTURE
title_short OPTIMASI PANJANG HYDRAULIC FRACTURE PADA RESERVOIR NON-KONVENSIONAL DENGAN METODE UNIFORM CONDUCTIVITY RECTANGULAR FRACTURE
title_full OPTIMASI PANJANG HYDRAULIC FRACTURE PADA RESERVOIR NON-KONVENSIONAL DENGAN METODE UNIFORM CONDUCTIVITY RECTANGULAR FRACTURE
title_fullStr OPTIMASI PANJANG HYDRAULIC FRACTURE PADA RESERVOIR NON-KONVENSIONAL DENGAN METODE UNIFORM CONDUCTIVITY RECTANGULAR FRACTURE
title_full_unstemmed OPTIMASI PANJANG HYDRAULIC FRACTURE PADA RESERVOIR NON-KONVENSIONAL DENGAN METODE UNIFORM CONDUCTIVITY RECTANGULAR FRACTURE
title_sort optimasi panjang hydraulic fracture pada reservoir non-konvensional dengan metode uniform conductivity rectangular fracture
publisher Jurusan Teknik Mesin Fakultas Teknik Universitas Jember
publishDate 2020
url https://jurnal.unej.ac.id/index.php/RTR/article/view/19135
https://doi.org/10.19184/rotor.v13i1.19135
genre Methane hydrate
genre_facet Methane hydrate
op_source ROTOR; Vol 13 No 1 (2020); 6-10
2460-0385
1979-018X
op_relation https://jurnal.unej.ac.id/index.php/RTR/article/view/19135/8521
https://jurnal.unej.ac.id/index.php/RTR/article/view/19135
doi:10.19184/rotor.v13i1.19135
op_rights Copyright (c) 2020 ROTOR
op_doi https://doi.org/10.19184/rotor.v13i1.19135
container_title ROTOR
container_volume 13
container_issue 1
container_start_page 6
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