Geothermal Well Casing Design with High Temperature and Corrosive in Q Field
Casing design is the most crucial phase of drill a geothermal well. As most of problems could be prevented beforehand by having an excellent well casing design. Prior and present well problems may be assessed to enhance casing design mitigate leading causes and its relationship to well casing. This...
Main Authors: | , |
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Format: | Article |
Language: | English |
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Universitas Islam Riau (UIR) Press
2023-08-01
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Series: | Journal of Earth Energy Engineering |
Subjects: | |
Online Access: | https://journal.uir.ac.id/index.php/JEEE/article/view/14100 |
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author | Raka Wardana Muhammad Akhwan |
author_facet | Raka Wardana Muhammad Akhwan |
author_sort | Raka Wardana |
collection | DOAJ |
description | Casing design is the most crucial phase of drill a geothermal well. As most of problems could be prevented beforehand by having an excellent well casing design. Prior and present well problems may be assessed to enhance casing design mitigate leading causes and its relationship to well casing. This research is about geothermal well casing design by analyzing in advance the problems that the casing may encounter during drilling and production through NPT & casing damage analysis. The purpose is to construct design depth and grade of geothermal well casing from the effects of axial, hoop, and thermal stress, as well as corrosion. The method used is to analyze the NPT from the available DDR data of the wells and then analyze the damage that occurs to the production wells which then the results of these analysis’ become recommendations for of the next well casing design. The results show Well FDL-33 will use tie-back system with surface casing 20” K55 133 ppf at 350 mMD with semi-premium connection, production casing 13-3/8” L80 68 ppf at 1475.8 mMD with premium connection, production tieback casing 13-3 /8” L80 68 ppf at 300 mMD with premium connection, and production liner 9-5/8” L80 40 ppf at 2695.3 mMD with semi-premium connection.
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first_indexed | 2024-03-08T15:39:01Z |
format | Article |
id | doaj.art-b905239f453945dba5c81e63679d76dd |
institution | Directory Open Access Journal |
issn | 2301-8097 2540-9352 |
language | English |
last_indexed | 2024-03-08T15:39:01Z |
publishDate | 2023-08-01 |
publisher | Universitas Islam Riau (UIR) Press |
record_format | Article |
series | Journal of Earth Energy Engineering |
spelling | doaj.art-b905239f453945dba5c81e63679d76dd2024-01-09T16:47:35ZengUniversitas Islam Riau (UIR) PressJournal of Earth Energy Engineering2301-80972540-93522023-08-01122s10.25299/jeee.2023.14100Geothermal Well Casing Design with High Temperature and Corrosive in Q FieldRaka Wardana0Muhammad Akhwan1Universitas Pertamina, IndonesiaUniversitas Pertamina, IndonesiaCasing design is the most crucial phase of drill a geothermal well. As most of problems could be prevented beforehand by having an excellent well casing design. Prior and present well problems may be assessed to enhance casing design mitigate leading causes and its relationship to well casing. This research is about geothermal well casing design by analyzing in advance the problems that the casing may encounter during drilling and production through NPT & casing damage analysis. The purpose is to construct design depth and grade of geothermal well casing from the effects of axial, hoop, and thermal stress, as well as corrosion. The method used is to analyze the NPT from the available DDR data of the wells and then analyze the damage that occurs to the production wells which then the results of these analysis’ become recommendations for of the next well casing design. The results show Well FDL-33 will use tie-back system with surface casing 20” K55 133 ppf at 350 mMD with semi-premium connection, production casing 13-3/8” L80 68 ppf at 1475.8 mMD with premium connection, production tieback casing 13-3 /8” L80 68 ppf at 300 mMD with premium connection, and production liner 9-5/8” L80 40 ppf at 2695.3 mMD with semi-premium connection. https://journal.uir.ac.id/index.php/JEEE/article/view/14100CasingGeothermalNPTCorrosionThermal Stress |
spellingShingle | Raka Wardana Muhammad Akhwan Geothermal Well Casing Design with High Temperature and Corrosive in Q Field Journal of Earth Energy Engineering Casing Geothermal NPT Corrosion Thermal Stress |
title | Geothermal Well Casing Design with High Temperature and Corrosive in Q Field |
title_full | Geothermal Well Casing Design with High Temperature and Corrosive in Q Field |
title_fullStr | Geothermal Well Casing Design with High Temperature and Corrosive in Q Field |
title_full_unstemmed | Geothermal Well Casing Design with High Temperature and Corrosive in Q Field |
title_short | Geothermal Well Casing Design with High Temperature and Corrosive in Q Field |
title_sort | geothermal well casing design with high temperature and corrosive in q field |
topic | Casing Geothermal NPT Corrosion Thermal Stress |
url | https://journal.uir.ac.id/index.php/JEEE/article/view/14100 |
work_keys_str_mv | AT rakawardana geothermalwellcasingdesignwithhightemperatureandcorrosiveinqfield AT muhammadakhwan geothermalwellcasingdesignwithhightemperatureandcorrosiveinqfield |