Pressure Transient Analysis and Production Analysis for New Albany Shale Gas Wells

Shale gas has become increasingly important to United States energy supply. During recent decades, the mechanisms of shale gas storage and transport were gradually recognized. Gas desorption was also realized and quantitatively described. Models and approaches special for estimating rate decline and...

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Main Author: Song, Bo
Other Authors: Ehlig-Economics, Christine A.
Format: Others
Language:en_US
Published: 2010
Subjects:
Online Access:http://hdl.handle.net/1969.1/ETD-TAMU-2010-08-8456
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spelling ndltd-tamu.edu-oai-repository.tamu.edu-1969.1-ETD-TAMU-2010-08-84562013-01-08T10:41:40ZPressure Transient Analysis and Production Analysis for New Albany Shale Gas WellsSong, BoShale GasPressure Transient AnalysisProduction AnalysisShale gas has become increasingly important to United States energy supply. During recent decades, the mechanisms of shale gas storage and transport were gradually recognized. Gas desorption was also realized and quantitatively described. Models and approaches special for estimating rate decline and recovery of shale gas wells were developed. As the strategy of the horizontal well with multiple transverse fractures (MTFHW) was discovered and its significance to economic shale gas production was understood, rate decline and pressure transient analysis models for this type of well were developed to reveal the well behavior. In this thesis, we considered a “Triple-porosity/Dual-permeability” model and performed sensitivity studies to understand long term pressure drawdown behavior of MTFHWs. A key observation from this study is that the early linear flow regime before interfracture interference gives a relationship between summed fracture half-length and permeability, from which we can estimate either when the other is known. We studied the impact of gas desorption on the time when the pressure perturbation caused by production from adjacent transference fractures (fracture interference time) and programmed an empirical method to calculate a time shift that can be used to qualify the gas desorption impact on long term production behavior. We focused on the field case Well A in New Albany Shale. We estimated the EUR for 33 wells, including Well A, using an existing analysis approach. We applied a unified BU-RNP method to process the one-year production/pressure transient data and performed PTA to the resulting virtual constant-rate pressure drawdown. Production analysis was performed meanwhile. Diagnosis plots for PTA and RNP analysis revealed that only the early linear flow regime was visible in the data, and permeability was estimated both from a model match and from the relationship between fracture halflength and permeability. Considering gas desorption, the fracture interference will occur only after several centuries. Based on this result, we recommend a well design strategy to increase the gas recovery factor by decreasing the facture spacing. The higher EUR of Well A compared to the vertical wells encourages drilling more MTFHWs in New Albany Shale.Ehlig-Economics, Christine A.2010-10-12T22:31:54Z2010-10-14T16:08:06Z2010-10-12T22:31:54Z2010-10-14T16:08:06Z2010-082010-10-12August 2010BookThesisElectronic Thesistextapplication/pdfhttp://hdl.handle.net/1969.1/ETD-TAMU-2010-08-8456en_US
collection NDLTD
language en_US
format Others
sources NDLTD
topic Shale Gas
Pressure Transient Analysis
Production Analysis
spellingShingle Shale Gas
Pressure Transient Analysis
Production Analysis
Song, Bo
Pressure Transient Analysis and Production Analysis for New Albany Shale Gas Wells
description Shale gas has become increasingly important to United States energy supply. During recent decades, the mechanisms of shale gas storage and transport were gradually recognized. Gas desorption was also realized and quantitatively described. Models and approaches special for estimating rate decline and recovery of shale gas wells were developed. As the strategy of the horizontal well with multiple transverse fractures (MTFHW) was discovered and its significance to economic shale gas production was understood, rate decline and pressure transient analysis models for this type of well were developed to reveal the well behavior. In this thesis, we considered a “Triple-porosity/Dual-permeability” model and performed sensitivity studies to understand long term pressure drawdown behavior of MTFHWs. A key observation from this study is that the early linear flow regime before interfracture interference gives a relationship between summed fracture half-length and permeability, from which we can estimate either when the other is known. We studied the impact of gas desorption on the time when the pressure perturbation caused by production from adjacent transference fractures (fracture interference time) and programmed an empirical method to calculate a time shift that can be used to qualify the gas desorption impact on long term production behavior. We focused on the field case Well A in New Albany Shale. We estimated the EUR for 33 wells, including Well A, using an existing analysis approach. We applied a unified BU-RNP method to process the one-year production/pressure transient data and performed PTA to the resulting virtual constant-rate pressure drawdown. Production analysis was performed meanwhile. Diagnosis plots for PTA and RNP analysis revealed that only the early linear flow regime was visible in the data, and permeability was estimated both from a model match and from the relationship between fracture halflength and permeability. Considering gas desorption, the fracture interference will occur only after several centuries. Based on this result, we recommend a well design strategy to increase the gas recovery factor by decreasing the facture spacing. The higher EUR of Well A compared to the vertical wells encourages drilling more MTFHWs in New Albany Shale.
author2 Ehlig-Economics, Christine A.
author_facet Ehlig-Economics, Christine A.
Song, Bo
author Song, Bo
author_sort Song, Bo
title Pressure Transient Analysis and Production Analysis for New Albany Shale Gas Wells
title_short Pressure Transient Analysis and Production Analysis for New Albany Shale Gas Wells
title_full Pressure Transient Analysis and Production Analysis for New Albany Shale Gas Wells
title_fullStr Pressure Transient Analysis and Production Analysis for New Albany Shale Gas Wells
title_full_unstemmed Pressure Transient Analysis and Production Analysis for New Albany Shale Gas Wells
title_sort pressure transient analysis and production analysis for new albany shale gas wells
publishDate 2010
url http://hdl.handle.net/1969.1/ETD-TAMU-2010-08-8456
work_keys_str_mv AT songbo pressuretransientanalysisandproductionanalysisfornewalbanyshalegaswells
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