Minimizing Water Production from Unconventional Gas Wells Using a Novel Environmentally Benign Polymer Gel System

Excess water production is a major economic and environmental problem for the oil and gas industry. The cost of processing excess water runs into billions of dollars. Polymer gel technology has been successfully used in controlling water influx without damaging hydrocarbon production in conventional...

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Main Author: Gakhar, Kush
Other Authors: Schubert, Jerome
Format: Others
Language:en_US
Published: 2012
Subjects:
Online Access:http://hdl.handle.net/1969.1/ETD-TAMU-2011-12-10590
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spelling ndltd-tamu.edu-oai-repository.tamu.edu-1969.1-ETD-TAMU-2011-12-105902014-01-16T03:56:42ZMinimizing Water Production from Unconventional Gas Wells Using a Novel Environmentally Benign Polymer Gel SystemGakhar, KushPolymer GelMinimizing Water ProductionUnconventionalShale GasEnvironmentally BenignExcess water production is a major economic and environmental problem for the oil and gas industry. The cost of processing excess water runs into billions of dollars. Polymer gel technology has been successfully used in controlling water influx without damaging hydrocarbon production in conventional naturally fractured or hydraulically fractured reservoirs. However, there has been no systematic investigation on effectiveness and placement conditions of polymer gels for shutting off water flow from fractures with narrow apertures in shale and tight gas reservoirs. The existing polymer gels, like those based on Chromium(III) Acetate, as a crosslinker will exert very high extrusion pressure to effectively penetrate the narrow aperture fractures present in shale and tight gas reservoirs. This gives rise to a need for a new polymer gel system that can be used for selectively shutting off water flow from narrow aperture fractures in shale and tight gas reservoirs. The new gel system will have a longer gelation time than the existing polymer gels; this ensures minimum crosslinking of the gel by the time it reaches bottom hole. The gelant solution will be pumped at low pressure so that, it penetrates only pre-existing fractures in the formation with ease. This study for the first time focuses on developing an environmentally benign polymer gel system based on high molecular weight HPAM, as a base polymer and a commercial grade PEI as an organic crosslinker. Gel samples of different concentration ratios of the polymer and crosslinker were prepared and classified under Sydansk code of gel strength to find optimum concentration ratios that gave good gels. The gel system was characterized using Brookfield DV-III Ultra Rheometer and Fann-35 Viscometer.Schubert, JeromeLane, Robert H.Sun, Yuefeng2012-02-14T22:20:32Z2012-02-16T16:17:15Z2014-01-15T07:05:29Z2011-122012-02-14December 2011Thesisthesistextapplication/pdfhttp://hdl.handle.net/1969.1/ETD-TAMU-2011-12-10590en_US
collection NDLTD
language en_US
format Others
sources NDLTD
topic Polymer Gel
Minimizing Water Production
Unconventional
Shale Gas
Environmentally Benign
spellingShingle Polymer Gel
Minimizing Water Production
Unconventional
Shale Gas
Environmentally Benign
Gakhar, Kush
Minimizing Water Production from Unconventional Gas Wells Using a Novel Environmentally Benign Polymer Gel System
description Excess water production is a major economic and environmental problem for the oil and gas industry. The cost of processing excess water runs into billions of dollars. Polymer gel technology has been successfully used in controlling water influx without damaging hydrocarbon production in conventional naturally fractured or hydraulically fractured reservoirs. However, there has been no systematic investigation on effectiveness and placement conditions of polymer gels for shutting off water flow from fractures with narrow apertures in shale and tight gas reservoirs. The existing polymer gels, like those based on Chromium(III) Acetate, as a crosslinker will exert very high extrusion pressure to effectively penetrate the narrow aperture fractures present in shale and tight gas reservoirs. This gives rise to a need for a new polymer gel system that can be used for selectively shutting off water flow from narrow aperture fractures in shale and tight gas reservoirs. The new gel system will have a longer gelation time than the existing polymer gels; this ensures minimum crosslinking of the gel by the time it reaches bottom hole. The gelant solution will be pumped at low pressure so that, it penetrates only pre-existing fractures in the formation with ease. This study for the first time focuses on developing an environmentally benign polymer gel system based on high molecular weight HPAM, as a base polymer and a commercial grade PEI as an organic crosslinker. Gel samples of different concentration ratios of the polymer and crosslinker were prepared and classified under Sydansk code of gel strength to find optimum concentration ratios that gave good gels. The gel system was characterized using Brookfield DV-III Ultra Rheometer and Fann-35 Viscometer.
author2 Schubert, Jerome
author_facet Schubert, Jerome
Gakhar, Kush
author Gakhar, Kush
author_sort Gakhar, Kush
title Minimizing Water Production from Unconventional Gas Wells Using a Novel Environmentally Benign Polymer Gel System
title_short Minimizing Water Production from Unconventional Gas Wells Using a Novel Environmentally Benign Polymer Gel System
title_full Minimizing Water Production from Unconventional Gas Wells Using a Novel Environmentally Benign Polymer Gel System
title_fullStr Minimizing Water Production from Unconventional Gas Wells Using a Novel Environmentally Benign Polymer Gel System
title_full_unstemmed Minimizing Water Production from Unconventional Gas Wells Using a Novel Environmentally Benign Polymer Gel System
title_sort minimizing water production from unconventional gas wells using a novel environmentally benign polymer gel system
publishDate 2012
url http://hdl.handle.net/1969.1/ETD-TAMU-2011-12-10590
work_keys_str_mv AT gakharkush minimizingwaterproductionfromunconventionalgaswellsusinganovelenvironmentallybenignpolymergelsystem
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