RESULTS AND CHARACTERISTICS OF 5G HOLE DRILLING AND THE FIRST TAPPING OF LAKE VOSTOK
We present here a brief description of the drilling operations in the deep 5G hole at the Russian Vostok Station with more detailed account of the final stage of this long-term project successfully ended on February 5, 2012 with the first Lake Vostok unsealing. Relevant information on the borehole d...
Published in: | Ice and Snow |
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Main Authors: | , , , , , , , , , |
Format: | Article in Journal/Newspaper |
Language: | Russian |
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IGRAS
2015
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Subjects: | |
Online Access: | https://ice-snow.igras.ru/jour/article/view/202 https://doi.org/10.15356/2076-6734-2012-4-12-20 |
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ftjias:oai:oai.ice.elpub.ru:article/202 |
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record_format |
openpolar |
institution |
Open Polar |
collection |
Ice and Snow (E-Journal) |
op_collection_id |
ftjias |
language |
Russian |
topic |
borehole deep drilling drilling parameters hydrofracturing ice core ice sheet subglacial Lake Vostok unsealing вскрытие гидроразрыв глубокое бурение ледниковый покров ледяной керн параметры процесса бурения подледниковое озеро Восток скважина |
spellingShingle |
borehole deep drilling drilling parameters hydrofracturing ice core ice sheet subglacial Lake Vostok unsealing вскрытие гидроразрыв глубокое бурение ледниковый покров ледяной керн параметры процесса бурения подледниковое озеро Восток скважина N. Vasil’ev I. V. Lipenkov Ya. A. Dmitriev N. A. Podolyak V. V. Zubkov M. Н. Васильев И. В. Липенков Я. А. Дмитриев Н. А. Подоляк В. В. Зубков М. RESULTS AND CHARACTERISTICS OF 5G HOLE DRILLING AND THE FIRST TAPPING OF LAKE VOSTOK |
topic_facet |
borehole deep drilling drilling parameters hydrofracturing ice core ice sheet subglacial Lake Vostok unsealing вскрытие гидроразрыв глубокое бурение ледниковый покров ледяной керн параметры процесса бурения подледниковое озеро Восток скважина |
description |
We present here a brief description of the drilling operations in the deep 5G hole at the Russian Vostok Station with more detailed account of the final stage of this long-term project successfully ended on February 5, 2012 with the first Lake Vostok unsealing. Relevant information on the borehole design and the technical characteristics of the downhole and surface drilling equipment is given. The peculiarities of the drilling process are discussed in connection with changing properties of the penetrated ice. The data analysis allows defining the main factors that influence the efficiency of the electromechanical drill system at great depths. It is shown that the elevated temperature of ice and its coarse-crystalline texture are mainly responsible for the significant for the showing-down of ice coring in the bottom sections of ice sheets observed at Vostok and at other drilling sites in Antarctica and Greenland as well. Based on the large amount of experimental data obtained in the course of the deep drilling at Vostok, we discuss the processes which occur in the borehole during the ice drilling and unsealing the sub-ice water bodies. In particular, we investigate the conditions for occurrence of hydraulic fracturing in the hole and the possible effect of the hydrofrac on the height of the water column that have risen in hole 5G after the Lake Vostok unsealing. Finally we formulate the drill equipment requirements and process specifications that would ensure the best performance of an electromechanical drill and trouble-free drilling operations at different depths in a borehole up to the bottom of ice sheet. Приводятся сведения об истории бурения глубокой скважины 5Г на российской станции Восток и обсуждаются технологические параметры вскрытия подледникового озера Восток. Описаны конструкция скважины и даны технические характеристики скважинного и поверхностного оборудования. Рассмотрены особенности бурения глубоких скважин на разных глубинах. На основе большого объёма экспериментальных данных, накопленных при ... |
format |
Article in Journal/Newspaper |
author |
N. Vasil’ev I. V. Lipenkov Ya. A. Dmitriev N. A. Podolyak V. V. Zubkov M. Н. Васильев И. В. Липенков Я. А. Дмитриев Н. А. Подоляк В. В. Зубков М. |
author_facet |
N. Vasil’ev I. V. Lipenkov Ya. A. Dmitriev N. A. Podolyak V. V. Zubkov M. Н. Васильев И. В. Липенков Я. А. Дмитриев Н. А. Подоляк В. В. Зубков М. |
author_sort |
N. Vasil’ev I. |
title |
RESULTS AND CHARACTERISTICS OF 5G HOLE DRILLING AND THE FIRST TAPPING OF LAKE VOSTOK |
title_short |
RESULTS AND CHARACTERISTICS OF 5G HOLE DRILLING AND THE FIRST TAPPING OF LAKE VOSTOK |
title_full |
RESULTS AND CHARACTERISTICS OF 5G HOLE DRILLING AND THE FIRST TAPPING OF LAKE VOSTOK |
title_fullStr |
RESULTS AND CHARACTERISTICS OF 5G HOLE DRILLING AND THE FIRST TAPPING OF LAKE VOSTOK |
title_full_unstemmed |
RESULTS AND CHARACTERISTICS OF 5G HOLE DRILLING AND THE FIRST TAPPING OF LAKE VOSTOK |
title_sort |
results and characteristics of 5g hole drilling and the first tapping of lake vostok |
publisher |
IGRAS |
publishDate |
2015 |
url |
https://ice-snow.igras.ru/jour/article/view/202 https://doi.org/10.15356/2076-6734-2012-4-12-20 |
long_lat |
ENVELOPE(106.000,106.000,-77.500,-77.500) ENVELOPE(106.837,106.837,-78.464,-78.464) |
geographic |
Greenland Lake Vostok Vostok Station |
geographic_facet |
Greenland Lake Vostok Vostok Station |
genre |
Annals of Glaciology Antarc* Antarctica Arctic Greenland ice core Ice Sheet |
genre_facet |
Annals of Glaciology Antarc* Antarctica Arctic Greenland ice core Ice Sheet |
op_source |
Ice and Snow; Том 52, № 4 (2012); 12-20 Лёд и Снег; Том 52, № 4 (2012); 12-20 2412-3765 2076-6734 10.15356/2076-6734-2012-4 |
op_relation |
Bashkatov A.D. Progressivnye tekhnologii sooruzheniya skvazhin. Progressive technologies of boreholes building. Moscow, 2003: 554 p. [In Russian]. Zheltov Yu.P., Khristianovich S.A. On hydraulic rupture of oil-bearing layer. Izvestiya AN SSSR. Otdel tekhnicheskikh nauk. Proc. of the USSR Academy of Sciences. Branch of the Technical Sciences. 1955, 5: 3–41. [In Russian]. Kudryashov B.B., Chistyakov V.K., Morev V.A. Drilling of the Antarctic ice sheet by thermal method. 25 let Sovetskoy Antarkticheskoy ekspeditsii. 25 years of the Soviet Antarctic Expedition. Leningrad: Hydrometeoizdat, 1983. C. 149–158. [In Russian]. Kudryashov B.B., Chistyakov V.K., Litvinenko V.S. Burenie skvazhin v usloviyakh izmeneniya agregatnogo sostoyaniya gornykh porod. Drilling of boreholes under changes of aggregate state of rock. Leningrad: Nedra, 1991: 295 p. [In Russian]. Lipenkov V.Ya., Polyakova E.V., Duval P., Preobrazhenskaya A.V. Structure of the Antarctic ice sheet near Vostok Station according to results of petrographic-structure investigations in ice core. Problemy Arktiki i Antarktiki. Problems of Arctic and Antarctic. 2007, 76: 68–77. [In Russian]. Maksimovich G.K. Gidravlicheskiy razryv neftyanykh plastov. Hydraulic rupture of oil stratums. Moscow: Gostoptekhizdat, 1957: 98 p. [In Russian]. Patent RF № 1472613 – 20.07.94. Kolonkovyi elektromekhanicheskiy burovoy snaryad. Column electromechanical drilling gear. B.B. Kudryashov, N.I. Vasiliev, V.K. Chistyakov, V.V. Ufaev. [In Russian]. Augustin L., Panichi S., Frascati F. EPICA Dome C 2 drilling operations: performances, difficulties, results. Annals of Glaciology. 2007, 47: 68–72. Kudryashov B.B., Vasiliev N.I., Vostretsov R.N., Dmitriev A.N., Zubkov V.M., Krasilev A.V., Talalay P.G., Barkov N.I., Lipenkov V.Ya., Petit J.R. Deep ice coring at Vostok Station (East Antarctica) by an electromechanical drill. Mem. Natl. Inst. Polar Res.: Spec. Issue. 2002, 56: 91–102. Vasiliev N.I. Some features of ice drilling technology by drill on a hoisting cable. Mem. Natl Inst. Polar Res.: Spec. Issue. 2002, 56: 136–141. https://ice-snow.igras.ru/jour/article/view/202 doi:10.15356/2076-6734-2012-4-12-20 |
op_rights |
Authors who publish with this journal agree to the following terms:Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access). Авторы, публикующие статьи в данном журнале, соглашаются на следующее:Авторы сохраняют за собой авторские права и предоставляют журналу право первой публикации работы, которая по истечении 6 месяцев после публикации автоматически лицензируется на условиях Creative Commons Attribution License , что позволяет другим распространять данную работу с обязательным сохранением ссылок на авторов оригинальной работы и оригинальную публикацию в этом журнале.Редакция журнала будет размещать принятую для публикации статью на сайте журнала до выхода её в свет (после утверждения к печати редколлегией журнала). Авторы также имеют право размещать их работу в сети Интернет (например в институтском хранилище или персональном сайте) до и во время процесса рассмотрения ее данным журналом, так как это может привести к продуктивному обсуждению и большему количеству ссылок на данную работу (См. The Effect of Open Access). |
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ftjias:oai:oai.ice.elpub.ru:article/202 2023-05-15T13:29:50+02:00 RESULTS AND CHARACTERISTICS OF 5G HOLE DRILLING AND THE FIRST TAPPING OF LAKE VOSTOK РЕЗУЛЬТАТЫ И ОСОБЕННОСТИ БУРЕНИЯ СКВАЖИНЫ 5Г И ПЕРВОГО ВСКРЫТИЯ ОЗЕРА ВОСТОК N. Vasil’ev I. V. Lipenkov Ya. A. Dmitriev N. A. Podolyak V. V. Zubkov M. Н. Васильев И. В. Липенков Я. А. Дмитриев Н. А. Подоляк В. В. Зубков М. 2015-11-13 https://ice-snow.igras.ru/jour/article/view/202 https://doi.org/10.15356/2076-6734-2012-4-12-20 ru rus IGRAS Bashkatov A.D. Progressivnye tekhnologii sooruzheniya skvazhin. Progressive technologies of boreholes building. Moscow, 2003: 554 p. [In Russian]. Zheltov Yu.P., Khristianovich S.A. On hydraulic rupture of oil-bearing layer. Izvestiya AN SSSR. Otdel tekhnicheskikh nauk. Proc. of the USSR Academy of Sciences. Branch of the Technical Sciences. 1955, 5: 3–41. [In Russian]. Kudryashov B.B., Chistyakov V.K., Morev V.A. Drilling of the Antarctic ice sheet by thermal method. 25 let Sovetskoy Antarkticheskoy ekspeditsii. 25 years of the Soviet Antarctic Expedition. Leningrad: Hydrometeoizdat, 1983. C. 149–158. [In Russian]. Kudryashov B.B., Chistyakov V.K., Litvinenko V.S. Burenie skvazhin v usloviyakh izmeneniya agregatnogo sostoyaniya gornykh porod. Drilling of boreholes under changes of aggregate state of rock. Leningrad: Nedra, 1991: 295 p. [In Russian]. Lipenkov V.Ya., Polyakova E.V., Duval P., Preobrazhenskaya A.V. Structure of the Antarctic ice sheet near Vostok Station according to results of petrographic-structure investigations in ice core. Problemy Arktiki i Antarktiki. Problems of Arctic and Antarctic. 2007, 76: 68–77. [In Russian]. Maksimovich G.K. Gidravlicheskiy razryv neftyanykh plastov. Hydraulic rupture of oil stratums. Moscow: Gostoptekhizdat, 1957: 98 p. [In Russian]. Patent RF № 1472613 – 20.07.94. Kolonkovyi elektromekhanicheskiy burovoy snaryad. Column electromechanical drilling gear. B.B. Kudryashov, N.I. Vasiliev, V.K. Chistyakov, V.V. Ufaev. [In Russian]. Augustin L., Panichi S., Frascati F. EPICA Dome C 2 drilling operations: performances, difficulties, results. Annals of Glaciology. 2007, 47: 68–72. Kudryashov B.B., Vasiliev N.I., Vostretsov R.N., Dmitriev A.N., Zubkov V.M., Krasilev A.V., Talalay P.G., Barkov N.I., Lipenkov V.Ya., Petit J.R. Deep ice coring at Vostok Station (East Antarctica) by an electromechanical drill. Mem. Natl. Inst. Polar Res.: Spec. Issue. 2002, 56: 91–102. Vasiliev N.I. Some features of ice drilling technology by drill on a hoisting cable. Mem. Natl Inst. Polar Res.: Spec. Issue. 2002, 56: 136–141. https://ice-snow.igras.ru/jour/article/view/202 doi:10.15356/2076-6734-2012-4-12-20 Authors who publish with this journal agree to the following terms:Authors retain copyright and grant the journal right of first publication with the work simultaneously licensed under a Creative Commons Attribution License that allows others to share the work with an acknowledgement of the work's authorship and initial publication in this journal.Authors are able to enter into separate, additional contractual arrangements for the non-exclusive distribution of the journal's published version of the work (e.g., post it to an institutional repository or publish it in a book), with an acknowledgement of its initial publication in this journal.Authors are permitted and encouraged to post their work online (e.g., in institutional repositories or on their website) prior to and during the submission process, as it can lead to productive exchanges, as well as earlier and greater citation of published work (See The Effect of Open Access). Авторы, публикующие статьи в данном журнале, соглашаются на следующее:Авторы сохраняют за собой авторские права и предоставляют журналу право первой публикации работы, которая по истечении 6 месяцев после публикации автоматически лицензируется на условиях Creative Commons Attribution License , что позволяет другим распространять данную работу с обязательным сохранением ссылок на авторов оригинальной работы и оригинальную публикацию в этом журнале.Редакция журнала будет размещать принятую для публикации статью на сайте журнала до выхода её в свет (после утверждения к печати редколлегией журнала). Авторы также имеют право размещать их работу в сети Интернет (например в институтском хранилище или персональном сайте) до и во время процесса рассмотрения ее данным журналом, так как это может привести к продуктивному обсуждению и большему количеству ссылок на данную работу (См. The Effect of Open Access). CC-BY Ice and Snow; Том 52, № 4 (2012); 12-20 Лёд и Снег; Том 52, № 4 (2012); 12-20 2412-3765 2076-6734 10.15356/2076-6734-2012-4 borehole deep drilling drilling parameters hydrofracturing ice core ice sheet subglacial Lake Vostok unsealing вскрытие гидроразрыв глубокое бурение ледниковый покров ледяной керн параметры процесса бурения подледниковое озеро Восток скважина info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion 2015 ftjias https://doi.org/10.15356/2076-6734-2012-4-12-20 https://doi.org/10.15356/2076-6734-2012-4 2022-12-20T13:30:26Z We present here a brief description of the drilling operations in the deep 5G hole at the Russian Vostok Station with more detailed account of the final stage of this long-term project successfully ended on February 5, 2012 with the first Lake Vostok unsealing. Relevant information on the borehole design and the technical characteristics of the downhole and surface drilling equipment is given. The peculiarities of the drilling process are discussed in connection with changing properties of the penetrated ice. The data analysis allows defining the main factors that influence the efficiency of the electromechanical drill system at great depths. It is shown that the elevated temperature of ice and its coarse-crystalline texture are mainly responsible for the significant for the showing-down of ice coring in the bottom sections of ice sheets observed at Vostok and at other drilling sites in Antarctica and Greenland as well. Based on the large amount of experimental data obtained in the course of the deep drilling at Vostok, we discuss the processes which occur in the borehole during the ice drilling and unsealing the sub-ice water bodies. In particular, we investigate the conditions for occurrence of hydraulic fracturing in the hole and the possible effect of the hydrofrac on the height of the water column that have risen in hole 5G after the Lake Vostok unsealing. Finally we formulate the drill equipment requirements and process specifications that would ensure the best performance of an electromechanical drill and trouble-free drilling operations at different depths in a borehole up to the bottom of ice sheet. Приводятся сведения об истории бурения глубокой скважины 5Г на российской станции Восток и обсуждаются технологические параметры вскрытия подледникового озера Восток. Описаны конструкция скважины и даны технические характеристики скважинного и поверхностного оборудования. Рассмотрены особенности бурения глубоких скважин на разных глубинах. На основе большого объёма экспериментальных данных, накопленных при ... Article in Journal/Newspaper Annals of Glaciology Antarc* Antarctica Arctic Greenland ice core Ice Sheet Ice and Snow (E-Journal) Greenland Lake Vostok ENVELOPE(106.000,106.000,-77.500,-77.500) Vostok Station ENVELOPE(106.837,106.837,-78.464,-78.464) Ice and Snow 52 4 12 |