Methods and technical solutions for keeping the path of a geotechnological borehole

With increasing depth of exploration and process boreholes (at small drilling diameters), the probability of deviation of the borehole path from design trajectory increases many times; i. e. zenith curvature and azimuth deviation of the borehole path occur. Therefore, developing methods for keeping...

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Main Author: D. N. Moldashi
Format: Article
Language:English
Published: National University of Science and Technology MISiS 2021-03-01
Series:Горные науки и технологии
Subjects:
Online Access:https://mst.misis.ru/jour/article/view/264
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author D. N. Moldashi
author_facet D. N. Moldashi
author_sort D. N. Moldashi
collection DOAJ
description With increasing depth of exploration and process boreholes (at small drilling diameters), the probability of deviation of the borehole path from design trajectory increases many times; i. e. zenith curvature and azimuth deviation of the borehole path occur. Therefore, developing methods for keeping vertical path of the borehole when drilling deeper horizons of ore bodies is a very topical issue. The paper presents the results of developing a new bottom-hole assembly for drilling boreholes in soft rocks using screw casing centralizers, which provide good stabilizing and centering effects to mitigate horizontal departure of the hole axis from the design direction and minimize vertical curvature of the hole path (zenith angle) while maintaining sufficient drill string flexibility. The developed technical solutions provide simplicity of design and ability to adapt to wide range of mining, geological and technological drilling conditions. The feasibility of manufacturing the centralizers by own efforts and the technological feasibility of quick and easy connecting the centralizer with other elements of the bottom-hole assembly have been substantiated. The manufacture efficiency is proved by the use of inexpensive and wear-resistant materials in the centralizer armouring, for which tungsten-cobalt or titanium-cobalt hard-alloy inserts were used. In addition, prevailing volume of borehole drilling in soft rocks allowed using replaceable centering elements, as well as their repair and restoration to increase their service life. The manufactured centralizer has a low production cost due to the design simplicity and the use of inexpensive wearresistant material and will compete in the market of drilling tools and technical devices for drill string stabilization. The economic effect from the introduction of the self-produced centralizers amounted to more than 170,000 tenge per a borehole.
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spelling doaj.art-d0abcac7dd9b48bea20ba8de7d7b129b2022-12-21T23:30:12ZengNational University of Science and Technology MISiSГорные науки и технологии2500-06322021-03-0161425110.17073/2500-0632-2021-1-42-51Methods and technical solutions for keeping the path of a geotechnological boreholeD. N. Moldashi0Volkovgeologia JSC (NAC Kazatomprom), Almaty, KazakhstanWith increasing depth of exploration and process boreholes (at small drilling diameters), the probability of deviation of the borehole path from design trajectory increases many times; i. e. zenith curvature and azimuth deviation of the borehole path occur. Therefore, developing methods for keeping vertical path of the borehole when drilling deeper horizons of ore bodies is a very topical issue. The paper presents the results of developing a new bottom-hole assembly for drilling boreholes in soft rocks using screw casing centralizers, which provide good stabilizing and centering effects to mitigate horizontal departure of the hole axis from the design direction and minimize vertical curvature of the hole path (zenith angle) while maintaining sufficient drill string flexibility. The developed technical solutions provide simplicity of design and ability to adapt to wide range of mining, geological and technological drilling conditions. The feasibility of manufacturing the centralizers by own efforts and the technological feasibility of quick and easy connecting the centralizer with other elements of the bottom-hole assembly have been substantiated. The manufacture efficiency is proved by the use of inexpensive and wear-resistant materials in the centralizer armouring, for which tungsten-cobalt or titanium-cobalt hard-alloy inserts were used. In addition, prevailing volume of borehole drilling in soft rocks allowed using replaceable centering elements, as well as their repair and restoration to increase their service life. The manufactured centralizer has a low production cost due to the design simplicity and the use of inexpensive wearresistant material and will compete in the market of drilling tools and technical devices for drill string stabilization. The economic effect from the introduction of the self-produced centralizers amounted to more than 170,000 tenge per a borehole.https://mst.misis.ru/jour/article/view/264rocksdrillingexploration boreholetechnological boreholeuranium miningkazakhstan
spellingShingle D. N. Moldashi
Methods and technical solutions for keeping the path of a geotechnological borehole
Горные науки и технологии
rocks
drilling
exploration borehole
technological borehole
uranium mining
kazakhstan
title Methods and technical solutions for keeping the path of a geotechnological borehole
title_full Methods and technical solutions for keeping the path of a geotechnological borehole
title_fullStr Methods and technical solutions for keeping the path of a geotechnological borehole
title_full_unstemmed Methods and technical solutions for keeping the path of a geotechnological borehole
title_short Methods and technical solutions for keeping the path of a geotechnological borehole
title_sort methods and technical solutions for keeping the path of a geotechnological borehole
topic rocks
drilling
exploration borehole
technological borehole
uranium mining
kazakhstan
url https://mst.misis.ru/jour/article/view/264
work_keys_str_mv AT dnmoldashi methodsandtechnicalsolutionsforkeepingthepathofageotechnologicalborehole