Shale gas sweet spot identification and precise geo-steering drilling in Weiyuan Block of Sichuan Basin, SW China

Based on drilling and production test data and the geological, geochemical, geophysical and rock mechanics achievements of Weiyuan Block of Sichuan Basin, “sweet spots” of shale gas were determined and geosteering technology was tested in drilling the sweet spots under complex structural background....

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Main Authors: Naizhen LIU, Guoyong WANG
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2016-12-01
Series:Petroleum Exploration and Development
Online Access:http://www.sciencedirect.com/science/article/pii/S1876380416301240
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spelling doaj-b8f6fd967da249ad9e0772a62a93c38b2021-02-02T01:23:29ZengKeAi Communications Co., Ltd.Petroleum Exploration and Development1876-38042016-12-0143610671075Shale gas sweet spot identification and precise geo-steering drilling in Weiyuan Block of Sichuan Basin, SW ChinaNaizhen LIU0Guoyong WANG1Corresponding author; CNPC Greatwall Drilling CompanyCNPC Greatwall Drilling CompanyBased on drilling and production test data and the geological, geochemical, geophysical and rock mechanics achievements of Weiyuan Block of Sichuan Basin, “sweet spots” of shale gas were determined and geosteering technology was tested in drilling the sweet spots under complex structural background. The high quality Silurian Longmaxi Formation shale (with TOC≥2%) in the study area, thick (36.0−44.5 meters), is divided into four sublayers, from bottom to top, which differ widely in TOC (2.0%−8.1%), gas content (1.2−12.6 m3/t), porosity (0.66%−11.80%), and brittle mineral content (17.5%−98.5%). Considering gas content and fracability of shale, the layer Long 11a in Longmaxi Formation is the best “sweet spot” layer in vertical direction; horizontally, the areas with folding structure in shale reservoir have more natural fractures, and thus have better storage quality and permeability, are “sweet spots”. During drilling of the sweet spots, three-dimensional seismic and geological modeling was used to predict the depth of “sweet spot”, which was corrected in time with drilling data, and by controlling well trajectory this way, the drilling rate of “sweet spots” has been improved. Key words: Sichuan Basin, Weiyuan Block, Silurian Longmaxi Formation, shale gas, high quality shale, sweet spot, geosteering technology in drillinghttp://www.sciencedirect.com/science/article/pii/S1876380416301240
collection DOAJ
language English
format Article
sources DOAJ
author Naizhen LIU
Guoyong WANG
spellingShingle Naizhen LIU
Guoyong WANG
Shale gas sweet spot identification and precise geo-steering drilling in Weiyuan Block of Sichuan Basin, SW China
Petroleum Exploration and Development
author_facet Naizhen LIU
Guoyong WANG
author_sort Naizhen LIU
title Shale gas sweet spot identification and precise geo-steering drilling in Weiyuan Block of Sichuan Basin, SW China
title_short Shale gas sweet spot identification and precise geo-steering drilling in Weiyuan Block of Sichuan Basin, SW China
title_full Shale gas sweet spot identification and precise geo-steering drilling in Weiyuan Block of Sichuan Basin, SW China
title_fullStr Shale gas sweet spot identification and precise geo-steering drilling in Weiyuan Block of Sichuan Basin, SW China
title_full_unstemmed Shale gas sweet spot identification and precise geo-steering drilling in Weiyuan Block of Sichuan Basin, SW China
title_sort shale gas sweet spot identification and precise geo-steering drilling in weiyuan block of sichuan basin, sw china
publisher KeAi Communications Co., Ltd.
series Petroleum Exploration and Development
issn 1876-3804
publishDate 2016-12-01
description Based on drilling and production test data and the geological, geochemical, geophysical and rock mechanics achievements of Weiyuan Block of Sichuan Basin, “sweet spots” of shale gas were determined and geosteering technology was tested in drilling the sweet spots under complex structural background. The high quality Silurian Longmaxi Formation shale (with TOC≥2%) in the study area, thick (36.0−44.5 meters), is divided into four sublayers, from bottom to top, which differ widely in TOC (2.0%−8.1%), gas content (1.2−12.6 m3/t), porosity (0.66%−11.80%), and brittle mineral content (17.5%−98.5%). Considering gas content and fracability of shale, the layer Long 11a in Longmaxi Formation is the best “sweet spot” layer in vertical direction; horizontally, the areas with folding structure in shale reservoir have more natural fractures, and thus have better storage quality and permeability, are “sweet spots”. During drilling of the sweet spots, three-dimensional seismic and geological modeling was used to predict the depth of “sweet spot”, which was corrected in time with drilling data, and by controlling well trajectory this way, the drilling rate of “sweet spots” has been improved. Key words: Sichuan Basin, Weiyuan Block, Silurian Longmaxi Formation, shale gas, high quality shale, sweet spot, geosteering technology in drilling
url http://www.sciencedirect.com/science/article/pii/S1876380416301240
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AT guoyongwang shalegassweetspotidentificationandprecisegeosteeringdrillinginweiyuanblockofsichuanbasinswchina
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