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苏里格气田长水平段水平井钻井关键技术——以S77-35-H5井为例 被引量:1
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作者 李高刚 魏祥高 +5 位作者 汪孝贵 唐健 芦宏斌 马兰波 张亥先 杨海斌 《天然气技术与经济》 2024年第2期8-13,共6页
为了进一步降低钻井作业成本、提高单井产量、解决长水平段水平井使用“常规动力工具+水基钻井液”替代“旋转导向+油基钻井液”过程中出现的系列问题,采用鄂尔多斯盆地苏里格气田长水平段水平井配套技术实现了低成本开发。研究结果表明... 为了进一步降低钻井作业成本、提高单井产量、解决长水平段水平井使用“常规动力工具+水基钻井液”替代“旋转导向+油基钻井液”过程中出现的系列问题,采用鄂尔多斯盆地苏里格气田长水平段水平井配套技术实现了低成本开发。研究结果表明:(1)采用“双二维七段制”轨道,可以解决螺杆工具面摆放困难及钻具屈曲的问题;(2)应用数学建模+工程干预技术,能有效提高井筒清洁度;(3)采用井筒压力监测+漂浮下套管综合技术,可以实现顺利下套管;(4)近钻头GR地质导向技术能提高砂层钻遇率;(5)有机盐钻井液体系能有效预防井下坍塌及漏失。现场应用结果表明,起下钻摩阻下降11%,钻进扭矩下降17%,综合钻井速度提高28%,有效降低钻井成本。结论认为,该技术的成功研究为苏里格气田长水平段水平井低成本开发提供了借鉴,也为油气田提质增效开辟了新思路。 展开更多
关键词 鄂尔多斯盆地 苏格里气田 井身结构 轨迹优化 减摩降阻 井眼清洁 数值模拟
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Detailed sedimentary facies of a sandstone reservoir in the eastern zone of the Sulige gas field, Ordos Basin 被引量:10
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作者 LI Yijun ZHAO Yong +2 位作者 YANG Renchao FAN Aiping LI Fuping 《Mining Science and Technology》 EI CAS 2010年第6期891-897,903,共8页
Given sustaining exploration, the eastern zone of the Sulige gas field may soon become a key area of exploitation. In order to explore its genesis, types and distribution of the reservoir sandstones in the eastern zon... Given sustaining exploration, the eastern zone of the Sulige gas field may soon become a key area of exploitation. In order to explore its genesis, types and distribution of the reservoir sandstones in the eastern zone of this gas field, we focused in our study on the provenance and detailed sedimentary facies of sandstone of the He8 (the eighth part of the Shihezi formation, Permian system) and Shanxil (the first part of the Shanxi formation, Permian system) members, based on core observations, analyses in petrography, granularity and logging. The results show that: 1) the sandstone provenance of Shanxil and He8 in the eastern zone of the Sulige gas field is from the north of the Ordos Basin, characterized by dual directions from the north and northeast. 2) The He8 and Shanxil members were deposited in a fluvial-delta sedimentary system. The He8 was mainly deposited in braided rivers, in- cluding braided channels, channel bars, levee and floodplain sub-environments, whereas the Shanxil Member was deposited in braided rivers and deltas, including braided channels, channel bars, floodplains, tributaries and inter-tributary sub-environments. 3) Sedimentary facies bands migrated in drastic fashion towards the basin from the Shanxil to the He8 Member. Base levels of sedi- mentation generally present a trend of small increases in-amplitude, large decreasing amplitudes and slow and gradual Increases. 4) The continuity of the reservoir sandbodies along the source direction is better than that perpendicular to the direction. Compared with Shanxil, both dimensions and continuity of the sandbodies in He8 are better from which we conclude that it is the most fa- vorable part of the reservoir. 展开更多
关键词 Ordos Basin Sulige gas field PERMIAN sandstone reservoir detailed sedimentary facies
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Diagenesis and porosity evolution of sandstone reservoirs in the East II part of Sulige gas field, Ordos Basin 被引量:21
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作者 Yang Renchao Fan Aiping Han Zuozhen Wang Xiuping 《International Journal of Mining Science and Technology》 SCIE EI 2012年第3期311-316,共6页
It is becoming an important controlling factor of gas exploration and exploitation in the east part of Sulige gas field in the Ordos Basin where the reservoir of main gas formations is tight sandstones. Employing expe... It is becoming an important controlling factor of gas exploration and exploitation in the east part of Sulige gas field in the Ordos Basin where the reservoir of main gas formations is tight sandstones. Employing experimental methods of slice identification, casting slice, scan electron microscope, and X-ray diffrac- tions, we studied the characteristics of petrology and diagenesis on reservoirs in Shanl section of Shanxi formation and He8 section of Shihezi formation of the Permian system in the East II part of Sulige gas field. The results include: (1) the main sandstones in these areas are dominated by lithic sandstone and litbic silicarenite with low grade of maturity; (2) the diagenesis of sandstone in these areas mainly include compaction, cementation, corrosion and alteration. Conclusions are as follows: (1) the diagenetic stage reached period B of the middle diagenetic stage; (2) the early diagenetic compaction is one of the main factors to decreasing porosity; (3) the secondary pores formed by corrosion in acidity medium con- ditions in period A of the middle diagenetic stage can distinctly ameliorate the poor reservoir capability of sandstone and, (4) cementation in period B of the middle diagenetic stage is the most important factor leading; to poor physical property of sandstone reservoirs. 展开更多
关键词 Ordos BasinPermianSandstone reservoirsDiagenesisPorosity evolution
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