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湿沥青地层控压钻井技术先导试验及效果评价 被引量:1
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作者 郭京华 张华卫 +1 位作者 黄河福 庞小旺 《特种油气藏》 CAS CSCD 北大核心 2014年第3期138-141,158,共4页
伊朗Y油田地层湿沥青侵入井眼的机理复杂,部分井井漏、井涌共存,常规钻井风险大。为解决湿沥青地层存在的钻井问题,制订了控压钻井技术方案。在S3井控压钻井先导试验过程中,分别进行了控压钻进、短程控压起下钻、控压接立柱、控压循环... 伊朗Y油田地层湿沥青侵入井眼的机理复杂,部分井井漏、井涌共存,常规钻井风险大。为解决湿沥青地层存在的钻井问题,制订了控压钻井技术方案。在S3井控压钻井先导试验过程中,分别进行了控压钻进、短程控压起下钻、控压接立柱、控压循环封堵等工艺的现场试验。结果表明,控压钻井技术能够为井口提供安全屏障,实现不停钻压井,环空带压钻进,为解决含酸性气体湿沥青地层的钻井问题开辟了新的技术途径。 展开更多
关键词 控压钻井 沥青地层 高含硫油气田 伊朗Y油田
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元坝超深高含硫化氢气井井筒堵塞机理分析及解堵措施应用 被引量:6
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作者 唐蜜 刘生国 伍强 《内蒙古石油化工》 CAS 2020年第4期1-3,共3页
元坝气田气井生产过程中,出现了部份井筒堵塞情况,严重制约了气井安全稳定生产;井筒堵塞主要有软堵和硬堵两类,软堵为复合物堵塞,通过对堵塞物成份分析,引起井筒堵塞的复合物主要有黄铁矿(FeS2)、重晶石(BaSO4)、石灰石(CaCO3)、地层微... 元坝气田气井生产过程中,出现了部份井筒堵塞情况,严重制约了气井安全稳定生产;井筒堵塞主要有软堵和硬堵两类,软堵为复合物堵塞,通过对堵塞物成份分析,引起井筒堵塞的复合物主要有黄铁矿(FeS2)、重晶石(BaSO4)、石灰石(CaCO3)、地层微粒(SiO2)及地层沥青等;硬堵为座封封隔器的球及球座芯架桥形成的机械堵塞,根据气井不同的堵塞程度及堵塞类型,研制了以无机酸、有机酸为主的化学药剂,同时配套形成了连续油管冲洗、连续油管钻磨等组合工艺,成功解除了8口井井筒堵塞情况,日增产242.67×104m3天然气,经济效益显著,同时可以广泛应用于其他类似堵塞井。 展开更多
关键词 元坝气田 有机酸 地层沥青 连续油管
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Potential petroleum sources and exploration directions around the Manjar Sag in the Tarim Basin 被引量:10
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作者 JIN ZhiJun LIU QuanYou +1 位作者 YUN JinBiao Tenger 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第2期235-245,共11页
Since the discovery of the Tahe oilfield, it has been controversial on whether the main source rock is in the Cambrian or Middle-Upper Ordovician strata. In this paper, it is assumed that the crude oil from the Wells ... Since the discovery of the Tahe oilfield, it has been controversial on whether the main source rock is in the Cambrian or Middle-Upper Ordovician strata. In this paper, it is assumed that the crude oil from the Wells YM 2 and TD 2 was derived from the Middle-Upper Ordovician and Cambrian source rocks, respectively. We analyzed the biomarkers of the crude oil, asphalt-adsorbed hydrocarbon and saturated hydrocarbon in bitumen inclusions from the Lunnan and Hade areas in the North Uplift of the Tarim Basin. Results show that the ratios of tricyclic terpane C2~/C23 in the crude oil, asphalt-adsorbed hydrocarbon and saturated hydrocarbon in bitumen inclusions are less than 1.0, indicating that they might be from Upper Ordovician source rocks; the ratios of C28/(C27+C28+C29) steranes in the saturated hydrocarbon from reservoir bitumen and bitumen inclusions are higher than 25, suggesting that they might come from the Cambrian source rocks, however, the ratios of C28/(C27+C28+C29) steranes in oil from the North Uplift are less than 25, suggesting that they might be sourced from the Upper Ordovician source rocks. These findings demonstrate that the sources of crude oil in the Tarim Basin are complicated. The chemical composition and carbon isotopes of Ordovician reservoired oil in the Tarim Basin indicated that the crude oil in the North Uplift (including the Tahe oilfield) and Tazhong Depression was within mixture areas of crude oil from the Wells YM 2 and TD 2 as the end members of the Cambrian and Middle-Upper Ordovician sourced oils, respectively. This observation suggests that the crude oil in the Ordovician strata is a mixture of oils from the Cambrian and Ordovician source rocks, with increasing contribution from the Cambrian source rocks from the southern slope of the North Uplift to northern slope of the Central Uplift of the Tarim Basin. Considering the lithology and sedimentary facies data, the spatial distribution of the Cambrian, Middle-Lower Ordovician and Upper Ordovician source rocks was reconstructed on the basis of seismic reflection characteristics, and high-quality source rocks were revealed to be mainly located in the slope belt of the basin and were longitudinally developed over the maximum flooding surface during the progressive-regressive cycle. Affected by the transformation of the tectonic framework in the basin, the overlays of source rocks in different regions are different and the distribution of oil and gas was determined by the initial basin sedimentary structure and later reformation process. The northern slope of the Central Uplift-Shuntuo-Gucheng areas would be a recent important target for oil and gas exploration, since they have been near the slope area for a long time. 展开更多
关键词 Tarim Basin Marine source rock Oil-source correlation BIOMARKER
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