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八面河地区第三系走滑断裂特征及对油气成藏的影响
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作者 张紫光 《江汉石油职工大学学报》 2017年第3期22-24,28,共4页
通过对高精度三维连片地震资料精细解释,运用断距分析、断层生长指数等方法,探讨了八面河走滑断裂的几何特征、活动期次及其成因机制。该区走滑断裂具有明显的分段差异,南段表现为明显的压扭作用呈"S"形、中段表现为多段式倒... 通过对高精度三维连片地震资料精细解释,运用断距分析、断层生长指数等方法,探讨了八面河走滑断裂的几何特征、活动期次及其成因机制。该区走滑断裂具有明显的分段差异,南段表现为明显的压扭作用呈"S"形、中段表现为多段式倒扫帚状、北段呈明显的"似花状"构造,纵向上具有明显的分期性,可划分为雏形期、持续活动期、走滑解体期、定型期等4个期次。进行油气生排烃与成藏综合分析后认为:燕山晚期的北东向断层不仅控制前第三系沉积的基底形态与潜山分布,也控制了八面河断层的基本形态;东营组沉积末期的走滑解体期是八面河各类构造型、地层型圈闭形成与油气二次成藏期匹配较好时期;馆陶组-明化镇组沉积时期既是八面河断裂带的定型期,又是油气输导和三次成藏的最有利时期,也是成藏主期。 展开更多
关键词 八面河 走滑断裂特征 断裂 雏形期
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LD油田断裂特征及其对油气成藏的影响
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作者 李强 黄晓波 +2 位作者 彭靖淞 郭龙龙 韩建斌 《科学技术与工程》 北大核心 2015年第26期136-139,151,共5页
LD油田油气平面分布区域和垂向分布层位差异明显,平面上,油气富集程度南区大于北区;垂向上,东二下段大于馆陶组和东三段。研究区勘探实践证实断裂不仅严格控制着油气组合的空间展布和圈闭形成,而且对油气聚集活动以及油藏的形成分布有... LD油田油气平面分布区域和垂向分布层位差异明显,平面上,油气富集程度南区大于北区;垂向上,东二下段大于馆陶组和东三段。研究区勘探实践证实断裂不仅严格控制着油气组合的空间展布和圈闭形成,而且对油气聚集活动以及油藏的形成分布有着重要影响。为此,从断裂特征入手对LD油田油气差异富集规律进行研究,主要分析了油源断裂密度、断层活动速率和边界断裂产状三个主控因素。研究结果表明:油源断裂分布特征和晚期活动断裂的分布位置控制了平面上南北区油气差异富集;陡坡带边界断裂的坡坪式形态决定了不同层位有效圈闭的大小;边界断裂的坡坪式形态和断层活动速率最终控制了垂向上不同层位油气富集程度。 展开更多
关键词 走滑断裂特征 油气差异富集 油源断裂 断裂活动性 边界断裂产状
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Activity of the Lenglongling fault system and seismotectonics of the 2016 MS6.4 Menyuan earthquake 被引量:20
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作者 GUO Peng HAN ZhuJun +3 位作者 AN YanFen JIANG WenLiang MAO ZeBin FENG Wei 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第5期929-942,共14页
The MS6.4 Menyuan earthquake occurred on the northern side of the Lenglongling fault(LLLF) in the mid-western of the Qilian-Haiyuan fault zone on January 21, 2016. The earthquake epicenter was distant from the Minle-D... The MS6.4 Menyuan earthquake occurred on the northern side of the Lenglongling fault(LLLF) in the mid-western of the Qilian-Haiyuan fault zone on January 21, 2016. The earthquake epicenter was distant from the Minle-Damaying and Huangcheng-Shuangta faults, eastern of the Northern Qilian Shan fault zone. A near northwest-striking rupture plane intersects the two faults at a certain angle. The focal mechanism solution shows that this was a thrust-type earthquake, slightly different from the strike-slip movement with a thrust component of the LLLF. Field geological mapping, tectonic geomorphology analysis, trench excavation and 14 C dating reveal that(1) the LLLF has been obviously active since the Holocene, and may behave with characteristic slip behavior and produce M_W7.3–7.5 earthquakes;(2) the LLLF appears as a flower structure in terms of structure style, and dips NNE at a steep angle; and(3) the most recent earthquake event occurred after 1815–1065 a BP. An associated fault, the Northern Lenglongling fault(NLLLF), is located at the northwestern end of the LLLF. Consequently, the NLLLF was continually subject to tectonic pushing effects from the left-lateral shear at the end of the LLLF, and, accordingly, it bent and rotated outward tectonically.Subsequently, the fault deviated from the dominant rupture azimuth and activity weakened. In the late Quaternary, it behaved as a thrust fault with no obvious deformation at the surface. This is indicated by the arc shape, with a micro-protrusion northeastward,and no geologic or geomorphic signs of surface rupturing since the late Quaternary. However, such faults could still rupture at depth, producing moderate-strong earthquakes. The geometric and kinematic properties of the NLLLF are in good agreement with the occurrence and kinematic properties of nodal plane 2, and with the distribution characteristics of the aftershocks and seismic intensity. Therefore, the NLLLF is a more suitable seismogenic structure for the MS 6.4 Menyuan earthquake. In addition, the thrust movement of the NLLLF accommodates subsequent movement of the LLLF. During the historical evolution of the NLLLF,the LLLF and the NLLLF have affected the local topography through tectonic uplift. 展开更多
关键词 MS6 4 Mengyuan earthquake Seismogenic structure Tectonic environment Lenglongling fault Northern Lenglongling fault
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