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火山岩风化壳地层型油气藏评价预测方法研究——以新疆北部石炭系为例 被引量:35
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作者 邹才能 侯连华 +4 位作者 王京红 文百红 匡立春 朱如凯 梁世君 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2011年第2期388-400,共13页
针对火山岩风化壳地层型油气藏强非均质性,评价预测难度大,勘探成功率低等难题,本文采用重磁电剥层处理、沿层延拓信号增强反演方法有效预测区域火山岩分布;建立风化淋滤剥蚀后不同岩石组合的不完整火山机构和形态识别模式,利用相干体... 针对火山岩风化壳地层型油气藏强非均质性,评价预测难度大,勘探成功率低等难题,本文采用重磁电剥层处理、沿层延拓信号增强反演方法有效预测区域火山岩分布;建立风化淋滤剥蚀后不同岩石组合的不完整火山机构和形态识别模式,利用相干体和振幅分析等方法有效识别火山岩目标;在建立单次火山喷发岩石序列及储层分布模式基础上,开发了基于次生溶蚀孔隙和裂缝为主的波阻抗储层反演方法,有效预测了多期次火山喷发间隔风化淋滤形成的叠置有利储层分布;通过岩性、储层预测与振幅衰减属性、吸收系数差异预测结合,有效预测含油气性.从火山岩区域预测到含油气性预测逐步逼近的火山岩风化壳地层型油气藏评价预测方法,有效解决了火山岩风化壳地层型油气藏的评价顶测难题,指导发现了千亿方克拉美丽气田和亿吨级牛东油田,利用该方法预测出下一步重点勘探的7个有利区带. 展开更多
关键词 火山岩风化壳 地层型油气藏 评价预测方法 新疆北部石炭系
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Hydrocarbon accumulation mechanism and structure of largescale volcanic weathering crust of the Carboniferous in northern Xinjiang,China 被引量:10
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作者 ZOU CaiNeng HOU LianHua +6 位作者 TAO ShiZhen YUAN XuanJun ZHU RuKai JIA JinHua ZHANG XiangXiang LI FuHeng PANG ZhengLian 《Science China Earth Sciences》 SCIE EI CAS 2012年第2期221-235,共15页
The Upper Carboniferous in northern Xinjiang, China was formed in a post-collisional depression and collapsed structural setting. Within the Upper Carboniferous, volcanic rocks and source rocks alternate over a wide r... The Upper Carboniferous in northern Xinjiang, China was formed in a post-collisional depression and collapsed structural setting. Within the Upper Carboniferous, volcanic rocks and source rocks alternate over a wide region. At the end of the Carboniferous, these layers were uplifted by plate collisions and subsequently weathered and leached. Volcanic weathering and leaching led to the establishment of weathered crusts that can be divided into five layers. Corrosion and crumble zones in these layers form favorable reservoirs. Volcanic weathering crust formed in sub-aerially exposed paleogeomorphic areas; the five relatively continuous layers are generally preserved in paleogeomorphic lowland and slope regions, but the upper soil layer is usually absent in structurally higher parts of the rock record. The thickness of the weathered layer has a positive nonlinear ex- ponential relationship to the duration of weathering and leaching, and the dynamic equilibrium time of weathered crust is about 36.3 Ma. The thickest weathered layer (~450 m) is located in fracture zones. Weathered crusts are possible from a range of volcanic rocks with different lithologies, given sufficient time for weathering and leaching. The combination of volcanic weathered crust and source rocks results in three types of hydrocarbon accumulation models: (1) sequences of volcanic weathered crust interbedded with source rocks, (2) a quasi-layered weathered volcanic core located above source rocks, and (3) volcanic rocks associated with pectinate unconformities adjacent to source rocks. Each of these three types has the potential to form a giant stratigraphic reservoir of volcanic weathered crust. This knowledge has changed the traditional exploration model of searching for favorable lithologic and lithofacies zones in volcanic rocks, and has changed the viewpoint that the Carboniferous does not have the genetic potential to be the basement of the basin in northern Xinjiang. The concepts developed here are of great scientific significance and application for focusing oil and gas exploration on volcanic weathered crust. As such, the Paleozoic volcanic weathered crust in the midwestern part of China may possibly contain large-scale stratigraphic reservoirs and thus could be a new oil and gas exploration target in the future. 展开更多
关键词 Carboniferous in northern Xinjiang volcanic weathering crust stratigraphic reservoir accumulation mechanism and model
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