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渤海湾盆地南堡凹陷断层对油气运聚的控制作用   总被引:4,自引:1,他引:3  
在对南堡凹陷断层类型划分的基础上,利用地质统计法和地化分析等技术手段,从宏观到微观多个方面阐述了南堡凹陷断层对油气运聚的控制作用。根据断层的发育历史,将南堡凹陷断层划分为3类:长期活动型(Ⅰ类)、早期活动型(Ⅱ类)和晚期活动型(Ⅲ类)。其中Ⅰ类断层大多沟通油源,是油气纵向运移的主要通道,由于其多期活动,形成了南堡凹陷多套含油层系纵向上相互叠置的局面。断层活动的时期和强度控制油气纵向上的分配,而且油气在平面上主要分布在油源断层附近的断块圈闭中。断层封闭性在时间上具有明显的差异性,在油气运聚过程中扮演输导和封堵双重角色。反向遮挡断层圈闭无论在油气藏数量还是在烃柱高度方面均明显好于顺向断层遮挡圈闭,是南堡凹陷油气勘探的有利目标。断层遮挡圈闭的储量规模受断层封闭性影响,准确评价遮挡断层的封闭能力对于提高钻探成功率具有重要意义。  相似文献   
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The faults that developed in the Liaoxi Depression can be classified into three types according to their extent and connectivity with the source and reservoir rocks (i.e. type I faults, type II faults and type III faults). These faults played different roles in controlling the basin geomorphology; the formation and evolution of the source rocks, reservoir rocks, cap rocks and traps; and the migration and accumulation of hydrocarbons in the Liaoxi Depression. Extending from the basement to the Neogene strata, type I faults, which are the largest in the basin, mainly controlled the development and basin-scale geomorphology; type II faults mainly controlled the sub-tectonic zones; and type III faults mainly controlled the formation and evolution of the traps. The movements of type I and type II faults during the hydrocarbon expulsion period were closely related to oil and gas migration. The rates of fault activity varied among the different sags of the Liaoxi Depression. Type I faults in both the northern and southern sags appear to have moved considerably during the hydrocarbon generation and expulsion stages, which strongly promoted hydrocarbon migration, whereas weakly active type I faults in the central sag made limited contributions to hydrocarbon migration. The sealing behaviour of the faults controlled the hydrocarbon migration directions and locations, and the good lateral sealing ability of the type I faults in the northern and southern sags confined the accumulation of hydrocarbons within the sags independently. However, the type I faults in the central sag partially opened laterally, which increased the likelihood of hydrocarbon migration from the sag centre to the uplift and reduced the likelihood of hydrocarbon accumulation within the sag centre. Therefore, the oil- and gas-enrichment patterns in the Liaoxi Depression are closely related to the characteristics of the faults, with traps near types I and II faults showing an increased likelihood of oil- and gas-field formation, as observed with the JZ9-3, LD4-2 and LD5-2 wells, and traps located in the sags remote from types I and II faults showing a reduced likelihood of oil and gas accumulation.  相似文献   
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Abstract: A fault is not simply a plane, but a zone consisting of a series of broken planes or lower faults. The greater the scale of faults, the wider and more complex the fault zone is. Fault-sealing properties are influenced by the fault zone itself, whose fault displacement, depth, net-to-gross-ratio of mudstone, fault plane angle, and fault mechanical properties play important controlling roles. The sealing of hydrocarbon by the fault zone depends on whether the fault zone can form a continuous sealing zone and if the pore throats connecting those fault zones are small enough. The concept of fault zone-sealing potential is proposed here, and a quantitative formula is established by using a great amount of practical statistical data as well as the fuzzy comprehensive evaluation method, which is a comprehensive characterization parameter to judge whether or not fault zones could seal oil hydrocarbon. The greater the value of the fault zone-sealing potential, the better sealed the fault is. For example, with increasing depth, the sealing degree of the Xin 68 Fault in the Dongxin 1 oilfield changes greatly, reflecting the complexity of fault-sealing properties.  相似文献   
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