克拉玛依油田七中、东区克下组砾岩储层孔隙结构特征及影响因素
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张代燕,女,工程师,博士,从事油气田开发地质综合研究。联系电话:13689984488,E-mail:zhangdaiyan1028@163.com。

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Pore structure and influence factors of conglomerate reservoir-case study of lower Karamay formation in mid and east of 7th block, Karamay oilfield
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    利用铸体薄片、扫描电镜、岩石物性和压汞资料,对克拉玛依油田七中、东区克下组砾岩储层孔隙结构及影响因素进行了详细分析。研究区克下组属于中孔、中渗透储层,以粒间溶孔为主,次为原生粒间孔隙,优选出孔隙度、渗透率、均值、偏态、饱和度中值半径、最大孔喉半径、平均毛管半径、视孔喉体积比和非饱和汞孔隙体积百分数共9个能反映孔隙结构的参数,采用K-Means聚类分析方法将研究区克下组砾岩储层分为4类(Ⅰ—Ⅳ),分别代表储层孔隙结构好、较好、较差、差;储层的微观孔隙分布主要有3种类型,孔隙直径分布分别呈单模态、双模态和复模态。影响孔隙结构的因素有构造作用、沉积作用和成岩作用。构造格局决定着储层的沉积格局,进而控制了储层的孔隙结构。沉积作用的影响主要表现在岩性对储层物性的控制。压实作用造成孔隙度降低;胶结作用使孔隙结构和物性变差;溶蚀作用产生的次生孔隙使储层孔隙结构和物性得以改善;重结晶作用产生的新生自形晶矿物全充填或半充填于粒间孔隙和喉道中,使孔隙减少、喉道变窄,孔隙连通性变差;压溶作用可产生压溶缝、缝合线或溶孔,扩大了孔隙空间。

    Abstract:

    The conglomerate reservoir pore structure of the lower Karamay formation in mid and east of 7th block, Karamay oilfield, is fully studied by means of casting thin sections, SEM and petrophysical and mercury injection data. There are three main types of microscopic pore distribution in the conglomerate reservoir of the lower Karamay formation in the study area, the pore diameter distribution is monomodal, bimodal and complex modal. According to nine parameters screened out (porosity, permeability, mean, skewness, the sat?uration median radius, the maximum pore throat radius, the average pore throat radius, as the pore volume ratio and the percentage of non-saturated mercury pore volume), using K-Means clusterting analysis method, the conglomerate reservoir is divided into four major categories of class I, II, III and IV, which are on behalf of the reservoir good, moderate, poor and very poor, then, each type of reservoir pore structure characteristics is summarized. The analysis of the main factors, affecting the pore structure, shows that the factors affecting the pore structure are tectonic, sedimentation and diagenesis. The influence of deposition on the pore structure is mainly characterized by the lithologic control on the physical properties of the reservoir, and for diagenesis on pore structure, mainly by compaction resulting in lower average porosity; and the cementation deteriorates the pore structure and physical properties; meanwhile, the secondary porosity generated by dissolution improves the reservoir pore structure and physical properties; however, the authigenic euhedral crystal mineral by recrystallization filled or partially filled in the intergranular porosity and throat has reduced the porosity by narrower throat and poorer pore connectivity; the pressure solution can generate pressure solution seam, suture, or dissolved pores so as to expand the pore space. The research results provide the basis for the formulation of oil field development decision-making and stimulation.

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张代燕,彭永灿,肖芳伟,史燕玲,姚敏.克拉玛依油田七中、东区克下组砾岩储层孔隙结构特征及影响因素[J].油气地质与采收率,2013,20(6):29~34

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  • 在线发布日期: 2015-09-02