首页> 外文期刊>Geologia Croatica: a journal of the Institute of Geology Zagreb and Croatian Geological Society >Qualitative–Quantitative Analyses of the Influence of Depth and Lithological Composition on Lower Pontian Sandstone Porosity in the Central Part of Bjelovar Sag (Croatia)
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Qualitative–Quantitative Analyses of the Influence of Depth and Lithological Composition on Lower Pontian Sandstone Porosity in the Central Part of Bjelovar Sag (Croatia)

机译:Bjelovar凹陷(克罗地亚)中部深度和岩性组成对下笨珍砂岩孔隙度的影响的定性-定量分析

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Results of several tests (porosity–depth graphic relation, t-test, F-test, Pearson’s R), were used to analyse and interpret the regularity in porosity values of Lower Pontian oil-bearing sandstones from the central part of Bjelovar sag. Data came from 7 cored intervals within 5 wells in the Pepelana member and from 6 cored intervals (in 4 wells) in the Poljana member. The expected porosity decrease with increasing depth was checked against lithological variations. Sandstones are mostly fine-grained lithoarenites. The detritus is composed of quartz, various micas, carbonate fragments and feldspars. Across the study area, the depth range of the sandstones varies from 430 m (top of the Pepelana member near Sandrovac) to 2046 m (base of the Poljana member near Velika Ciglena). Cores included in the analyses vary between 2.75 to 15.5 m in length. Mean porosity and relative depth data were collected for two groups: Group 1 comprised wells Pav–1, Pav–2, Rov–1, Sa–5, Sa–35, and Group 2 included well VC–1. These groups were subdivided for analysis into two (litho)stratigraphic units (Pepelana and Poljana ss.). Porosity variation within each group is explained with reference to the silt or clay fraction. Differences between the porosities of the two groups (~10% lower absolute porosity near Velika Ciglena) is the result of compaction and other processes. Interval of 400 m thickness in particular sandstone member is set as minimum value for observing influence of compaction. Such statement is based on sandstone’s tops and bottoms comparison as well as graphical presentation of relation core porosity–relative depth interval. The analysis was improved by statistical calculation of Pearson’s R, t-test and F-test, which more precisely described the relationship between porosity and depth. Using these statistical tests and regression equitation, the depth difference is calculated as 621 m in the Pepelana and 667 m in the Poljana sandstones, as the limits when the influence of compaction in the porosity–depth relationship could be noticed. Compaction was observed, in the study area, when data from Velika Ciglena are compared to data from the other wells.
机译:几个测试的结果(孔隙度与深度的图形关系,t检验,F检验,Pearson的R)被用来分析和解释Bjelovar凹陷中部下蓬田含油砂岩孔隙度的规律性。数据来自Pepelana成员中5口井中的7个核心区间和Poljana成员中6口岩心间隔(位于4口井中)。针对岩性变化检查了预期的孔隙度随深度增加而降低的情况。砂岩主要是细粒的锂橄榄岩。碎屑由石英,各种云母,碳酸盐碎片和长石组成。在整个研究区域中,砂岩的深度范围从430 m(靠近Sandrovac的Pepelana成员的顶部)到2046 m(靠近Velika Ciglena的Poljana成员的底部)。分析中包括的岩心长度在2.75至15.5 m之间。收集了两组的平均孔隙度和相对深度数据:第1组包含Pav-1,Pav-2,Rov-1,Sa-5,Sa-35井,第2组包含VC-1井。将这些组细分为两个(岩性)地层单元(Pepelana和Poljana ss)进行分析。每组中的孔隙度变化都参照粉砂或粘土含量进行了解释。两组孔隙率之间的差异(Velika Ciglena附近的绝对孔隙度低约10%)是压实和其他过程的结果。为了观察压实的影响,特别是砂岩构件的厚度间隔为400m。这样的陈述是基于砂岩的顶部和底部比较以及关系岩心孔隙度相对深度间隔的图形表示。通过对Pearson的R,t检验和F检验进行统计计算,可以对分析进行改进,该计算可以更精确地描述孔隙率和深度之间的关系。使用这些统计检验和回归方程,计算出的深度差在Pepelana中为621 m,在Poljana砂岩中为667 m。在研究区域中,将Velika Ciglena的数据与其他井的数据进行了比较,观察到压实现象。

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