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首页> 外文期刊>International Journal of Earth Sciences >Geophysical well log-motifs, lithology, stratigraphical aspects and correlation of the Ordovician succession in the Swedish part of the Baltic Basin
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Geophysical well log-motifs, lithology, stratigraphical aspects and correlation of the Ordovician succession in the Swedish part of the Baltic Basin

机译:波罗的海盆地瑞典部分奥陶纪演替的地球物理测井曲线,岩性,地层学特征及相关性

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摘要

The geophysical characteristics of the carbonate-dominated Ordovician succession is described using wire-line logging data from exploration wells located within the Swedish part of the Baltic Basin, both offshore and from the island of Gotland. The petrophysical properties and log-motifs are compared and correlated with the lithology of cores from the Hamra-10, Skals-1 and Grotlingbo-1 wells on southern Gotland. The 80-125-m-thick Ordovician succession is divided into five log stratigraphic units O-a-O-e, which are correlated throughout the study area. The proposed log stratigraphy and wire-line log characteristics are evaluated and compared with the established Ordovician stratigraphy from the adjacent areas of oland, ostergotland and South Estonia. The newly established log stratigraphy is also linked to the existing seismic stratigraphic framework for the study area and exemplified with a selection of interpreted seismic type sections from Gotland and the south Baltic Sea. The presented characterization, division and correlation provide a basis for understanding the lateral and vertical variation of the petrophysical properties, which are essential in assessing the sealing capacity of the Ordovician succession, in conjunction with storage of CO2 in the underlying Cambrian sandstone reservoir.
机译:使用来自波罗的海盆地瑞典部分内的海上和哥得兰岛的勘探井的有线测井数据,描述了以碳酸盐为主的奥陶纪演替的地球物理特征。对岩石物性和对数基元进行了比较,并将其与哥得兰岛南部的Hamra-10,Skals-1和Grotlingbo-1井的岩心岩性相关联。 80-125米厚的奥陶纪演替过程分为五个对数地层单位O-a-O-e,它们在整个研究区域内都相关。评价了拟议的测井地层和钢丝测井特征,并将其与奥兰,奥斯特戈兰和爱沙尼亚南部相邻地区建立的奥陶纪地层进行了比较。新建立的测井地层也与研究区域的现有地震地层框架相联系,并举例说明了哥得兰岛和波罗的海南部的解释地震类型剖面。提出的特征,划分和相关性为理解岩石物性的横向和垂直变化提供了基础,这对于评估奥陶纪演替的封闭能力以及在下伏的寒武纪砂岩储层中存储二氧化碳是至关重要的。

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