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首页> 外文期刊>Journal of Petroleum Geology >POROSITY AND PERMEABILITY VARIATIONS IN A TIGHT GAS SANDSTONE RESERVOIR ANALOGUE, WESTPHALIAN D, LOWER SAXONY BASIN, NW GERMANY: INFLUENCE OF DEPOSITIONAL SETTING AND DIAGENESIS
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POROSITY AND PERMEABILITY VARIATIONS IN A TIGHT GAS SANDSTONE RESERVOIR ANALOGUE, WESTPHALIAN D, LOWER SAXONY BASIN, NW GERMANY: INFLUENCE OF DEPOSITIONAL SETTING AND DIAGENESIS

机译:孔隙率和渗透性变化在德国NW德国的威斯司法砂岩储层模拟,威斯特普莱利纳D,下萨克森河盆地:沉积凝固和成岩作用的影响

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>Understanding the spatial variability of reservoir properties in tight gas sandstones can significantly reduce uncertainties in reservoir characterization. This study focuses on two outcrops of Upper Carboniferous (Westphalian D) fluvial sandstones in the southern part of the Lower Saxony Basin, NW Germany, which are analogues for tight, gas‐producing reservoir rocks at fields in the north of the basin. Large‐scale differences in reservoir quality occur between the two outcrops which are separated by a distance of approximately 15 km and by 600 m of stratigraphy. Smaller‐scale heterogeneities in the form of channel geometries occur within individual fluvial cycles, as evidenced in a 30 m (high) by 150 m (long) porosity‐permeability profile at one of the outcrops studied. >In the Woitzel quarry, lower Westphalian D deposits consist of fining‐upwards cycles of channel and bar sandstones with intercalated floodplain sediments and coal seams. In abandoned quarries at the Hüggel location, upper Westphalian D strata are composed of grey and red coloured sandstones which suggest deposition in a fluvial – alluvial plain environment under increasingly arid conditions. >Reservoir quality is higher in the upper Westphalian D sandstones at Hüggel (permeability: up to 1 mD; mean porosity: 19%) than in the lower Westphalian D sandstones at Woitzel (permeability: 0.1 mD; mean porosity: 15%). Due to the high degree of compaction of the upper and lower Westphalian D deposits (intergranular volumes of 21.9% and 19.4% respectively) and the high proportions of pseudomatrix, porosity in these sandstones is mainly secondary with up to 80% microporosity. Reservoir quality is in general higher in the upper Westphalian D sandstones where kaolinite is present. In contrast, intense illitization has degraded the reservoir quality of the lower Westphalian D sandstones. >A positive correlation between permeability and grain size is exhibited by the kaolinite‐bearing upper Westphalian D sandstones. No such correlation is evident in the illite‐bearing lower Westphalian D sandstones, unless samples with permeabilities of 0.01 mD are excluded from the correlation. However, such a low permeability cut‐off is not related to sorting, grain size or authigenic quartz cementation. >At a small scale, permeability varies laterally by two orders of magnitude from 0.001 mD to 0.1 mD in a single, approximately 3 m thick tight sandstone bed over a distance of 150 m. Repeated, centimetre‐scaled fining‐upwards grading and bed‐internal erosion contribute to lateral variations in reservoir flow characteristics. >Integrated studies of the depositional environment, diagenesis and sedimentary geometries of the deposited units are a key to the understanding of heterogeneities in tight fluvial sandstones and thus to the successful development of Upper Carboniferous reservoirs in the Lower Saxony Basin and elsewhere.
机译: >了解粘液砂岩中储层性质的空间变化可以显着降低储层表征中的不确定性。本研究重点介绍,在德国下撒克森盆地南部的上部石炭系(Westphalian d)氟砂岩的两个露头,这是盆地北部田野的紧密,天然气储层岩石的类似物。两个露头之间发生储层质量的大规模差异,其距离约15公里和600米的地层分离。沟道几何形式的较小规模异质性发生在单独的氟循环中,如在研究的一个露头的露头的30μm(高)渗透性曲线上所示。 > Woitzel采石场,较低的Westphalian D沉积物包括通道和砂岩的翅膀向上循环,具有插入泛洪叶沉积物和煤层。在Hüggel地点的废弃采石场中,上威斯特·威斯特·斯特拉塔乃于灰色和红色的砂岩组成,表明在越来越干旱的情况下在河流冲积平原环境中沉积。 >储层质量在威斯特邦D在Hüggel的砂岩(渗透率:最长1 md;平均孔隙度:19%)比Woitzel的下威斯特普利尼·D砂岩(渗透率:& 0.1 md;平均孔隙率:15%)。由于上下威斯特普利昂D沉积物的高度压实(分别为21.9%和19.4%的晶间体积)和高比例的假单胞菌,这些砂岩中的孔隙率主要是高达80%的微孔。储层质量一般在威斯特·威士忌D砂岩中较高,其中具有高岭石。相比之下,强烈的诽谤已经降低了下威斯特普利昂D砂岩的储层质量。 >通过高岭石上威斯卫星砂岩表现出渗透率和晶粒尺寸之间的正相关性。除非具有渗透率的样品,否则在载体下威斯特普利昂D砂岩中没有明显不明显相关的相关性。然而,这种低渗透性截止截止与分选,晶粒尺寸或基因石英胶粘无关。 >以小规模,渗透率从0.001 md到0.1 md的两个数量级横向不同单,约3米厚的砂岩床,距离150米。重复,厘米缩放的翅膀向上分级和床内侵蚀有助于储层流动特性的横向变化。> >沉积环境的综合研究,沉积的单位的沉积环境,成岩作用和沉积几何形状是一个关键理解毛氟砂岩中的异质性,从而实现下萨克森盆地和其他地方的上层石炭系储层的成功发展。

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