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首页> 外文期刊>Marine and Petroleum Geology >Reservoir characterization and basement estimates in the Papuan Fold belt (Papua New Guinea-PNG), from reanalysis of the PNG MT data set
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Reservoir characterization and basement estimates in the Papuan Fold belt (Papua New Guinea-PNG), from reanalysis of the PNG MT data set

机译:储层表征和地下室估计在Papuan Fold Belt(巴布亚新几内亚PNG)中,来自PNG MT数据集的再分析

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The PNG MT data set covering a section of the Papuan Fold Belt (PFB) in Papua New Guinea (PNG), which is known for its extensive hydrocarbon resources, re-analyzed using advanced dimensionality technique and inversion algorithms. Although the phase tensor analysis retrieved a dominant 2D conductivity direction matching the regional tectonic trend, a mild 3D behavior with some local strong 3D effect is apparent. The 3D and 2D inversions carried out yielded resistivity features related to the broad stratigraphic column of the area, but with variations in the depth of occurrence and thicknesses of resistivity structures between the inversion models. The preferred 3D model shows an about 1 km thick resistive Miocene Darai limestone cover, thickening towards northeast of the profile, and supports a thick-skinned thrust model. The 3D resistivity section shows an additional differentiation within the underlying Mesozoic column, a highly conductive (similar to 1 Omega m) and moderately conductive (10-40 Omega m) layer, sandwiched between the Darai formation and crystalline basement. The upper highly conductive layer can be related to the Cretaceous Ieru shale formation, which acts as the regional cap rock in the PFB, and the below moderately conductive layer represents the stack of Mesozoic strata that possibly comprise of the Neocomian Toro sandstone reservoir rocks and underlying Jurassic source rock formations. Nevertheless, the resolution tests do not fully support the demarcation between the Ieru formation and underlying Mesozoics containing the reservoir and source formations, and demand additional constraints for confirmation.
机译:PNG MT数据集覆盖巴布亚新几内亚(PNG)中的Papuan Fold皮带(PFB)部分,这是通过高级维度技术和反演算法进行了广泛的碳氢化合物资源而闻名的。虽然相位张量分析检索了匹配区域构造趋势的显性2D电导率方向,但具有一些局部强烈3D效果的温和3D行为是显而易见的。执行与该区域的宽地层柱相关的3D和2D逆转,但是在反转模型之间的电阻率结构的发生深度和厚度的变化。优选的3D模型显示了大约1公里的厚电阻式达莱石灰岩盖,朝向概况的东北增厚,并支持厚皮的推力模型。 3D电阻率部分显示了下面的中生代柱内的附加分化,高导电(类似于1 omega M)和中等导电(10-40ωM)层,夹在Darai形成和结晶地下室之间。高导电层可以与白垩纪Ieru页岩形成有关,其用作PFB中的区域帽岩,下面的中等导电层代表了中生代的堆叠,可能包括Neocomian Toro砂岩储层岩石和底层侏罗纪源岩层。尽管如此,分辨率测试并未完全支持IERU的形成和底层内生物之间的划分,其中包含储层和源地层,并要求额外的确认限制。

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