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首页> 外文期刊>Journal of nanoscience and nanotechnology >Characteristics of the Micro-Nanopore System in a Pelitic Dolomite Reservoir: A Case Study of the Lower Cretaceous Xiagou Formation in the Qingxi Depression Based on Nuclear Magnetic Resonance Experiments
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Characteristics of the Micro-Nanopore System in a Pelitic Dolomite Reservoir: A Case Study of the Lower Cretaceous Xiagou Formation in the Qingxi Depression Based on Nuclear Magnetic Resonance Experiments

机译:基于核磁共振实验的微纳米岩储层微纳米孔系统的特点:基于核磁共振实验的青锌坳陷较低

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摘要

The Lower Cretaceous Xiagou Formation is an important tight oil reservoir in the Qingxi Depression of the Jiuxi Basin. The micro-nanopore system within the reservoir requires a comprehensive analysis to improve the production of tight oil there. Nuclear magnetic resonance (NMR) experimentshave been widely used for the petrophysical characterization of sandstones and carbonates. In the present study, the NMR experiment was applied to obtain the characteristics of the micro-nanopore system and permeability in the Lower Cretaceous Xiagou pelitic dolomite reservoir. According tothe distribution shape of the transversal relaxation time (T2) obtained under the 100% water-saturated condition (Sw), the samples are divided into four groups: (i) group I, two obvious peaks (P1 and P2); (ii) group II, an obvious high peak of P1 at 0.1?1.0ms and a relatively low peak of P2; (iii) group III, an obvious high peak of P2 and a relatively low peak of P1; and (iv) group IV, three peaks. In general, the distribution shape of T2 under the initial condition (Sini) is unimodal, with all its peaks lowerthan those under the Sw condition. The NMR T2 spectrum reflects the distribution of the rock pore radius. Most of the pore radius distributions are bimodal, and the main pore radius ranges from 10 nm to 70 nm. Three patterns can be identified and determinedbased on the distribution of the pore radius: I—unimodal distribution, II—bimodal distribution and III—trimodal distribution. The results indicate that the porosity in the Xiagou reservoir ranges from 1.17% to 6.89%, with an average of 3.33%. The permeability ranges from0.03×10?3 μm2 to 22.56×10?3 μm2, with an average of 2.95×10?3 μm2.
机译:下白垩统下沟组是酒西盆地青西坳陷重要的致密油藏。储层内的微纳孔系统需要进行全面分析,以提高致密油的产量。核磁共振(NMR)实验已广泛用于砂岩和碳酸盐岩的岩石物理表征。利用核磁共振实验研究了下白垩统下沟泥质白云岩储层的微纳孔隙系统和渗透率特征。根据在100%水饱和条件下获得的横向弛豫时间(T2)的分布形状,将样品分为四组:(i)第一组,两个明显的峰(P1和P2);(ii)第二组,P1在0.1处出现明显的峰值?1.0ms,P2峰值相对较低;(iii)第iii组,P2峰值明显较高,P1峰值相对较低;第四组,三个峰值。一般来说,T2在初始条件(Sini)下的分布形状是单峰的,其所有峰值都低于Sw条件下的峰值。核磁共振T2谱反映了岩石孔隙半径的分布。大多数孔半径分布为双峰分布,主孔半径范围为10 nm至70 nm。根据孔隙半径的分布,可以识别和确定三种模式:I-单峰分布、II-双峰分布和III-三峰分布。结果表明,下沟储层孔隙度在1.17%~6.89%之间,平均为3.33%。渗透率范围为0。03×10?3μm2到22.56×10?3μm2,平均2.95×10?3μm2。

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