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Pore-throat structure characteristics and its impact on the porosity and permeability relationship of Carboniferous carbonate reservoirs in eastern edge of Pre-Caspian Basin

机译:孔隙结构特征及其对石炭盆地东边缘石油碳酸盐储层孔隙率和渗透关系的影响

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Carboniferous carbonate reservoirs at the eastern edge of the Pre-Caspian Basin have undergone complex sedimentation, diagenesis and tectonism processes, and developed various reservoir space types of pores, cavities and fractures with complicated combination patterns which create intricate pore-throats structure. The complex pore-throat structure leads to the complex porosity-permeability relationship, bringing great challenges for classification and evaluation of reservoirs and efficient development. Based on the comprehensive analysis on cores, thin sections, SEM, mercury intrusion, routine core analysis and various tests, this paper systematically investigated the features and main controlling factors of pore-throats structure and its impact on the porosity-permeability relationship of the four reservoir types which were pore-cavity-fracture, pore-cavity, pore-fracture and pore, and three progresses are made. (1) A set of classification and descriptive approach for pore-throat structure of Carboniferous carbonate reservoirs applied to the eastern edge of the Pre-Caspian Basin was established. Four types of pore-throat structures were developed which were wide multimodal mode, wide bimodal mode, centralized unimodal mode and asymmetry bimodal mode, respectively. The discriminant index of pore-throat structure was proposed, realizing the quantitative characterization of pore-throat structure types. (2) The microscopic heterogeneity of pore reservoir was the strongest and four types of pore-throat structures were all developed. The pore-fracture and pore-cavity-fracture reservoirs took the second place, and the microscopic heterogeneity of pore-cavity reservoir was the weakest. It was revealed that the main controlling factor of pore-throat structure was the combination patterns of reservoir space types formed by sedimentation, diagenesis and tectonism. (3) It was revealed that the development of various pore-throat structure types was the important factor affecting poroperm relationship of reservoirs. The calculation accuracy of permeability of reservoirs can be improved remarkably by subdividing the pore-throat structure types. This study deepens the understanding of pore-throat structure of complicated carbonate reservoirs, and is conducive to classification and evaluation, establishment of precise porosity-permeability relationship and highly efficient development of carbonate reservoirs.
机译:在Caspian盆地的东边缘的石炭碳酸盐储存器经历了复杂的沉降,成岩作用和构造过程,并开发了各种储层空间类型的毛孔,空腔和骨折,具有复杂的组合模式,它产生复杂的孔隙结构。复杂的孔隙结构导致复杂的孔隙率关系,对水库和高效发展的分类和评估带来了巨大挑战。基于核心综合分析,薄段,SEM,汞侵入,常规核心分析和各种测试,本文系统地研究了孔隙结构的特点和主要控制因素及其对四个孔隙磁性关系的影响储层类型是孔隙骨折,孔隙腔,孔隙骨折和孔隙,以及三个进展。 (1)建立了一套施加到海洋前盆地东部边缘的石炭系碳酸盐储层的孔隙结构的一套分类和描述性方法。开发了四种类型的孔隙结构,其分别具有宽的多峰模式,宽双峰模式,集中式单峰模式和不对称双模模式。提出了孔隙咽部结构的判别指标,实现了孔隙结构类型的定量表征。 (2)孔隙储层的显微异质性是最强,四种类型的孔隙结构都是开发的。孔隙骨折和孔隙骨折储层储存器第二位,孔腔储层的显微纯度是最弱的。据透露,孔隙结构的主要控制因子是通过沉降,成岩作用和构造形式形成的储层空间类型的组合模式。 (3)据透露,各种孔隙结构类型的发展是影响储层茯苓关系的重要因素。通过细分孔隙结构类型,可以显着提高储层的渗透性的计算精度。本研究深化了对复杂碳酸盐储层的毛孔结构的理解,有利于分类和评估,建立精确的孔隙率渗透性关系和碳酸盐储层的高效发展。

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