IDENTIFIKASI RESERVOIR KARBONAT BERDASARKAN “PETROPHYSICAL ROCK TYPE”

H. Saputra
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Abstract

Abstract This paper focused on the identification reservoir use petrophysical rock typing approach with pore geometry and structure (PGS) method. The identification of the type and composition of rock types, can obtain comprehensive understanding of geological aspects such as diagenesis and reservoir properties. Porosity and permeability data of the 113 core plug, which 13 have mercury injection capillary pressure (MICP) data, 48 thin sections from 3 wells are used. Facies, facies association and diagenetic history analyses are performed to understand the influence of facies, depositional environments and diagenesis to the development of petrophysical rock types (PRT). Packstone with larger foram, red algae, mollusks, and corals dominate the wells that have thin section. Diagenesis occur from marine until burial stage. Secondary porosity caused by dissolution on vadose stage. Keyword: Pore geometry and structure
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卡西储层碳酸盐岩“岩石物理岩型”识别
摘要本文主要研究了利用孔隙几何与结构(PGS)方法的岩石物理岩石分型方法识别储层。识别岩石类型和组成类型,可以全面了解成岩作用和储层性质等地质方面的信息。113个岩心桥塞的孔隙度和渗透率数据,其中13个具有压汞毛细管压力(MICP)数据,使用了来自3口井的48个薄片。通过相、相组合和成岩历史分析,了解相、沉积环境和成岩作用对岩石物理岩石类型(PRT)发育的影响。有较大有孔虫、红藻、软体动物和珊瑚的砾石占据了薄截面的井。成岩作用发生于海相至埋藏阶段。气包阶段溶蚀引起的次生孔隙。关键词:孔隙几何与结构
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