马杜拉海峡gloigerina石灰岩气藏岩石物性分析与弹性测井相结合,优化开发井目标

Hendra Himawan, I. Sumantri, O. Pahlevi
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摘要

Madura Strait PSC位于东北爪哇盆地南部,以Globigerina灰岩上新世Mundu和Selorejo层序的生物气为主要目标。在油田开发初期,对储层岩石物性和弹性性质的了解和认识是必要的,也是非常重要的。岩石物理分析提供了粘土体积、孔隙度、渗透率、含水饱和度和矿物体积等属性,以区分储层和非储层。利用声波阻抗(AI)、剪切阻抗(SI)、速度比(Vp/Vs)、泊松比(σ)等弹性岩石特性识别粘土带、气带和非气带,并重点区分气带内储层岩石质量,作为有效的储层表征。该研究利用了11口井的岩心数据、四联体测井数据和8口井的剪切速度数据。Globigerina灰岩气藏具有良好至最佳的储层岩石质量,具有高孔隙度、高渗透率、低粘土体积、低含水饱和度等特点。研究结果表明,灰泥基质对储层岩石质量有显著影响。同时,高含气饱和度会降低压缩速度(Vp)值,从而影响弹性性能。最后,结合岩石物理结果和弹性性能的实施,可以帮助识别最好的储层岩石质量,其中包含开发井应该穿透的气体
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ntegration of Petrophysical Analysis and Elastic Log Properties as an Input to Optimize the Development Wells Target in Unique Globigerina Limestone Gas Reservoir in Madura Strait
The Madura Strait PSC is located in the southern part of North East Java Basin with biogenic gas from Globigerina limestone Pliocene Mundu and Selorejo sequence as main target. At early stage of field development,understanding and knowledge about petrophysical and elastic properties of reservoir rock quality is required and very important. The petrophysical analysis provide properties such as clay volume, porosity, permeability, water saturation and mineral volume to separate reservoir and non-reservoir zone. The elastic rock properties such as acoustic impedance (AI), shear impedance (SI), velocity ratio (Vp/Vs), and Poisson’s ratio (σ) were generated to identify clay zone, gas and non-gas also focused to distinguish reservoir rock quality inside gas zone as an effective reservoir characterization. This research is done by utilize core data, quad combo logs from eleven wells and shear velocity from eight wells. The purpose of this research is to optimize development well target in Globigerina limestone gas reservoir, which have good to best reservoir rock quality shown with high porosity and permeability,low clay volume and water saturation. Results from this research indicate that lime mud matrix have significant impact in the reservoir rock quality. Meanwhile, gas saturation can affect the elastic properties due to this high gas saturation can decrease compressional velocity (Vp) value. Finally, the integration of petrophysical result and combination of elastic properties implementation can help in distinguishing the best reservoir rock quality, which contains gas that should be penetrated by the development wells
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