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The Application of Well Logging and Seismic Modeling to Assess the Degree of Gas Saturation in Miocene Strata (Carpathian Foredeep, Poland)

机译:测井和地震模拟在中新世地层天然气饱和度评估中的应用(喀尔巴阡Foredeep,波兰)

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摘要

The presence of natural gas in the pore space of reservoir rocks results in a significant decrease in P-wave velocity. Even low gas saturation can generate seismic anomalies (DHI) and false image of gas accumulation of economic importance. This article presents an attempt to evaluate gas saturation from 2D seismic section in the Miocene sandstone strata in the south-eastern part of the Carpathian Foredeep. The ESTYMACJA program and the Biot–Gassmann model were used to study the dependence between elastic parameters and saturating fluids (water and gas) recorded in wells. Series of calculations was carried out using a method of fluid substitution for various gas saturation. The applicability of seismic data for evaluating gas saturation of reservoir beds was assessed with the use of 1D modelling (synthetic seismograms) and 2D modelling (theoretical seismic section) calculated for different gas saturation. The proposed methodology can be used to identify low and high gas-saturated zones and contour the reservoir.
机译:储层岩石孔隙中天然气的存在导致纵波速度显着下降。甚至低的气体饱和度也会产生地震异常(DHI)和对天然气具有重要经济意义的错误图像。本文提出了在喀尔巴阡山脉Foredeep东南部中新世砂岩层的二维地震剖面中评估天然气饱和度的尝试。 ESTYMACJA程序和Biot–Gassmann模型用于研究井中记录的弹性参数与饱和流体(水和天然气)之间的依赖性。使用各种气体饱和度的流体替代方法进行了一系列计算。地震数据在评估储层气饱和度方面的适用性通过使用针对不同气饱和度计算的一维建模(合成地震图)和二维建模(理论地震剖面)进行了评估。所提出的方法可用于识别低和高气体饱和区并勾勒出储层的轮廓。

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