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首页> 外文期刊>Arabian journal of geosciences >Integrated interpretation with Gassmann fluid substitution for optimum field development of Sanghar area, Pakistan: a case study
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Integrated interpretation with Gassmann fluid substitution for optimum field development of Sanghar area, Pakistan: a case study

机译:结合Gassmann流体替代技术进行解释,以优化巴基斯坦Sanghar地区的油田开发:一个案例研究

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摘要

The optimum field development of area under exploration for hydrocarbons requires an integrated analysis of seismic and well log data. Fluid substitution is a process which provides a tool for fluid identification and quantification in a reservoir during the development phase. In the present study, an integrated approach of seismic, petrophysics, and Gassmann fluid substitution has been applied on Goru sands of Sanghar area, Pakistan, for optimum field development. The results of seismic indicate probable prospect zones of hydrocarbons in eastern and western part of the study area. These prospect zones have vertical closures of 20 to 50 ms and 20 to 30 ms at Goru sands and Chiltan levels, respectively. Four hydrocarbon-bearing zones (zones 1, 2, 3, and 4 with thicknesses of 28, 9, 24, and 8 m respectively) were identified on the basis of petrophysical interpretation of well log data at Goru sand level. Fluid substitution results at Goru sand level show maximum variation of P-wave velocity and density when hydrocarbon phase was substituted completely with water. This represents the maximum change in the acoustic impedance after complete extraction of hydrocarbon phase which can be modeled using synthetic seismograms.
机译:油气勘探领域的最佳现场开发需要对地震和测井数据进行综合分析。流体替代是一种在开发阶段为储层中的流体识别和定量提供工具的过程。在本研究中,地震,岩石物理学和Gassmann流体替代的综合方法已应用于巴基斯坦Sanghar地区的Goru砂土上,以实现最佳油田开发。地震结果表明该研究区东部和西部可能有油气勘探区。这些勘探区在Goru砂岩和Chiltan水平上的垂直封闭时间分别为20至50 ms和20至30 ms。根据Goru砂层测井资料的岩石物理解释,确定了四个含油气层(分别为1,2、3和4区,厚度分别为28、9、24和8 m)。在Goru砂位的流体置换结果表明,当烃相完全被水置换时,P波速度和密度的变化最大。这代表了完全提取烃相后声阻抗的最大变化,可以使用合成地震图来模拟。

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