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首页> 外文期刊>Journal of Geoscience, Engineering, Environment and Technology >Rock Physics Modeling and Seismic Interpretation to Estimate Shally Cemented Zone in Carbonate Reservoir Rock
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Rock Physics Modeling and Seismic Interpretation to Estimate Shally Cemented Zone in Carbonate Reservoir Rock

机译:碳酸盐岩储层岩性胶结带估算的岩石物理建模与地震解释

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Carbonate rock are important hydrocarbon reservoir rocks with complex texture and petrophysical properties (porosity and permeability). These complexities make the prediction reservoir characteristics (e.g. porosity and permeability) from their seismic properties more difficult. The goal of this paper are to understanding the relationship of physical properties and to see the signature carbonate initial rock and shally-carbonate rock from the reservoir. To understand the relationship between the seismic, petrophysical and geological properties, we used rock physics modeling from ultrasonic P- and S- wave velocity that measured from log data. The measurements obtained from carbonate reservoir field (gas production). X-ray diffraction and scanning electron microscope studies shown the reservoir rock are contain wackestone-packstone content. Effective medium theory to rock physics modeling are using Voigt, Reuss, and Hill. It is shown the elastic moduly proposionally decrease with increasing porosity. Elastic properties and wave velocity are decreasing proporsionally with increasing porosity and shally cemented on the carbonate rock give higher elastic properties than initial carbonate non-cemented. Rock physics modeling can separated zones which rich of shale and less of shale.
机译:碳酸盐岩是重要的烃类储集岩,具有复杂的质地和岩石物理特性(孔隙度和渗透率)。这些复杂性使得根据其地震特性来预测储层特征(例如孔隙度和渗透率)更加困难。本文的目的是了解物理性质之间的关系,并从储层中看到标志性的碳酸盐初生岩和滑石质碳酸盐岩。为了理解地震,岩石物理和地质特性之间的关系,我们使用了根据测井数据测得的超声波P波和S波速度的岩石物理模型。从碳酸盐岩油藏田获得的测量值(产气量)。 X射线衍射和扫描电子显微镜研究表明,储集层岩石中含有瓦克司-砂砾石含量。有效的介质理论到岩石物理学建模使用的是Voigt,Reuss和Hill。结果表明,弹性模量随孔隙率的增加而呈递减趋势。弹性和波速随孔隙度的增加而成比例地降低,胶结在碳酸盐岩上的泥土比未胶结的初始碳酸盐具有更高的弹性。岩石物理建模可以将富含页岩的区域和较少页岩的区域分离。

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