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Sonic velocity and grain contact properties in reservoir sandstones

机译:储层砂岩的声波速度和颗粒接触特性

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The purpose of this study was to examine the effect of grain contacts and quartz cementation with regard to acoustic wave propagation in sandstones. Grain contacts have been considered essential when relating acoustic velocities to physical rock properties, and a parameter numerically representing the contact area between individual grains (contact length) has been measured. The method used involves digital petrographic microscopy pictures analysed by image analysis software. Other parameters, such as grain size, number of grain-to-grain contacts, cracks, clay content and porosity, have also been closely examined. The results showed that the contact area between sand grains may be useful for explaining velocity variations during the initial stages of quartz cementation and grain framework stiffening. Continued increase in grain-contact area by chemical compaction will have less influence on the sonic velocity compared to variations in porosity. The Garn Fm. from the Norne Field (2.6–2.7 km burial depth), which is in the early phase of initial grain framework stiffening by quartz cementation, and the Garn Fm. from the Kristin Field (4.6–4.7 km burial depth), which is thoroughly quartz cemented, were chosen as sample materials. Log-derived velocities, in addition to some laboratory ultrasonic velocity measurements, were used in this study.
机译:这项研究的目的是研究砂岩中的 接触和石英胶结作用对声波 传播的影响。当将声速与物理岩石 属性相关联时,谷物接触被认为是 必不可少的,参数表示每个晶粒之间的接触 区域(接触长度)已被测量。 所使用的方法涉及通过图像分析软件分析的数字岩石显微图像 。还仔细检查了其他参数,例如 ,例如晶粒尺寸,晶粒与晶粒的接触数,裂缝,粘土 含量和孔隙率。结果 表明,砂粒之间的接触面积对于解释石英胶结作用和晶格刚度初始阶段的速度变化可能是有用的。与孔隙度变化 相比,通过化学压实作用持续增加 对谷物接触面积的影响 。 Garn Fm。来自Norne油田(埋藏深度2.6-2.7 km),该阶段处于通过石英胶结作用使初始晶粒 框架硬化和Garn Fm的早期。 从Kristin油田(埋藏深度4.6-4.7 km)中选择了 完全石英胶结而成的样品材料。 对数推导速度在本研究中使用了一些实验室超声波 速度测量。

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  • 来源
    《Petroleum Geoscience 》 |2004年第3期| 00000215-00000226| 共12页
  • 作者

    Vidar Storvoll; Knut Bj?rlykke;

  • 作者单位

    University of Oslo, Department of Geology, PO Box 1047 Blindern, N-0316 Oslo, Norway(e-mail: vidar.storvoll@geologi.uio.no);

    University of Oslo, Department of Geology, PO Box 1047 Blindern, N-0316 Oslo, Norway(e-mail: vidar.storvoll@geologi.uio.no);

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