首页> 外文学位 >Topics in the interpretation of seismic data: I. Earthquake seismogram interpretation for the classroom. II. Gas saturation prediction and effect of low frequencies on acoustic impedance images at Foinaven Field. III. Physical reasonability and accuracy of spheroidal porosity models for seismic velocity prediction.
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Topics in the interpretation of seismic data: I. Earthquake seismogram interpretation for the classroom. II. Gas saturation prediction and effect of low frequencies on acoustic impedance images at Foinaven Field. III. Physical reasonability and accuracy of spheroidal porosity models for seismic velocity prediction.

机译:地震数据解释的主题:I.教室地震图解释。二。 Foinaven场的气体饱和度预测和低频对声阻抗图像的影响。三,球形孔隙度模型在地震速度预测中的物理合理性和准确性。

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摘要

Low frequencies are necessary in seismic data for proper acoustic impedance imaging and for petrophysical interpretation. Without lower frequencies, images can be distorted leading to incorrect reservoir interpretation and petrophysical predictions. As part of the Foinaven Active Reservoir Management (FARM) project, a Towed Streamer and Ocean Bottom Hydrophone (OBH) survey were shot in both 1995 and 1998. The OBH surveys contain lower frequencies than the streamer surveys, providing a unique opportunity to study the effects low frequencies have on both the acoustic impedance image along with petrophysical time-lapse predictions. Artifacts that could easily have been interpreted as high-resolution features in the streamer data impedance volumes can be distinguished by comparison with the impedance volumes created from the OBH surveys containing lower frequencies.; In order to obtain results from the impedance volumes, impedance must be related to saturation. The mixing of exsolved gas, oil, and water phases involves using the Reuss (uniform) or Voigt (patchy approximation) mixing laws. The Voigt average is easily misused by assuming that the end points correspond to 0% and 100% gas saturation. This implies that the patches are either 0% gas saturation or 100% gas saturation, which is never the case. Here the distribution of gas as it comes out of solution is assumed to be uniform until the gas saturation reaches a sufficiently high value (critical gas saturation) to allow gas to flow. Therefore, at low gas saturations the distribution is uniform, but at saturations above critical, it is patchy, with patches that range from critical gas saturation to the highest gas saturation possible (1 minus residual oil and irreducible water saturation).; The Xu and White method predicts a shear (S-) sonic log in a sand-clay mixture using a theoretical (Kuster-Toksoz) model to embed pores with aspect ratios that provide a best-fit to a known compressional (P-) sonic log. In the Xu and White method, they assume that the clay bulk and shear moduli can be determined. In this paper we examine the variability in clay moduli determination using a set of well logs from Acae field, Colombia. The clay moduli are identified through a best-fit provided along with the aspect ratios. We also examine different mixing laws used to calculate the moduli of the matrix. (Abstract shortened by UMI.)
机译:低频在地震数据中对于正确的声阻抗成像和岩石物理解释是必需的。没有较低的频率,图像可能会失真,从而导致错误的储层解释和岩石物理预测。作为Foinaven主动水库管理(FARM)项目的一部分,在1995年和1998年均拍摄了拖缆和海底水听器(OBH)。OBH调查的频率比拖缆调查的频率低,这为研究浮游生物提供了独特的机会。低频对声阻抗图像以及岩石物理延时预测的影响。通过与包含较低频率的OBH测量所创建的阻抗量进行比较,可以区分出在流光数据阻抗量中很容易被解释为高分辨率特征的伪影。为了从阻抗量获得结果,阻抗必须与饱和度相关。溶解的气相,油相和水相的混合涉及使用Reuss(均匀)或Voigt(斑纹近似)混合定律。通过假设端点对应于0%和100%的气体饱和度,很容易滥用Voigt平均值。这意味着贴片是0%的气体饱和度或100%的气体饱和度,绝不是这种情况。在此,假设从溶液中出来的气体分布是均匀的,直到气体饱和度达到足够高的值(临界气体饱和度)以允许气体流动为止。因此,在低气体饱和度时,分布是均匀的,但在高于临界值的饱和度时,则是不规则的,斑块的范围从临界气体饱和度到可能的最高气体饱和度(1减去残余油和不可还原的水饱和度)。 Xu and White方法使用理论模型(Kuster-Toksoz)在纵横比中嵌入孔隙的方式来预测砂土混合物中的剪切(S-)声波测井曲线,从而最适合已知的压缩(P-)声波日志。在Xu and White方法中,他们假设可以确定粘土的体积和剪切模量。在本文中,我们使用一组来自哥伦比亚Acae油田的测井资料来检验粘土模量测定的可变性。通过提供的最佳拟合以及长宽比来确定粘土模量。我们还研究了用于计算矩阵模量的不同混合定律。 (摘要由UMI缩短。)

著录项

  • 作者

    Wagner, Sean R.;

  • 作者单位

    Michigan Technological University.;

  • 授予单位 Michigan Technological University.;
  • 学科 Geophysics.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

  • 入库时间 2022-08-17 11:41:21
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