一种估算固体充填多孔岩石弹性特性变化的简单方法

Yongyang Sun, B. Gurevich, M. Lebedev, S. Glubokovskikh, V. Mikhaltsevitch
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引用次数: 1

摘要

定量孔隙填充对多孔岩石弹性特性的影响一直是地球物理学关注的问题。以往的实验表明,孔隙充填体的变化对多孔岩石有效弹性特性的影响比现有模型预测的要大。这种影响可能是由于硬、软孔隙的存在导致孔隙空间内应力分布不均匀所致。在本文中,我们提出了一种新的基于三孔结构概念的固体替代方案,包括刚性孔、柔顺孔和所谓的中间孔。将模型预测结果与超声波测量结果进行比较,发现体积模量的拟合程度较好,但剪切模量的差异较小,比以前的模型更准确。这种差异可能是由于相对较小围压下超声测量的不稳定性造成的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Simple Recipe for Estimating the Change in Elastic Properties of Porous Rocks with Solid Infill
Summary Quantifying the impact of pore fill on elastic properties of porous rocks is of ongoing interets in geophysics. Previous experiements show that the change of the solid pore fill can produce larger change in effective elastic properties of porous rocks than predicted by exisiting models. This effect may result from the heterogeneous stress distribution within the pore space due to the existence of stiff and soft pores. In this paper, we present a new solid substitution scheme based on the concept of a triple pore structure, including stiff, compliant and so-called intermediate pores. Comparison of the model predictions against ultrasonic measurements on an Octodecane-saturated sandstone reveal a reasonable fit for the bulk modulus but a small discrepancy for the shear modulus, performing more accurately than previous models. This discrepancy might be resulted from the instability of ultrasonic measurements at relative small confining pressure.
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