室温常压条件下中国6种变质煤的超声弹性特性

WANG Yun, XU Xiao-Kai, ZHANG Yu-Gui
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引用次数: 12

摘要

煤的弹性是反映煤的物质组成和结构的重要力学特性之一。在钻井测井的约束下,利用地震勘探预测煤层弹性特征,对煤矿开采和煤层气储层评价开发具有重要的工程意义。因此,煤样超声实验是实现煤层物性地震反演的基础。本文以中国宜马、阜康、淮南、平顶山、鹤壁、焦作6个矿区的6种变质原煤30块为研究对象,在常温常压下,分别在走向、倾斜、垂直于煤层顺层3个方向对煤样进行了室内超声测量。实验结果表明:压力波(纵波)速度和横波(横波)速度在三个方向上依次减小;速度的各向异性明显,纵波速度的平均各向异性强于横波速度。在三个方向上,弹性质量因子和弹性模量差异较大,且横波质量因子大于纵波质量因子;除泊松比外,煤的弹性模量均小于普通沉积岩。通过实验和分析,可以证明Gardener和Castagna公式不适合表示中国煤田煤弹性参数的关系,并统计给出了两个精度较高的经验公式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ULTRASONIC ELASTIC CHARACTERISTICS OF SIX KINDS OF METAMORPHIC COALS IN CHINA UNDER ROOM TEMPERATURE AND PRESSURE CONDITIONS

Coal elasticity is one of the important mechanical characteristics reflecting the material composition and structure of coal. Under the constraint of drilling and well logging, applying seismic exploration to predict elastic characteristics of the coal seams would be of important engineering significance for coal mining and CBM reservoir evaluation and development. In this regard, ultrasonic experiment of coal samples is the basis to realize the seismic inversion of physical properties of coal seam. In this paper, based on 30 pieces of six kinds of metamorphic raw coals collected from six mining areas of Yima, Fukang, Huainan, Pingdingshan, Hebi and Jiaozuo in China, laboratory ultrasonic measurements of these coal samples were respectively conducted in three directions of strike, dip and perpendicular to the beddings of coal seam under room temperature and pressure. The experimental results show: the samples’ velocities of both pressure wave (P-wave) and shear wave (S-wave) decrease in turn in the three directions; there are obvious anisotropies of velocities, and the average anisotropy of P-wave velocity is stronger than S-wave's. Moreover, larger differences exist among both quality factors and modules of elasticity in the three directions, and the S-wave quality factors are greater than P-wave's; with exception of Poisson's ratio, modules of elasticity of coal are less than those common sedimentary rocks. Through the experiment and analysis, it can be demonstrated that Gardener and Castagna formulas are not suitable to represent relations of coal elastic parameters in China's coal fields, and two empirical formulas with higher precision are statistically given.

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