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Matrix swelling with carbon dioxide injection and its impact on coal permeability.

机译:注入二氧化碳使基质溶胀及其对煤渗透性的影响。

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摘要

Permeability of coal is perhaps the most critical parameter controlling the flow of gas in a coalbed reservoir. The permeability of coal, however, is a dynamic property depending on several parameters like effective stress, gas pressure, water saturation, and matrix shrinkage/swelling due to desorption/adsorption. There have been a few studies that have concluded that matrix volumetric changes resulting from desorption of methane causes the permeability to change. This becomes even more critical when a second gas, like CO2, is injected into a coal reservoir, either to sequester CO2 or enhance the production. Thus an understanding of the physical process of gas flow in coal, primarily the permeability and different parameters affecting it, is critical for CO 2 sequestration and enhanced methane recovery.; Two properties of coal, the permeability, and impact of gas flow on coal structure and its effect on flow behavior, were studied. The results of the experimental work involving measurement of matrix volumetric change indicate that the coal matrix "swells" with injection of CO2. Numerical analysis suggests that this matrix strain can result in a significant reduction in coal permeability. Permeability of coal was also estimated in the laboratory for a well preserved core of coal. The permeability to CO2 was found to be much lower than that of methane, clearly suggesting that CO 2 injection can result in permeability reduction.
机译:煤的渗透率可能是控制煤层气藏中天然气流量的最关键参数。但是,煤的渗透性是一种动态特性,取决于几个参数,例如有效应力,气压,水饱和度以及由于解吸/吸附而引起的基质收缩/溶胀。已有一些研究得出结论,即甲烷解吸引起的基质体积变化会导致渗透率发生变化。当将第二种气体(如CO2)注入煤层中以封存CO2或提高产量时,这一点变得更加关键。因此,了解煤中气体流动的物理过程,主要是渗透率和影响煤的渗透率的不同参数,对于CO 2隔离和提高甲烷回收率至关重要。研究了煤的两个特性,即渗透性和气流对煤结构的影响及其对流动行为的影响。涉及测量基质体积变化的实验工作结果表明,注入CO2会使煤基质“膨胀”。数值分析表明,该基体应变会导致煤渗透率显着降低。实验室还评估了保存完好的煤芯的煤的渗透性。发现对CO2的渗透率远低于甲烷,这清楚地表明注入CO 2会导致渗透率降低。

著录项

  • 作者

    Zutshi, Ashwani.;

  • 作者单位

    Southern Illinois University at Carbondale.;

  • 授予单位 Southern Illinois University at Carbondale.;
  • 学科 Engineering Mining.
  • 学位 M.S.
  • 年度 2005
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 矿业工程;
  • 关键词

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