...
首页> 外文期刊>Journal of natural gas science and engineering >Analysis of fractal dimension of coal subjected to electrical breakdown based on nuclear magnetic resonance
【24h】

Analysis of fractal dimension of coal subjected to electrical breakdown based on nuclear magnetic resonance

机译:基于核磁共振的电击煤分形尺寸分析

获取原文
获取原文并翻译 | 示例

摘要

The relationship between breakdown energy and the porosity growth rate were quantitatively investigated through nuclear magnetic resonance (NMR) and fractal dimension analysis. It can be found that the porosity of electrically broken coal sample increased, and the growth rate of macro-pores is much greater than that of mesopores and micro-pores, which can promote the extraction of coalbed methane. Furthermore, the porosity growth rate of macro-pores change obviously with the increase of electrical breakdown energy, representing that larger energy can lead to more fractures. Micro-pores and meso-pores can be easily changed by small energy, while larger energy is conducive to the formation of cracks. Some meso-pores and micro-pores will be transformed into macro-pores, resulting in negative growth rates of meso-pores and micro-pores, indicating that electrical breakdown helps to expand primary fractures and generate new fractures. According to the pore size, there are two types of fractal dimensions, namely, adsorption pores and seepage pores. The results indicate that the value of fractal dimensions of adsorption pores is smaller than 1, verifying that adsorption pores do not follow the characteristics of fractal. However, the value of seepage pores lies within the range of 2-3 and boasts high fitting degrees, suggesting that seepage pores follow the characteristics of fractal. The value of DA increases while that value of Ds decreases, which represents that electrical breakdown is more conducive to enhancing connectivity between macro-pores and tiny fractures. Moreover, there is no obvious positive correlation or negative correlation between fractal dimension and electrical breakdown energy, indicating that fractal dimension is the intrinsic property of the pore surface.
机译:通过核磁共振(NMR)和分形尺寸分析定量地研究了击穿能量和孔隙率生长速率之间的关系。可以发现,电破碎煤样的孔隙率增加,宏观孔的生长速率远大于中孔和微孔的生长速率,可以促进煤层气的提取。此外,随着电击穿能量的增加,宏观孔的孔隙率生长速率明显变化,表示较大的能量会导致更多的骨折。微孔和中间孔可以通过小能量容易地改变,而较大的能量有利于形成裂缝。一些中间孔和微孔将转化为宏观孔,导致中孔孔和微孔的负生长速率,表明电击有助于扩大初级骨折并产生新的骨折。根据孔径,有两种类型的分形尺寸,即吸附孔隙和渗漏孔隙。结果表明,吸附孔的分形尺寸的值小于1,验证吸附孔不遵循分形的特征。然而,渗流孔的值位于2-3的范围内,并且具有高拟合度,表明渗流孔遵循分形的特征。 DA的值增加,而DS的值降低,这表示电击更有利于提高宏观孔隙和微小裂缝之间的连通性。此外,分形尺寸和电击能量之间没有明显的正相关或负相关,表明分形尺寸是孔表面的固有特性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号