China Safety Science Journal ›› 2024, Vol. 34 ›› Issue (11): 99-107.doi: 10.16265/j.cnki.issn1003-3033.2024.11.0347
• Safety engineering technology • Previous Articles Next Articles
LI He(), JIANG Xunqi, LU Yi, SHI Shiliang, LU Jiexin, CAO Jieyan
Received:
2024-06-19
Revised:
2024-08-24
Online:
2024-11-28
Published:
2025-01-04
CLC Number:
LI He, JIANG Xunqi, LU Yi, SHI Shiliang, LU Jiexin, CAO Jieyan. Evolution mechanism of pore structure of water-bearing coal under cyclic microwave radiation[J]. China Safety Science Journal, 2024, 34(11): 99-107.
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Table 2
Change of T2 spectral area of coal samples with different water saturation under cyclic microwave conditions
孔隙类型 | 含水饱和 度/% | T2谱面积 | 总增幅程 度/% | |||
---|---|---|---|---|---|---|
原煤 | 循环1次后 | 循环2次后 | 循环3次后 | |||
吸附孔 | 0 | 2 025.836 | 1 937.267 | 1 884.41 | 1 871.838 | -7.60 |
25 | 1 865.448 | 1 887.79 | 1 880.006 | 1 880.845 | 0.83 | |
50 | 2 023.991 | 1 959.765 | 1 934.842 | 1 915.345 | -5.37 | |
75 | 2 005.109 | 1 767.157 | 1 917.584 | 1 908.728 | -4.81 | |
100 | 1 941.281 | 1 902.382 | 1 873.722 | 1 854.638 | -4.46 | |
渗流孔 | 0 | 956.843 | 1 199.496 | 1 241.696 | 1 332.215 | 39.23 |
25 | 1 341.829 | 1 396.15 | 1 456.57 | 1 501.088 | 11.87 | |
50 | 1 071.94 | 1 193.319 | 1 202.64 | 1 363.123 | 27.16 | |
75 | 983.021 | 1 287.142 | 1 432.735 | 1 454.605 | 47.97 | |
100 | 1 010.553 | 1 235.637 | 1 306.645 | 1 359.339 | 34.51 | |
总孔隙 | 0 | 2 982.679 | 3 136.763 | 3 126.106 | 3 204.053 | 7.42 |
25 | 3 207.277 | 3 283.94 | 3 336.576 | 3 381.933 | 5.45 | |
50 | 3 095.931 | 3 153.084 | 3 137.482 | 3 278.468 | 5.90 | |
75 | 2 988.13 | 3 054.299 | 3 350.319 | 3 363.333 | 12.56 | |
100 | 2 951.834 | 3 138.019 | 3 180.367 | 3 213.977 | 8.88 |
[1] |
罗平亚, 朱苏阳. 中国建立千亿立方米级煤层气大产业的理论与技术基础[J]. 石油学报, 2023, 44(11): 1 755-1 763.
|
|
|
[2] |
李胜, 王箫鹤, 范超军, 等. 冲击载荷作用下煤岩孔隙演化特征试验研究[J]. 中国安全科学学报, 2019, 29(10): 91-97.
doi: 10.16265/j.cnki.issn1003-3033.2019.10.014 |
doi: 10.16265/j.cnki.issn1003-3033.2019.10.014 |
|
[3] |
付江伟, 傅雪海, 刘琦, 等. 低渗高突煤层体系化瓦斯治理关键技术研究[J]. 中国安全科学学报, 2018, 28(7): 109-115.
doi: 10.16265/j.cnki.issn1003-3033.2018.07.018 |
doi: 10.16265/j.cnki.issn1003-3033.2018.07.018 |
|
[4] |
张永利, 尚文龙, 马玉林, 等. 微波作用下煤层渗透性变化规律实验研究[J]. 中国安全生产科学技术, 2018, 14(8): 48-53.
|
|
|
[5] |
李贺, 林柏泉, 洪溢都, 等. 微波辐射下煤体孔裂隙结构演化特性[J]. 中国矿业大学学报, 2017, 46(6): 1 194-1 201.
|
|
|
[6] |
曹轩. 微波热循环作用对含水煤体的致裂增透特性研究[D]. 徐州: 中国矿业大学, 2021.
|
|
|
[7] |
|
[8] |
胡国忠, 杨南, 朱健, 等. 微波辐射下含水分煤体孔渗特性及表面裂隙演化特征实验研究[J]. 煤炭学报, 2020, 45(增2):813-822.
|
|
|
[9] |
马学舟, 温颖远, 曹安业, 等. 微波弱化煤体微结构损伤特征及能量释放规律分析[J/OL]. 煤炭科学技术:1-12[2024-06-11]. http://kns.cnki.net/kcms/detail/11.2402.TD.20240408.0845.001.html.
|
|
|
[10] |
朱健, 胡国忠, 许家林, 等. 煤层层理对微波破煤增透效果的影响规律[J]. 煤炭学报, 2024, 49(5): 2 324-2 337.
|
|
|
[11] |
林柏泉, 钟玉婷, 曹轩, 等. 循环微波辐射下煤体孔裂隙结构演化特征[J]. 西安科技大学学报:自然科学版, 2021, 41(6): 964-972.
|
|
|
[12] |
杨新乐, 姜涛, 苏畅, 等. 脉动微波循环注热开采煤层气数值模拟[J]. 微波学报, 2021, 37(4): 89-94.
|
|
|
[13] |
|
[14] |
张连昆. 微波循环作用改变煤结构及煤甲烷吸附性能的研究[D]. 太原: 太原理工大学, 2022.
|
|
|
[15] |
董超, 王恩元, 晋明月, 等. 微波作用对煤微观孔隙影响的研究[J]. 煤矿安全, 2013, 44(5): 49-52.
|
|
|
[16] |
GB/T 42035—2022, 煤和岩石孔径分布的测定核磁共振法[S].
|
GB/T 42035-2022, Determination of pore size distribution of coal and rock-nuclear magnetic resonance[S].
|
|
[17] |
徐吉钊, 翟成, 桑树勋, 等. 基于低场核磁共振技术的液态CO2循环致裂煤体孔隙特征演化规律[J]. 煤炭学报, 2021, 46(11): 3 578-3 589.
|
|
|
[18] |
屈翠侠, 刘永河, 宋宏业, 等. 泥页岩储层孔隙度测量方法分析与评价[J]. 物探化探计算技术, 2023, 45(6): 698-706.
|
|
|
[19] |
李天, 任大忠, 甯波, 等. 煤层孔隙结构多尺度联合表征及其对可动流体的影响[J]. 矿业科学学报, 2023, 8(4): 569-582.
|
|
|
[20] |
|
[21] |
林海飞, 罗荣卫, 李博涛, 等. 液氮冻融含水煤体孔隙损伤规律实验研究[J]. 西安科技大学学报:自然科学版, 2023, 43(1): 55-64.
|
|
|
[22] |
|
[23] |
|
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