Advance Search
YE Jian-ping ZHANG Shou-ren LING Biao-can ZHENG Gui-qiang WU Jian LI Dan-qiong, . Study on Variation Law of Coalbed Methane Physical Property Parameters with Seam Depth[J]. COAL SCIENCE AND TECHNOLOGY, 2014, (6).
Citation: YE Jian-ping ZHANG Shou-ren LING Biao-can ZHENG Gui-qiang WU Jian LI Dan-qiong, . Study on Variation Law of Coalbed Methane Physical Property Parameters with Seam Depth[J]. COAL SCIENCE AND TECHNOLOGY, 2014, (6).

Study on Variation Law of Coalbed Methane Physical Property Parameters with Seam Depth

More Information
  • Available Online: April 02, 2023
  • Published Date: June 24, 2014
  • According to high difficult development caused by high geostress and low permeability features of the coalbed methane in deep seam, the paper analyze d the rock core test data of the coalbed methane well in the south part of Qinshui Basin and the logging, well test, fracturing, production and other actual informations of the coalbed methane well and studied the relationship between the physical property parameters of main reservoir and depth. The study results showed that the variatio n law of different reservoir with seam depth would be different and would have jumped type variation features. The variation value of the inflection point would not be a certain buried depth value. The results of the changed inflection point of the physical property parameter simulated with BP neural network showed that due to the select ed key parameters different, the obtained physical property with the changed inflection point of the depth would be different. The inflection point value of the deep seam depth with the mechanics parameters as the key parameters was 1 043 m. The deep seam depth inflection point value of the particular physical property parameters wa s 659 ~ 950 m. The deep depth inflection point value with production factors as the key parameters was 927 ~ 1 171 m.
  • Related Articles

    [1]CHEN Shuai, LI Bobo, LI Jianhua, REN Chonghong. Experimental study on shale apparent permeability model under different stress conditions[J]. COAL SCIENCE AND TECHNOLOGY, 2021, 49(7): 169-178.
    [2]ZHENG Guiqiang, YANG Defang, LI Xiaoming, WU Xueping. Study on features and logging evaluation of deep coal reservoir inNorth Shizhuang Block of Qinshui Basin[J]. COAL SCIENCE AND TECHNOLOGY, 2019, (6).
    [3]LI Xuecheng, FENG Zengchao, GUO Jizhe, LIANG Yuankai, BAI Jun, WANG Chen. Study on influence laws of temperature and stress on sandstone permeability[J]. COAL SCIENCE AND TECHNOLOGY, 2019, (4).
    [4]WU Caifang, WANG Xiao, LIU Xiaolei, ZHOU He. Study on geostress features and influences under multi-seam condition in Laochang Mining Area of East Yunnan[J]. COAL SCIENCE AND TECHNOLOGY, 2019, (1).
    [5]WU Yongzheng, HE Jie, SI Linpo, XU Zonghao. Study on geostress distribution law of deep mine in Yima Mining Area[J]. COAL SCIENCE AND TECHNOLOGY, 2018, (10).
    [6]CHEN Zhengrong, LIU Shujie, ZHANG Binhai, PENG Chengyong, LI Yingying. Study on geostress model of coalbed methane wells in north edge of Qinshui Basin[J]. COAL SCIENCE AND TECHNOLOGY, 2018, (10).
    [7]XING Liren, LIU Yinghong, WANG Cunwu, LIU Zhiqiang, GUO Guangshan, LYU Yumin. Geostress prediction and comprehensive evaluation based on logging information in coalbed methane block[J]. COAL SCIENCE AND TECHNOLOGY, 2018, (10).
    [8]CHEN Shida, TANG Dazhen, TAO Shu, XU Hao, LI Song, ZHAO Junlong. Statistic analysis on macro distribution law of geostress field in coalbed methane reservoir[J]. COAL SCIENCE AND TECHNOLOGY, 2018, (6).
    [9]CHEN Hao, QIN Yong, LI Guizhong, CHEN Zhenhong, GENG Meng, DENG Ze, TIAN Wenguang, SANG Guangjie. Study on stress sensitivity of coal rock permeability based on pulse-decay method[J]. COAL SCIENCE AND TECHNOLOGY, 2018, (6).
    [10]Study on Geostress Measurement by Hydrallic Fracturing Method in Mine Soft Rock Roadway[J]. COAL SCIENCE AND TECHNOLOGY, 2012, (12).

Catalog

    Article views (394) PDF downloads (609) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return