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A study on the relationship between anthracite fissure-pore system and the production of coalbed methane in Jincheng

机译:金城烟灰矿裂缝系统关系与煤层气生产的关系研究

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In Jincheng coalbed methane (CBM) development becomes the first commercial industry in China. Because Jincheng anthracite is high metamorphisM coal, its fissure-pore system is different from bituminous coal. In the paper, 69 samples were collected from 18 CBM wells of coal seam No. 3 in Zhengzhuang in Jincheng. To the naked eyes and by SEM most of the fissures are filled with clay mineral or in a closed state and the opening fissures are not often visible in Jincheng coal. By the Scan Electronic Microscope (SEM) the pores in the coal are abundant in mold pores which exist isolated, shallow, and poor connectivity, and other pores are few. The existing of too many mold pores and filled fissures make the migration passage of methane not available, so hydraulic fracture stimulation is an effective method of adding and connecting fissures to enhance CBM production.
机译:在金城煤层(CBM)开发中成为中国第一家商业产业。由于金城无烟煤是高变质煤,其裂缝孔系统与沥青煤不同。在本文中,从金城郑庄煤煤层的18个CBM井收集了69个样品。对于赤裸的眼睛和SEM大多数裂缝填充有粘土矿物或在闭合状态下,打开裂缝在金城煤中通常不可见。通过扫描电子显微镜(SEM)煤中的孔在模具毛孔上具有隔离,浅和连通性差,其他孔隙很少。现有的太多模具孔和填充裂缝使甲烷的迁移通过不可用,因此液压断裂刺激是添加和连接裂缝以增强CBM生产的有效方法。

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