煤层气藏顶板水平井排水采气数值模拟
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王超文(1991—),男,陕西咸阳人,在读硕士研究生,从事油藏工程及数值模拟研究。联系电话:15520762070,E-mail:swpuw?cw@qq.com。

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国家科技重大专项“大型油气田及煤层气开发”(2011ZX05060-004)。


Numerical simulation on gas recovery by water drainage of horizontal well in the roof of coalbed methane reservoir
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    摘要:

    5号煤层气开采排水周期长,产气效果差的问题,避免顶板K2灰岩层对煤层气开发的影响,对煤层气藏顶板地层水采用水平井排水采气工艺提高煤层气开采效率,通过数值模拟方法建立流动机理模型,研究排水采气对15号煤层和顶板K2灰岩层合层开采的效果及其影响因素。结果表明:水平井排水采气可明显缩短排水降压时间,增加累积产气量。产气量与水平井在顶板中的位置、水平井与直井压裂缝的角度、水平段长度等有关;见气时间与水平井排采强度有关。水平段越长,产气量越高;水平井位于K2灰岩层中部时产气效果好于位于K2灰岩层底部;当水平井与直井压裂缝呈45°夹角时,产气效果最好。水平井排水强度对见气时间影响较大,对累积产气量影响较小。

    Abstract:

    In order to solve the problem of long water drainage period with low efficiency in No.15 coalbed methane of Qinshui basin and to avoid the effect of the aquifer in the K2 limestone above the No.15 coal bed on CBM development,horizontal well was applied for gas recovery by water drainage in roof water of the coalbed methane reservoir to enhance coalbed methane recovery efficiency. Flow mechanism model was established by numerical simulation. Effect of gas recovery by water drainage on the No.15 coal seam and K2 roof limestone and its influencing factors were researched. The simulation results show that the technique can significantly reduce the time of the water drainage and pressure drop and increase the cumulative gas production. The location of horizontal well in the roof,the angle between horizontal well and vertical fracturing crack and horizontal section length are related to CBM production. Water drainage intensity is related to the gas breakthrough time of CBM. The longer the horizontal section length is,the higher the gas production is. The production effect of the horizontal well that is located in the middle of the K2 limestone is better than that of the well located in the bottom.When the angle between horizontal well and the vertical fracturing crack is 45 degree,the gas production effect is the best.The water drainage intensity of horizontal well has a great influence on the time of gas breakthrough,and less influence on the cumulative gas production.

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王超文,彭小龙,贾春生,朱苏阳,莫非.煤层气藏顶板水平井排水采气数值模拟[J].油气地质与采收率,2016,23(4):112~116

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  • 在线发布日期: 2016-10-11