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Application of CBM horizontal well development technology in the roof strata close to broken-soft coal seams

机译:煤层气水平井开发技术在破碎软煤层顶板地层中的应用

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Broken coal structure and low permeability are the main reasons for the difficult production of coalbed methane (CBM) in broken-soft coal seams. In this paper, No.8 coal seam in the Luling Mine of the Huaibei Coal Field was taken as an example to study the way to improve CBM production of broken-soft coal reservoirs. First, drilling, fracturing and production of horizontal wells were considered comprehensively. Then, based on the idea of exploiting CBM through horizontal wells in roof strata close to the broken-soft coal seams, the propagation laws of fractures created by layer-penetrating fracturing of horizontal wells in roof strata were studied, and accordingly the location of horizontal well was optimized. Finally, the CBM horizontal well exploitation technology for the roof strata close to coal seams was developed and tested on site. And the following research results were obtained. First, the vertical fractures created during layer-penetrating fracturing of horizontal wells in roof strata can propagate from the roof strata with high stress values downward to the coal seam with low stress values. In addition, the location of horizontal well has an important influence on the effect of layer-penetrating fracturing. The closer the horizontal well is to the coal seam, the better the fracture propagation effect of layer-penetrating fracturing. Second, the horizontal well should be arranged in the roof strata 1.5?m away from the top of coal seam, so that fracturing stimulation requirements of horizontal wells in roof strata can be satisfied to the uttermost. Third, three key technologies are formed, including the “high-quality, fast and safe” drilling technology, the deep-penetration oriented perforating technology and the “large displacement, large scale, high pad ratio and moderate proppant concentration” active water fracturing technology. Fourth, the gas production with this technology in engineering practice is remarkable. In conclusion, the CBM development technology of horizontal wells in roof strata close to broken-soft coal seams is feasible. The research results provide a new technical method for the development of CBM in broken-soft coal seams.
机译:破碎的软煤层中煤层气(CBM)难以生产的主要原因是破碎的煤层结构和低渗透性。本文以淮北煤田芦岭煤矿8号煤层为例,研究了提高破碎软煤层气产量的方法。首先,综合考虑水平井的钻井,压裂和生产。然后,基于在破碎软煤层附近的顶板地层中通过水平井开采煤层气的思想,研究了顶板中水平井的层穿透压裂产生的裂缝的扩展规律,进而研究了水平位置。优化了。最后,针对煤层附近顶板地层煤层气水平井开发技术进行了现场测试。并获得了以下研究结果。首先,在顶板地层的水平井的穿透渗透压裂过程中产生的垂直裂缝可以从具有高应力值的顶板层向下传播到具有低应力值的煤层。另外,水平井的位置对渗透压裂效果有重要影响。水平井离煤层越近,穿透层压裂的裂缝扩展效果越好。其次,水平井应布置在距煤层顶部1.5?m的顶板地层,以使顶板中水平井的压裂增产要求得到最大程度的满足。第三,形成了“优质,快速,安全”钻探技术,深穿透定向射孔技术和“大位移,大规模,高垫层比和中等支撑剂浓度”主动水压裂技术三项关键技术。 。第四,这种技术在天然气生产中的工程实践意义非凡。综上所述,破碎软煤层附近顶板水平井煤层气开发技术是可行的。研究成果为破碎软煤层煤层气的开发提供了一种新的技术手段。

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