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Application of surface–downhole combined microseismic monitoring technology in the Fuling shale gas field and its enlightenment

机译:井下微震联合监测技术在Fu陵页岩气田中的应用及启示

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The Fuling shale gas field in the Sichuan Basin, as a national shale gas demonstration area, is the largest commercially developed shale gas field in the world except those in North America. The fracturing technology in the mode of “well factory” has been applied widely in the gas field, but it is necessary to perform further investigation on the way to evaluate effectively the fracturing effect of multi-well platform “well factory” and the distribution laws of its induced fracture networks. In this paper, the fractures induced by the “well factory” at the JY 48 platform were real-time monitored by a surface–downhole combined microseismic monitoring technology. The geometric size and extension direction of artificial fractures induced in the model of “well factory” fracturing in the Jiaoshiba block of Fuling Shale Gas Field were preliminarily understood. Moreover, the fracturing parameters under the mode of “well factory” were recognized by using the comprehensive interpretation results of surface–downhole combined microseismic monitoring technology, together with the SRV fracturing prediction chart. Eventually, the distribution laws of artificial fractures during the “well-factory-zipper” fracturing in the Fuling Shale Gas Field were clarified definitely. This paper provides guidance for the optimization of fracturing parameters at the later stage.
机译:作为国家级页岩气示范区,四川盆地陵页岩气田是除北美以外的全球最大的商业开发页岩气田。 “气井工厂”模式的压裂技术已经在气田中得到了广泛的应用,但有必要对有效地评价多井平台“气井工厂”的压裂效果及分布规律的方式进行深入研究。引起的裂缝网络。在本文中,通过地表-井下组合微地震监测技术实时监测了由JY 48平台“井工厂”引起的裂缝。初步了解了ling陵页岩气田焦石坝组“井厂”压裂模型中人工裂缝的几何尺寸和延伸方向。此外,利用井下联合微震监测技术的综合解释结果,结合SRV压裂预测图,识别了“井厂”模式下的压裂参数。最终,明确了Fu陵页岩气田“厂拉链”压裂过程中人工裂缝的分布规律。本文为后期压裂参数的优化提供了指导。

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