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Combustion enhance recovery of shale gas

机译:燃烧促进页岩气的回收

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摘要

The amount of extracted natural gas from low permeable organic rich shale has increased rapidly over the past decade. The technologies used to improve the permeability of a shale gas reservoir are horizontal drilling and hydraulic fracturing. The potential environmental impact of hydraulic fracturing motivates research aiming at alternative permeability enhancement methods. In this paper the possibility of in-situ combustion to improve permeability is investigated. Two possibilities for the in-situ fuel source are considered, viz., methane or kerogen. A one dimensional model is considered. Under simplifying hypotheses a quasi-analytical solution for the corresponding Riemann problem is obtained. The solution was analysed with parameters that correspond to resonance conditions, i.e., conditions for which the speeds of the heat wave and the combustion wave are equal. We conclude that methane combustion cannot generate enough heat to enhance the permeability. However kerogen, if present in sufficient quantities, makes this possible. We present the set of parameters for which the combustion reaches the optimal temperature to improve the permeability. Finally, the analytical approximations are validated with direct numerical simulations. The pressure distribution in the reservoir and the production improvement by the thermal treatment are calculated with the numerical model. (C) 2015 Elsevier B.V. All rights reserved.
机译:在过去十年中,从低渗透性有机富页岩中提取的天然气数量迅速增加。用于提高页岩气储层渗透率的技术是水平钻井和水力压裂。水力压裂的潜在环境影响激发了针对替代渗透率提高方法的研究。本文研究了就地燃烧以提高渗透率的可能性。考虑了就地燃料源的两种可能性,即甲烷或干酪根。考虑一维模型。在简化的假设下,获得了相应黎曼问题的拟解析解。用与共振条件相对应的参数来分析该溶液,共振条件即热波和燃烧波的速度相等的条件。我们得出结论,甲烷燃烧不能产生足够的热量来提高渗透率。但是,如果干酪根含量足够,则可以实现这一点。我们提出了一组参数,燃烧达到了最佳温度以提高渗透率。最后,通过直接数值模拟验证了解析近似值。用数值模型计算储层中的压力分布和热处理后的产量提高。 (C)2015 Elsevier B.V.保留所有权利。

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