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Two-phase pressure transient analysis for multi-stage fractured horizontal well in shale gas reservoirs

机译:页岩气藏多级压裂水平井两相压力瞬态分析

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摘要

Most researches on shale gas production and pressure transient analysis placed more emphasis on single-phase flow, the two-phase flow caused by flowback after hydrofracture in shale gas reservoirs does not attract much attention. This paper presents a two-phase pressure transient analysis model of multi-stage fractured horizontal well with the consideration of wellbore storage, skin effect, two-phase saturation, hydraulic fractures parameters and desorption characteristics of shale gas reservoirs. Accurate solution to this flow model is obtained by the use of source function theory, Laplace transform, three-dimensional eigenvalue method and orthogonal transformation. Pseudo-pressure and pseudo-pressure derivative type curve is plotted by using the Stehfest algorithm. Seven different flow regimes have been identified and the effects of influence factors such as initial saturation, skin factor, absorption index, fracture stages, horizontal well lateral length and wellbore storage coefficient have also been discussed. The presents research could be used to interpret the pressure behavior more accurately and effectively of shale gas reservoirs. (C) 2014 Elsevier B.V. All rights reserved.
机译:页岩气生产和压力瞬态分析的大多数研究更多地关注单相流,页岩气储层水力压裂后返流引起的两相流并未引起人们的关注。在考虑页岩储量,集肤效应,两相饱和度,水力压裂参数和页岩气储层解吸特征的基础上,提出了多级压裂水平井的两相压力瞬态分析模型。通过使用源函数理论,拉普拉斯变换,三维特征值方法和正交变换,可以对此流模型进行精确求解。使用Stehfest算法绘制伪压力和伪压力导数类型曲线。已经确定了七个不同的流态,并讨论了诸如初始饱和度,表皮因子,吸收指数,裂缝阶段,水平井侧向长度和井筒储藏系数等影响因素的影响。本研究可用于更准确和有效地解释页岩气储层的压力行为。 (C)2014 Elsevier B.V.保留所有权利。

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