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Modelling and Analysis of Shale Gas Production With a Skin Effect

机译:具有集肤效应的页岩气产量建模与分析

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Many hydraulically fractured horizontal wells in shale gas reservoirs have been observed to exhibit transient linear behaviour. This transient linear behaviour is characterized by a one-half slope on a log-log plot of rate against time. This transient linear flow regime is expected to be caused by transient drainage of low-permeability matrix blocks into adjoining fractures. This transient flow regime is the only flow regime available for analysis in many wells. In this paper, a linear dual-porosity model is used to approximate the shale gas completions with a horizontal well and multiple hydraulic fractures. Five flow regions are identified with this model. It seems that field production data exhibit Region 4 behaviour, which is primarily transient drainage from the matrix. However, a skin effect for Region 4 is observed in many wells. This modifies the shape of the log-log rate plot and the square root of time plot. A new analytical equation is presented to model the effect of skin on linear flow behaviour. The resulting curve shapes are somewhat surprising and tend to explain the early curve shapes of actual wells. A procedure is presented in this paper to analyze field data.
机译:页岩气储层中的许多水力压裂水平井都表现出瞬时线性行为。这种瞬态线性行为的特征在于速率与时间的对数对数图上的一半斜率。预计这种瞬态线性流动状态是由于低渗透性基质块向相邻裂缝中的瞬态排放所致。这种瞬态流态是许多井中唯一可用于分析的流态。本文采用线性双孔隙度模型来估算水平井和多个水力压裂的页岩气完井情况。该模型确定了五个流动区域。现场生产数据似乎表现出第4区的行为,这主要是基质的瞬时排水。但是,在许多孔中都观察到了区域4的皮肤效应。这修改了对数-对数速率图和时间图的平方根的形状。提出了一个新的分析方程来模拟皮肤对线性流动行为的影响。产生的曲线形状有些令人惊讶,并倾向于解释实际井的早期曲线形状。本文提出了一种分析现场数据的程序。

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