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首页> 外文期刊>Journal of natural gas science and engineering >A new method for production data analysis in shale gas reservoirs
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A new method for production data analysis in shale gas reservoirs

机译:页岩气水库生产数据分析的一种新方法

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For most shale gas wells, frequent shut-ins and nozzle size changing often occur, leading to significant discontinuities in production data. This study proposes a new production data analysis (PDA) method to address the abrupt change issue based on the virtual equivalent time. With the virtual equivalent time, the qualities of type curve matching and production data analysis can be improved when there are abrupt changes in production data. The mathematical model with a variable flow rate provides new definitions of normalized pseudopressure and pseudotime with consideration of the pressure dependent permeability for multi-fractured horizontal wells in shale gas reservoirs. Subsequently, the virtual equivalent time is calculated based on the average formation pressure to consider the abrupt changes of the production data, which also can reduce the time of superposition principle calculations. Duhamel's principle, Laplace transform and inversion, and Newman's method are employed to solve the PDA model, which is validated by analytical and numerical solutions. Then sensitivity analysis are performed on the dimensionless constrained axial modulus, which shows that the larger the dimensionless constrained axial modulus, the lower and later the curves. Finally, a field case study is carried out using the proposed method. The results show that by using the virtual equivalent time, the matching qualities are good, and the issue caused by abrupt changes is satisfactorily addressed. Therefore, it has great potential for estimating the formation parameters and predicting the well production performance more effectively and practically.
机译:对于大多数页岩气井,经常发生频繁的关闭和喷嘴尺寸,通常发生在生产数据中的显着不连续性。本研究提出了一种新的生产数据分析(PDA)方法,用于根据虚拟等效时间解决突发变化问题。通过虚拟等效时间,当生产数据突然变化时,可以提高类型曲线匹配和生产数据分析的质量。具有可变流量的数学模型提供了归一化伪模度和假型的新定义,并考虑了页岩气藏的多断裂水平孔的压力依赖性渗透性。随后,基于平均形成压力来计算虚拟等效时间,以考虑生产数据的突然变化,这也可以减少叠加原理计算的时间。 Duhamel的原则,拉普拉斯变换和反演,以及纽曼的方法来解决PDA模型,由分析和数值解决方案验证。然后对敏感性分析进行敏感性分析,其在无量纲限制的轴向模量上进行,这表明无量纲约束的轴向模量,下层和后面的曲线。最后,使用该方法进行现场案例研究。结果表明,通过使用虚拟等效时间,匹配质量很好,并且突然变化引起的问题是令人满意的解决。因此,它具有估计地层参数的巨大潜力,并且更有效地且实际上更有效地预测了井生产性能。

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