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Development and Application of Type Curves for Pressure Transient Analysis of Multiple Fractured Horizontal Wells in Shale Gas Reservoirs

机译:岩体储层多次断裂水平井压力瞬态曲线型曲线的开发与应用

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Horizontal drilling and hydraulic fracturing is necessary to reach economical success in shale gas reservoirs.PTA for shale gas reservoirs requires comprehensive understanding related to nonlinear gas flow process as well as hydraulic fracture properties. Even though significant progresses made in the past few years,there appears to be a lack of information regarding the characterization of shale gas formations.A major purpose of this study is to demonstrate how this issue may be addressed by pressure transient analysis for multiple fractured horizontal wells in shale gas reservoirs.Extensive numerical simulations were conducted to model transient pressure behavior of a fractured horizontal well and applied the results to well test analysis in shale gas reservoirs.The pressure transient response for a horizontal well with transverse multiple fractures is controlled by many of important fracture properties and nonlinear flow processes.This paper presents a comprehensive reservoir simulation model to investigate the characteristics of pressure transient responses under the influences of hydraulic fracture properties and nonlinear gas flow mechanism.Factors considered in this study include the number of hydraulic fractures,fracture half-length, fracture spacing,adsorption,non-Darcy flow,and Klinkenberg effect under reservoir flow condition as well as skin effect.The numerical simulations for nonlinear gas flow provided various type curves in terms of dimensionless pseudopressure and time for transient pressure responses in fractured horizontal production wells.Results from type-curve matching for synthetic pressure data in shale gas reservoirs demonstrate that the conventional analysis approach may still be applicable for analysis of shale gas reservoirs.The results can be used for quantitative studies of transient gas flow behavior and determination of formation properties.
机译:水平钻孔和液压压裂是在页岩气储层中达到经济成功所必需的页岩气水库需要全面了解非线性气体流程以及液压断裂性能。尽管在过去几年中取得了重大进展,但似乎缺乏有关页岩气体形成表征的信息。本研究的主要目的是展示如何通过对水平的多个破裂的压力瞬态分析来解决这个问题页岩气储层中的井。进行扩张数值模拟,以模拟破碎水平井的瞬态压力行为,并将结果应用于页岩气藏的井试验分析。用横向多重骨折的水平井的压力瞬态响应被许多控制重要的骨折性能和非线性流动工艺。本文提出了一种综合储层模拟模型,以研究液压断裂性能和非线性气体流动机理的影响下的压力瞬态反应特性。本研究中考虑的因素包括液压骨折的数量,骨折半le储层流动条件下的NGTH,骨折间距,吸附,非达西流动和Klinkenberg效应以及皮肤效应。非线性气体流动的数值模拟在裂缝水平裂缝中的瞬态压力响应的无量纲伪模型和时间方面提供了各种曲线生产井。来自页岩气藏的合成压力数据类型曲线匹配的结果表明,传统的分析方法仍可适用于页岩气藏的分析。结果可用于瞬态气体流动行为的定量研究和测定形成性质。

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