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首页> 外文期刊>Energies >Hybrid Coupled Multifracture and Multicontinuum Models for Shale Gas Simulation by Use of Semi-Analytical Approach
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Hybrid Coupled Multifracture and Multicontinuum Models for Shale Gas Simulation by Use of Semi-Analytical Approach

机译:半解析法的页岩气模拟混合多裂隙和多谱系模型

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Combining the advantages of multicontinuum and multifracture representations provides an easy-to-use tool to adequately capture the characteristic of the multiscaled fracture system in shale gas reservoir. A hybrid model is established on the basis of simplified conceptual productivity assumption, where the matrix volume is divided into two sub-domains (triple-porosity model and dual-depletion flowing model) and the fracture volume is represented by discrete finite conductivity fracture. In addition, the mechanisms of instant desorption, viscous flow and dual-depletion in matrix are taken into account. The rate transient responses are then obtained by use of semi-analytical approach. Based on the model, type curves are plotted and verified by comparing with alternative reliable methods. Different flow regimes in shale gas reservoirs can be identified and detected. The Generalized Likelihood Uncertainty Estimation methodology, based on probabilistic aggregation theory, is employed to integrating those two productivity models together such that the production can be predicted more accurately. A field example is applied to validate the applicability of this new model. Finally, it is concluded that the proposed model can predict the rate and cumulative rate more easily and practically.
机译:结合多连续体和多裂缝表示法的优点,提供了一种易于使用的工具,可以充分捕获页岩气藏中多尺度裂缝系统的特征。在简化的概念生产率假设的基础上建立了一个混合模型,其中基质体积分为两个子域(三孔隙度模型和双耗竭流动模型),裂缝体积由离散的有限电导率裂缝表示。另外,考虑了基质中瞬时解吸,粘性流和双重消耗的机理。然后通过使用半分析方法获得速率瞬态响应。基于该模型,通过与其他可靠方法进行比较来绘制和验证类型曲线。页岩气藏中的不同流态可以被识别和检测。基于概率聚集理论的广义似然不确定性估计方法用于将这两个生产率模型集成在一起,以便可以更准确地预测产量。应用了一个现场示例来验证此新模型的适用性。最后,得出的结论是,该模型可以更容易,更实际地预测速率和累积速率。

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