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Importance of Fabric on the Production of Gas Shales

机译:织物对燃气宝的重要性

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The heterogeneity and complexity of gas shales cause substantial and often inexplicable variability in the production histories of gas wells.A major factor contributing to this variability is the microfabric of the matrix and the fracture network of the reservoir.It is widely postulated,although not proven,that the gas production from shales is controlled principally by Darcy flow through the fracture system and the matrix is considered important principally for gas storage.In order to gain insight and test the relative importance of fracture spacing and matrix diffusion/flow on the production of gas shales,we have developed a 2-dimensional numerical simulation model,which considers the flow of gas through both the shale matrices and the fractures for varying fabrics utilising experimental data obtained from a variety of important gas shales.The results of initial,constant parameter,numerical simulations showed that for a wide range of relative fracture permeability,matrix permeability/diffusivity and fracture spacing,the productivity of a gas shale reservoir is dependent on matrix diffusion rates.The diffusion rates and stress dependent fracture permeability data when integrated into the numerical simulator can be tested against measured production histories leading to more accurate production forecasts of new reservoirs and optimisation of field design.
机译:异质性和气体的页岩原因在气体的生产历史大量和经常莫名其妙的变异性的复杂性wells.A促成这一可变性基质和reservoir.It的裂缝网络的超细广泛假定主要因素,尽管没有证明,从Shales的气体生产主要由达西流经通过骨折系统控制,基质主要是主要用于储气系统,以获得洞察力并测试骨折间距和矩阵扩散/流量的相对重要性Gas Shales,我们开发了一种二维数值模拟模型,其通过页岩矩阵和用于不同织物的裂缝,利用从各种重要的气体Hales获得的实验数据来考虑变化的织物。初始,恒定参数的结果,数值模拟显示,对于各种相对骨折渗透性,基质渗透率/扩散性和断裂间距,气体页岩储层的生产率取决于基质扩散速率。可以测试在数值模拟器中集成时的扩散速率和应力依赖性易燃能数据可以针对测量的生产历史,导致更准确的新的生产预测储层与现场设计优化。

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