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Steady-state optimization model and practical design of the fracture network system in tight sand gas reservoirs

机译:致密砂岩气藏裂缝网络系统稳态优化模型及实用设计

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Based on steady-state seepage theory in porous media and the Galerkin method, a finite element model of seepage field in a stimulated reservoir volume of a horizontal well was established. The relationship between fracture conductivity and production under different fractured drainage volumes was studied. For shale gas reservoir, the productivity will increase as the fractured drainage volume enlarges. However for tight sand gas reservoir, this study revealed that the fractured drainage volume should be maintained in the mid-small scale (0.1 <= FCI <= 0.25) with highly conductive main fractures. For certain fracture network morphology, there exists a critical value or optimal value of SRV curve. The production increase slows down when SRV exceeds its critical value. Cluster spacing and number of clusters for horizontal well fracturing can be determined by critical value of SRV and FCI value. The paper studied the operational conditions for the creation of small and medium-scale fracture network. Firstly, analytical solution of pressure inside the fracture is derived from fracture dynamics of rocks. Pump rate of fracturing fluid, viscosity, rock dynamic fracture toughness, elastic modulus, Poisson's ratio, in-situ stress, natural fracture parameters are input parameters to this analytical solution. Optimized pump rate for small to medium scale fracture network was derived from the dynamic expanding condition of fracture network. (C) 2015 Elsevier B.V. All rights reserved.
机译:基于多孔介质稳态渗流理论和Galerkin方法,建立了水平井增产油藏渗流场的有限元模型。研究了不同裂缝排水量下裂缝电导率与产量的关系。对于页岩气储层,随着裂缝排泄量的增加,生产率将提高。然而,对于致密砂岩气藏,该研究表明,裂缝性排水量应保持在中小规模(0.1 <= FCI <= 0.25)且具有高传导性主裂缝。对于某些裂缝网络形态,SRV曲线存在临界值或最优值。当SRV超过其临界值时,产量增加会减慢。水平井压裂的簇间距和簇数可以通过SRV的临界值和FCI值来确定。本文研究了创建中小型裂缝网络的操作条件。首先,从岩石的断裂动力学中得出裂缝内部压力的解析解。压裂液的泵送速率,粘度,岩石动态断裂韧度,弹性模量,泊松比,原位应力,自然断裂参数是该分析解决方案的输入参数。从裂缝网络的动态扩展条件出发,得出中小规模裂缝网络的最佳泵速。 (C)2015 Elsevier B.V.保留所有权利。

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