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Modelling hydraulic fracturing in a complex-fracture-network reservoir with the DDM and graph theory

机译:用DDM和图论模拟复杂骨折网储层中的液压压裂

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Shale gas reservoirs usually contain complex natural fracture (NF) networks. Numerical simulations of NF networks in an infinite, discontinuous medium require large computational resources to store the coordinates, intersections and paths of the fractures. To reduce the computational time and save computer memory, NF networks and the expected hydraulic fracture (HF) networks are both mapped into graphs based on graph theory. A modified displacement discontinuity method (DDM) is used to simulate the deformation and propagation of HFs. The results show that the HF networks are affected primarily by the NF networks, the in situ stress and the fracturing parameters. A higher net pressure leads to a wider but shorter band of HF networks, and a greater stress contrast leads to a longer but narrower band of HF networks. A dimensional parameter psi is defined by the combination of the net pressure and the stress contrast. As psi increases, the stimulated reservoir volume (SRV) increases. The stress interaction among HFs in a fractured medium is similar to that in an isotropic homogeneous medium but is more complex because of the influence of NFs. (c) 2017 Elsevier B.V. All rights reserved.
机译:页岩气藏通常含有复杂的自然骨折(NF)网络。在无限的不连续介质中NF网络的数值模拟需要大的计算资源来存储骨折的坐标,交叉点和路径。为了减少计算时间并保存计算机存储器,NF网络和预期的液压裂缝(HF)网络既基于图论映射到图形。修改的位移不连续性方法(DDM)用于模拟HFS的变形和传播。结果表明,HF网络主要受到NF网络的影响,原位应力和压裂参数。较高的净压力导致更宽但更短的HF网络,并且更大的应力对比度导致HF网络的更长但更窄的带。尺寸参数PSI由净压力和应力对比的组合来定义。随着PSI增加,刺激的储存量(SRV)增加。裂缝介质中HFS之间的应力相互作用与各向同性均相培养基中的应力相互作用类似,但由于NFS的影响,更复杂。 (c)2017 Elsevier B.v.保留所有权利。

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