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首页> 外文期刊>Energy sources. Part A, Recovery, utilization, and environmental effects >Inverse Fracture Model Integrating Fracture Statistics And Well-testing Data
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Inverse Fracture Model Integrating Fracture Statistics And Well-testing Data

机译:结合了裂缝统计和试井数据的逆裂缝模型

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摘要

Heterogeneity and poor connectivity of fractures make it difficult to characterize fracture networks and predict flow behavior on them. Previous studies have introduced inversion models integrating the observed pressure data to describe flow patterns. However, they could not consider the statistical properties of fractures because the models are based on regular lattice or continuum approaches. A new inverse fracture model, which simultaneously integrates fracture characteristics, fluid flow, and solute transport data, is proposed. Discretization for the fracture-occurrence points makes it possible to incorporate fracture properties in the inversion. Fluid flow is implemented by the cubic law, and a semi-analytical method is used to include the solute transport data due to its efficient performance. The model can interpret the characteristics of the geometry and conductivity between wells within fractured reservoirs, since the inverse, fracture network not only has the same fracture characteristics as observed data, but also reproduces the fluid flow and solute transport data. It is demonstrated that the fracture network that is developed makes responses for additional flow and transport predicted within a reasonable error range.
机译:裂缝的非均质性和差的连通性使其难以表征裂缝网络并预测裂缝的流动行为。先前的研究已经引入了反演模型,该模型整合了观测到的压力数据来描述流动模式。但是,他们无法考虑裂缝的统计特性,因为这些模型基于规则的格网或连续介质方法。提出了一种新的反裂缝模型,该模型同时整合了裂缝特征,流体流动和溶质运移数据。裂缝出现点的离散化使得可以将裂缝属性纳入反演中。流体流动是通过三次定律实现的,并且由于其高效的性能,因此使用半分析方法来包括溶质传输数据。该模型可以解释裂缝性储层中井间几何形状和电导率的特征,因为逆裂缝网络不仅具有与观测数据相同的裂缝特征,而且还可以再现流体流量和溶质运移数据。可以证明,所开发的裂缝网络可以在合理的误差范围内对额外的流量和运移做出响应。

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