首页> 外文期刊>Computers & geosciences >WTFM, software for well test analysis in fractured media combining fractional flow with double porosity and leakance approaches
【24h】

WTFM, software for well test analysis in fractured media combining fractional flow with double porosity and leakance approaches

机译:WTFM,用于在裂隙介质中进行试井分析的软件,将分流与双重孔隙率和泄漏方法相结合

获取原文
获取原文并翻译 | 示例
           

摘要

The identification of the hydraulic characteristics and transport properties of fractured reservoirs requires the development of specific models that account for (i) the medium heterogeneity, e.g. the presence of major conductive fractures that delimit capacitive matrix blocks, with weakly open, dead end or isolated fractures, and (ii) for the geometrical arrangement of the major conductive fractures network, which dominates the flow at the scale of the well tests.Well Tests in Fractured Media (WTFM) software takes into account these two main features by combining radial flow generalized to fractional dimension, with the theory of double-porosity, including diffusivity in the second porosity, transient inter-porosity flow and inter-porosity skin effect, and with leakance. The implementation of this nD model, with n fractional, extends usefully the domain of application of the usual 1D/2D/3D double-porosity/leakance models for a large range of connection levels of fracture networks. Although the fractures geometry and properties are not considered one by one, or by directional families, they are taken into account by averaged properties and by the impact that the whole network has on the hydrodynamic behaviour. The accuracy of the coupled transient behaviours analysis is augmented by taking into account wellbore storage and skin effects. All together, the use of these different options allows matching a wide range of pumping test curves, characteristics of distinctive behaviours, with a limited number of parameters. Distinctive well test experiments, in both sedimentary and crystalline rocks, are presented for enlightening how the pertinent use of the model options improves predictions. (C) 2004 Elsevier Ltd. All rights reserved.
机译:对裂缝性储层的水力特性和输运特性的识别要求开发特定模型来解释(i)介质非均质性,例如界定电容矩阵块的主要导电裂缝的存在,这些裂缝具有弱张开,死角或孤立的裂缝,并且(ii)主要导电裂缝网络的几何排列,在测井规模上占主导地位。破裂介质(WTFM)软件中的测试通过将广义的径向流与分数维相结合,结合了双重孔隙理论,包括第二孔隙的扩散率,瞬时孔隙间流动和孔隙间表皮效应,从而考虑到了这两个主要特征,并且有泄漏。具有n个分数的nD模型的实现有效地扩展了通常的1D / 2D / 3D双孔隙率/泄漏模型在裂缝网络的连接范围内的应用范围。尽管裂缝的几何形状和特性并没有一一或按方向族来考虑,但平均性能以及整个网络对流体力学行为的影响都将它们考虑在内。通过考虑井眼存储和皮肤效应,可以提高耦合瞬态行为分析的准确性。综上所述,这些不同选项的使用允许使用有限数量的参数匹配各种抽气测试曲线,独特行为的特征。提出了在沉积岩和结晶岩中进行的独特的试井实验,以启发模型选项的相关使用如何改善预测。 (C)2004 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号