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Streamline simulation of water-oil displacement in a heterogeneous fractured reservoir using different transfer functions

机译:使用不同传递函数的异质裂缝储层水油位移的简化模拟

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摘要

Main parts of oil and gas reserves are stored in fractured reservoirs. Simulation of multiphase flow in fractured reservoirs requires a large amount of calculations due to the complexity, reservoir scale and heterogeneity of the rock properties. The accuracy and speed of the streamline method for simulating hydrocarbon reservoirs at field scale make it more applicable than conventional Eulerian simulators using finite difference and finite element techniques. Conventional simulators for fractured reservoirs consume a great deal of time and expense and require powerful CPUs like supercomputers. This makes the development of a fast, powerful and precise simulation method of great importance. The present study was undertaken to develop a computational code as a streamline simulator to study waterflooding in a two-dimensional fractured reservoir with heterogeneous permeability using the Dual Porosity-Single Permeability (DPSP) model. In this simulator, the pressure equation is solved implicitly over an Eulerian grid and then the streamlines are generated using Pollock's semi-analytical method and are traced. At this point, the Time-Of-Flight (TOF) is developed and the saturation equations are mapped and solved explicitly along the streamlines. Next, the results are transferred back onto the Eulerian grid and the calculations are repeated until the simulation end time. In fractured reservoirs, the interaction between the matrix and fracture is included in the transfer functions. Transfer functions model fluid flow and production mechanisms between the matrix and fracture. They introduce source/sink equations between the matrix and fracture and they are distributed throughout the media. In the current study, a problem is simulated using streamline method and several important transfer functions. A new linear transfer function with a constant coefficient is introduced that is based on differences in water saturation between the matrix and fracture. The simulation results were then compared and a commercial software is applied to solve the same problem. The results of the streamline simulator were compared with those of the commercial software and showed appropriate accuracy for the newly introduced transfer function. The accuracy and efficiency of the streamline simulator for simulation of two-phase flow in fractured reservoirs using different transfer functions are confirmed and the results are verified.
机译:石油和天然气储量的主要部分储存在裂缝储层中。由于复杂性,储层规模和岩石特性的异质性,裂缝储存器中的多相流动的模拟需要大量的计算。用于在现场尺度下模拟烃储层的流线方法的精度和速度使得它比使用有限差分和有限元技术更适用于传统的欧拉模拟器。用于裂缝水库的传统模拟器消耗大量时间和费用,需要强大的CPU,如超级计算机。这使得开发快速,强大,精确的模拟方法非常重要。对本研究进行开发作为流线模拟器的计算码,以研究使用双孔隙率 - 单渗透率(DPSP)模型的异质渗透性的二维裂缝储存器中的水上渗透。在该模拟器中,压力方程在欧拉网格上隐含地解决,然后使用Pollock的半分析方法产生流线并进行跟踪。此时,开发了飞行时间(TOF),沿着流线明确地映射和解饱和方程。接下来,将结果转回欧拉网格,并重复计算直到模拟结束时间。在裂缝储存器中,基质和裂缝之间的相互作用包括在转移功能中。转移功能模型流体流动和基质与骨折之间的生产机制。它们在矩阵和骨折之间引入源/水槽方程,并且它们在整个介质中分布。在目前的研究中,使用Streamline方法和几个重要传递函数模拟问题。引入了具有恒定系数的新线性传递函数,其基于基质和裂缝之间的水饱和差异。然后比较仿真结果,并应用商业软件来解决同样的问题。与商业软件的结果进行了比较了流模拟器的结果,并对新引入的传递函数表示适当的准确性。确认了使用不同传递函数的裂缝储层模拟用于模拟两相流的精确模拟器的准确性和效率,并验证了结果。

著录项

  • 来源
    《Oil & gas science and technology》 |2018年第1期|共15页
  • 作者单位

    PhD Candidate of Petroleum Engineering School of Chemical Engineering Institute of Petroleum Engineering University of Tehran Tehran Iran;

    Professor of Chemical Engineering Institute of LNG College of Engineering University of Tehran Tehran Iran;

    Assistant professor of Mechanical Engineering Applied Multi-Phase Fluid Dynamics Laboratory School of Mechanical Engineering Iran University of Science and Technology Tehran Iran;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
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