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注蒸汽热采稠油油藏数值模拟自适应网法计算软件的设计开发
引用本文:王晓宏,贾江涛,施安峰,罗海山,吴斌. 注蒸汽热采稠油油藏数值模拟自适应网法计算软件的设计开发[J]. 计算机应用与软件, 2012, 29(8): 17-20
作者姓名:王晓宏  贾江涛  施安峰  罗海山  吴斌
作者单位:中国科学技术大学热科学和能源工程系 安徽合肥230026
基金项目:国家自然科学基金项目,中国科学院知识创新工程重大项目,国家高技术研究发展计划项目
摘    要:注蒸汽热采稠油是一个带有相变的多孔介质中多相流动问题。利用自适应网格法动态追踪油藏中的温度和饱和度锋面,以大幅度提高计算速度。在对渗透率空间分布不均匀、油藏区域分布不同种类输运性质岩石、裂缝-孔隙双重介质、非规则边界及内部含有断层油藏等复杂地层注蒸汽热采稠油问题开展自适应网格法的研究基础上,自主开发了注蒸汽热采稠油油藏数值模拟自适应网格法计算软件。该软件具有较高的计算精度和稳定性,可满足科研生产需求。

关 键 词:注蒸汽热采稠油  油藏数值模拟  多相渗流  自适应网格法  软件开发

DESIGNING AND DEVELOPING AMR SOFTWARE PACKAGE FOR RESERVOIR NUMERICAL SIMULATION INTHERMAL RECOVERY OF HEAVY OIL BY STEAM INJECTION
Wang Xiaohong , Jia Jiangtao , Shi Anfeng , Luo Haishan , Wu Bin. DESIGNING AND DEVELOPING AMR SOFTWARE PACKAGE FOR RESERVOIR NUMERICAL SIMULATION INTHERMAL RECOVERY OF HEAVY OIL BY STEAM INJECTION[J]. Computer Applications and Software, 2012, 29(8): 17-20
Authors:Wang Xiaohong    Jia Jiangtao    Shi Anfeng    Luo Haishan    Wu Bin
Affiliation:Wang Xiaohong Jia Jiangtao Shi Anfeng Luo Haishan Wu Bin(Department of Thermal Science and Energy Engineering,University of Science and Technology of China,Hefei 230026,Anhui,China)
Abstract:Thermal recovery of heavy crude oil by steam injection is a multi-phase flow problem in porous media with phase-change.Adaptive mesh refinement(AMR) technique is applied in the article to dynamically track the temperature and the saturations fronts in reservoir in order to significantly improve the computation speed.An AMR software package for reservoir numerical simulation in thermal recovery of heavy crude oil by steam injection has been developed independently,which is on the basis of studying the employment of AMR on the issue of thermal recovery of heavy crude oil by steam injection in complex strata such as the permeability spatial variations,the distribution of rock-types in different transport properties in reservoir region,the fractured-porous dual media,the irregular boundary as well as the interior faulted reservoir,etc.This software package has preferable computation precision and numerical stability to meet the demands of scientific and engineering research.
Keywords:Thermal recovery of heavy oil by steam injection Reservoir numerical simulation Multi-phase fluid flow Adaptive mesh refinement Software development
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