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A Connectivity Model for the Numerical Simulation of Microgel Flooding in Low-Permeability Reservoirs

Tao Wang Haiyang Yu Jie Gao Fei Wang Xinlong Zhang Hao Yang Guirong Di Pengrun Wang

Fluid Dynamics & Materials Processing2025,Vol.21Issue(5):P.1191-1200,10.
Fluid Dynamics & Materials Processing2025,Vol.21Issue(5):P.1191-1200,10.DOI:10.32604/fdmp.2025.058865

A Connectivity Model for the Numerical Simulation of Microgel Flooding in Low-Permeability Reservoirs

Tao Wang 1Haiyang Yu 2Jie Gao 3Fei Wang 3Xinlong Zhang 4Hao Yang 3Guirong Di 3Pengrun Wang3

作者信息

  • 1. State Key Laboratory of Petroleum Resources and Prospecting,China University of Petroleum-Beijing,Beijing,102249,China China Oilfield Service Limited Production Optimization R&D Institute,Tianjin,300459,China
  • 2. State Key Laboratory of Petroleum Resources and Prospecting,China University of Petroleum-Beijing,Beijing,102249,China
  • 3. China Oilfield Service Limited Production Optimization R&D Institute,Tianjin,300459,China
  • 4. School of Petroleum Engineering,Yangtze University,Wuhan,430100,China
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摘要

关键词

Connectivity model/chemical enhanced oil recovery/microgel flooding/numerical reservoir simulation/fractured reservoirs

分类

能源科技

引用本文复制引用

Tao Wang,Haiyang Yu,Jie Gao,Fei Wang,Xinlong Zhang,Hao Yang,Guirong Di,Pengrun Wang..A Connectivity Model for the Numerical Simulation of Microgel Flooding in Low-Permeability Reservoirs[J].Fluid Dynamics & Materials Processing,2025,21(5):P.1191-1200,10.

基金项目

supported by the National Natural Science Foundation project“Micro-Scale Effect of Oil-Gas Flow and the Mechanism of Enhancing Shale Oil Recovery by Natural Gas Injection”(No.52074317)。 (No.52074317)

Fluid Dynamics & Materials Processing

1555-256X

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