Multiple Physicochemical Process-Coupled Numerical Simulation for CO2 Storage in Depleted Oil Reservoirs
作者:Feng Yang, Xin Du, Detang Lu · 发表于:SPE Journal · 年份:2025 · DOI:10.2118/225425-pa · 被引用次数:6 · 研究领域:CO2 Sequestration and Geologic Interactions、Enhanced Oil Recovery Techniques、Hydraulic Fracturing and Reservoir Analysis
Summary CO2 storage in depleted oil reservoirs plays a vital role in sequestering greenhouse gases and enhancing the recovery of remaining underground oil. However, this process exhibits complex behaviors, involving multiple physicochemical processes. Although existing simulators have been used to study CO2 storage, they have limitations in addressing the complexities involved, such as phase equilibrium, chemical reactions, and heat transfer. To address these limitations, we present the development of a novel numerical simulator for CO2 storage in depleted oil reservoirs. First, we derive the governing equations for phase equilibrium and the thermo-hydro-chemical (T-H-C)-coupled model, then outline in detail the corresponding solution method. We present several cases to validate the accuracy and reliability of the developed simulator, then apply the simulator to a case study of CO2 storage in depleted oil reservoirs to assess its practical application. Based on the simulation results, we analyze the evolutions of the flow field, CO2 storage efficiency, and crude oil recovery. In addition, we analyze the effects of key controlling factors, such as pressure difference, reservoir temperature, and well spacing, on CO2 storage efficiency and crude oil recovery. The results indicate that reasonably increasing the pressure difference between injection and production wells can enhance both CO2 storage and crude oil recovery. Low-temperature reservoirs are preferable for enhancing CO2...