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Investigation of CO2/N2 injection in tight oil reservoirs with confinement effect

机译:监禁效果紧密油藏中CO2 / N2注射的研究

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This paper investigates the CO2/N2 injection process in tight oil reservoirs considering the confinement effect. To study the microscopic physical mechanisms, the confinement effect is characterized by properties shift and capillarity and introduced into the flash calculation to obtain the phase equilibrium of mixture fluids (tight oil/CO2/N2) in tight porous media. The results indicate that the injected nitrogen gas could effectively maintain the reservoir pressure, while it also weakens the effects of the CO2 injection recovery mechanisms, notably diffusivity and viscosity reduction. In addition, a dual‐pore tight oil reservoir model is set up to investigate the CO2/N2 injection with ultra‐low permeability and hydraulic fracturing. The basic CO2 injection parameters are optimized by the orthogonal method. Based on CO2 injection process, three injection schemes of CO2/N2 injection, which are mixed‐gas injection, CO2‐alternating‐N2 (CAN) injection, and N2‐alternating‐CO2 (NAC) injection, were investigated and a comparative analysis was made for the pressure distribution, CO2 mole fraction distribution, and cumulative oil production. Based on this analysis, the CAN injection process proved to be the best injection scheme. A parametric analysis further suggested that the nitrogen gas injection rate was the most important factor. Besides, the effect of gravity drainage, reservoir permeability, nature fractures, and permeability heterogeneity on the oil production of CAN injection process were also investigated in detail. The results show that tight oil reservoir with better vertical connectivity, poor fracture growth, and higher heterogeneity is more favorable for the CO2/N2 injection process.
机译:本文研究了考虑到监禁效果的紧密储油器中的CO2 / N2注射过程。为了研究微观物理机制,限制效果的特征在于属性移位和毛细血管,并引入闪光灯计算,以在紧密多孔介质中获得混合液(紧密油/ CO2 / N2)的相平衡。结果表明,注入的氮气可以有效地保持储层压力,而它也削弱了CO2注射回收机制的影响,特别是扩散性和粘度降低。此外,建立了双孔拧紧油储液模型,以研究具有超低渗透性和液压压裂的CO2 / N2注射。基本的CO2注射参数通过正交方法进行了优化。基于CO 2注射过程,研究了CO 2 / N 2注射的三种注射方案,其是混合气体注射,CO 2交替-N2(CAN)注射和N 2交交替-CO2(NAc)注射,并进行比较分析用于压力分布,CO2摩尔分量分布和累积油生产。基于该分析,CAN注射过程被证明是最好的注射方案。参数分析进一步表明氮气注入率是最重要的因素。此外,还详细研究了重力引流,储层渗透性,自然骨折和渗透性异质性的影响。结果表明,具有更好的垂直连通性,骨折生长和更高的异质性具有更好的储油液,对CO2 / N2注射过程更有利。

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