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Critical review on the numerical modeling of in-situ microbial enhanced oil recovery processes

机译:对原位微生物增强型油回收过程数值建模的关键综述

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Due to its environment-friendliness and low operating cost, the microbial enhanced oil recovery (MEOR) technology has shown potential as an alternative to conventional enhanced oil recovery (EOR) techniques. In spite of its numerous benefits, MEOR is not widely implemented due to the uncertainties associated with field deployment. Numerical models are important tools for minimizing the uncertainties and optimizing the operating conditions. This review presents the status and progress on the application of numerical models in solving the shortcomings of the MEOR process. Numerical methods provide the kinetic models for describing bacterial growth, affected by reservoir conditions, such as temperature, pH, and salinity. Various MEOR technologies have also been investigated to explain the corresponding mechanisms and the effects of environmental parameters. The mathematical models for permeability reduction and relative permeability change are explained. Simulation studies for MEOR processes using biofilm, biopolymer, and biosurfactant are mainly discussed. Additionally, numerical models for biogenic gas production, hydrocarbon degradation and soluble polymer process are discussed. This review presents the advances in MEOR simulations with various mechanisms, and suggests a direction for future simulation researches.
机译:由于其环境友好性和较低的运营成本,微生物增强的采油(MEOR)技术表明了常规增强的采油(EOR)技术的替代方案。尽管有许多福利,但由于与现场部署相关的不确定性,Meor并未被广泛实施。数值模型是最大限度地减少不确定性并优化操作条件的重要工具。该审查介绍了数值模型在解决MEOR过程的缺点时应用的状态和进展。数值方法提供了用于描述受储层条件影响的细菌生长的动力学模型,例如温度,pH和盐度。还研究了各种Meor技术,以解释相应的机制和环境参数的影响。解释了用于渗透性降低和相对渗透性变化的数学模型。主要讨论了使用生物膜,生物合并和生物活性剂的Meor过程的模拟研究。另外,讨论了生物化气体生产,烃劣化和可溶性聚合物方法的数值模型。该审查提出了具有各种机制的MEOR模拟的进步,并提出了未来模拟研究的方向。

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