Applications of molecular dynamics simulation in studying shale oil reservoirs at the nanoscale: Advances, challenges and perspectives

IF 6.1 1区 工程技术 Q2 ENERGY & FUELS Petroleum Science Pub Date : 2025-01-01 Epub Date: 2024-09-27 DOI:10.1016/j.petsci.2024.09.023
Lu Wang , Yi-Fan Zhang , Run Zou , Yi-Fan Yuan , Rui Zou , Liang Huang , Yi-Sheng Liu , Jing-Chen Ding , Zhan Meng
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Abstract

The global energy demand is increasing rapidly, and it is imperative to develop shale hydrocarbon resources vigorously. The prerequisite for enhancing the exploitation efficiency of shale reservoirs is the systematic elucidation of the occurrence characteristics, flow behavior, and enhanced oil recovery (EOR) mechanisms of shale oil within commonly developed nanopores. Molecular dynamics (MD) technique can simulate the occurrence, flow, and extraction processes of shale oil at the nanoscale, and then quantitatively characterize various fluid properties, flow characteristics, and action mechanisms under different reservoir conditions by calculating and analyzing a series of MD parameters. However, the existing review on the application of MD simulation in shale oil reservoirs is not systematic enough and lacks a summary of technical challenges and solutions. Therefore, recent MD studies on shale oil reservoirs were summarized and analyzed. Firstly, the applicability of force fields and ensembles of MD in shale reservoirs with different reservoir conditions and fluid properties was discussed. Subsequently, the calculation methods and application examples of MD parameters characterizing various properties of fluids at the microscale were summarized. Then, the application of MD simulation in the study of shale oil occurrence characteristics, flow behavior, and EOR mechanisms was reviewed, along with the elucidation of corresponding micro-mechanisms. Moreover, influencing factors of pore structure, wall properties, reservoir conditions, fluid components, injection/production parameters, formation water, and inorganic salt ions were analyzed, and some new conclusions were obtained. Finally, the main challenges associated with the application of MD simulations to shale oil reservoirs were discussed, and reasonable prospects for future MD research directions were proposed. The purpose of this review is to provide theoretical basis and methodological support for applying MD simulation to study shale oil reservoirs.
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分子动力学模拟在纳米级页岩油储层研究中的应用:进展、挑战和展望
全球能源需求快速增长,大力开发页岩烃资源势在必行。提高页岩储层开发效率的前提是系统地阐明页岩油在普遍发育的纳米孔内的赋存特征、流动特性和提高采收率机理。分子动力学技术可以在纳米尺度上模拟页岩油的赋存、流动和开采过程,通过对一系列分子动力学参数的计算和分析,定量表征不同储层条件下的各种流体性质、流动特征和作用机理。然而,现有的页岩油层MD模拟应用综述不够系统,缺乏对技术挑战和解决方案的总结。因此,本文对近年来页岩油储层的MD研究进行了总结和分析。首先,讨论了不同储层条件和流体性质的页岩储层的力场和MD集合的适用性。总结了表征流体各种性质的微尺度MD参数的计算方法和应用实例。综述了MD模拟在页岩油赋存特征、流动特性和提高采收率机理研究中的应用,并阐明了相应的微观机理。对孔隙结构、储层条件、流体组分、注采参数、地层水、无机盐离子等影响因素进行了分析,得出了一些新的结论。最后,讨论了页岩油层流体动力学模拟应用面临的主要挑战,并对未来流体动力学研究方向提出了合理展望。为将MD模拟应用于页岩油储层研究提供理论依据和方法支持。
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来源期刊
Petroleum Science
Petroleum Science 地学-地球化学与地球物理
CiteScore
7.70
自引率
16.10%
发文量
311
审稿时长
63 days
期刊介绍: Petroleum Science is the only English journal in China on petroleum science and technology that is intended for professionals engaged in petroleum science research and technical applications all over the world, as well as the managerial personnel of oil companies. It covers petroleum geology, petroleum geophysics, petroleum engineering, petrochemistry & chemical engineering, petroleum mechanics, and economic management. It aims to introduce the latest results in oil industry research in China, promote cooperation in petroleum science research between China and the rest of the world, and build a bridge for scientific communication between China and the world.
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