Heat Dissipation Modeling of In-Situ Conversion Process of Oil Shale

Atif Zafar, Yuliang Su, Wendong Wang, S. G. Alam, Danish Khan, M. Yasir, A. AlRassas, I. Ahmad
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引用次数: 1

Abstract

In-situ conversion of process of oil shale has been technically proven as a pilot field project. Gradually heating the reservoir by using subsurface electric heaters converts the oil shale reservoir kerogen into oil, gas and other producible components. This process also enhances the internal energy of the porous media as well as the subsurface fluid. Heat is transmitted in the reservoir within each fluid by different processes i.e. , due to the flow of fluid called advective process, and due to molecular diffusion where dispersive and diffusive processes take place. Heat transfer through conduction and convection mechanisms in the porous media are modeled mathematically and numerically incorporating the advective, dispersive and diffusive processes in the reservoir. The results show the production of oil and gas as a result of conversion of kerogen due to modeled heat dissipation.
油页岩原位转化过程的散热模拟
油页岩原位转化工艺已作为中试项目在技术上得到了验证。利用地下电加热器对储层进行逐步加热,将油页岩储层干酪根转化为油、气和其他可生产组分。这一过程也提高了多孔介质和地下流体的内能。热通过不同的过程在每一种流体的储层中传递,即由于流体的流动(称为平流过程)和由于分子扩散(发生弥散和扩散过程)。结合储层中的平流、弥散和扩散过程,对多孔介质中的传导和对流传热进行了数学和数值模拟。结果表明,油气的生产是由于模拟的热耗散导致干酪根转化的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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