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Estimation of adsorbed-phase density of methane in realistic overmature kerogen models using molecular simulations for accurate gas in place calculations

机译:利用分子模拟估算甲烷吸附相密度的甲烷在准确算法中的准确天然气算法

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Methane adsorption in the organic matrix (kerogen) of gas shales is an important factor in determining the storage of natural gas and volumetric calculations of gas in place. The pore system in shales is very heterogeneous, ranging from micropores, mesopores, and macropores, and the pore size affecting the adsorption behavior. For example, in micropores the proximity between opposite walls causes the enhancement of the interactions of methane with the surfaces, which affects adsorbate packing and density. Grand canonical Monte Carlo simulations were carried out to study methane adsorption, its density under confinement, and estimate the density of the adsorbed phase in realistic overmature kerogen models that account for the chemical functionality of the surfaces and pore size distribution of kerogens of such maturity. This will provide better estimates of fluids in place. It is demonstrated that errors in the adsorbed phase have a considerable impact on gas in place calculations. (C) 2017 Elsevier B.V. All rights reserved.
机译:气体Shales有机基质(Kerogen)中的甲烷吸附是确定天然气和容积计算的天然气储存的重要因素。 Shales中的孔系统非常异质,从微孔,中孔和大孔,以及影响吸附行为的孔径。例如,在微孔中,相对壁之间的接近程度导致甲烷与表面的相互作用的增强,这会影响吸附填料和密度。进行大规范蒙特卡罗模拟以研究甲烷吸附,其密度在禁闭下,并估计真实的过度成熟的Kerogen模型中吸附相的密度,该模型考虑了这种成熟度的kerogens的表面和孔径分布的化学功能。这将提供更好的液体估算物到位。结果表明,吸附相中的误差对天然气的误差有相当大的影响。 (c)2017 Elsevier B.v.保留所有权利。

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