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储层条件下气与油中稀有气体的元素及同位素分馏:热扩散的影响

Elemental and isotopic fractionation of noble gases in gas and oil under reservoir conditions: Impact of thermodiffusion.

作者信息

Hoang Hai, Nguyen Phuc, Pujol Magali, Galliero Guillaume

机构信息

Institute of Fundamental and Applied Sciences, Duy Tan University, 10C Tran Nhat Duat Street, District 1, 700000, Ho Chi Minh City, Vietnam.

Ho Chi Minh University of Science, 227 Nguyen Van Cu, District 5, 7000, Ho Chi Minh City, Vietnam.

出版信息

Eur Phys J E Soft Matter. 2019 May 17;42(5):61. doi: 10.1140/epje/i2019-11823-x.

Abstract

Noble gases, and the way they fractionate, is a promising approach to better constrain origin, migration and initial state distributions of fluids in gas and oil reservoirs. Thermodiffusion, is one of the phenomena that may lead to isotope and elemental fractionation of noble gases. However, this effect, assumed to be small, has not been quantified, nor measured, in oil and gas under reservoir conditions. Thus, in this work, molecular dynamics simulations have been performed to compute the thermal diffusion factors of noble gases, in a dense gas (methane) and in an oil (n-hexane) under high pressures. Interestingly, it has been found that thermal diffusion factors, associated to both isotopic (Ar, Ar) and elemental fractionations of noble gases (He, Ne, Ar, Kr and Xe) in gas and oil, could be expressed as linear functions of the reduced masses. Regarding the amplitude of the phenomena, it has been found that, in a stationary 1D oil or gas fluid column, thermodiffusion due to a typical geothermal gradient has an impact on noble gas isotopic and elemental fractionation which is of the same order of magnitude than gravity segregation, but opposite in sign. In addition, the relative impact of thermodiffusion on isotopic and elemental fractionations depends on the fluid type which is another interesting feature. Thus, these first numerical results on isotopic and elemental fractionation of noble gases by thermodiffusion in simple pure gas and oil emphasize their interest as natural tracers that could be used to improve the pre-exploitation description of oil and gas reservoirs.

摘要

稀有气体及其分馏方式是一种很有前景的方法,可用于更好地限制油气藏中流体的来源、运移和初始状态分布。热扩散是可能导致稀有气体同位素和元素分馏的现象之一。然而,在油藏条件下的油气中,这种被认为很小的效应尚未被量化或测量。因此,在这项工作中,进行了分子动力学模拟,以计算在高压下致密气体(甲烷)和油(正己烷)中稀有气体的热扩散因子。有趣的是,已发现与气体和油中稀有气体的同位素(Ar、Ar)和元素分馏(He、Ne、Ar、Kr和Xe)相关的热扩散因子可以表示为折合质量的线性函数。关于该现象的幅度,已发现在静止的一维油或气体流体柱中,典型地热梯度引起的热扩散对稀有气体同位素和元素分馏的影响与重力分异具有相同的数量级,但符号相反。此外,热扩散对同位素和元素分馏的相对影响取决于流体类型,这是另一个有趣的特征。因此,这些关于简单纯气体和油中热扩散导致稀有气体同位素和元素分馏的首批数值结果强调了它们作为天然示踪剂的价值,可用于改进油气藏开采前的描述。

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