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Gas tracer transport through a heterogeneous fracture zone under two phase flow conditions: Model development and parameter sensitivity

机译:气体示踪剂在两相流条件下通过非均质裂缝带的传输:模型开发和参数敏感性

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Large amounts of gas can result from anaerobic corrosion of metals and from chemical and biological degradation of organic substances in underground repositories for radioactive waste. Gas generation may lead to the formation of a gas phase bubble and to the migration of radioactive gaseous species. Transport occurs in, at least, in two forms: (1) gas bubble, migration is controlled by advection, dispersion and diffusion in the gas phase, and (2) within water pockets, the dissolved species migrate mainly by diffusion. We consider a two-dimensional system representing an isolated heterogeneous fractured zone. A dipole gas flow field is generated and gas tracers are injected. The delay in the breakthrough curves is studied. A simple method is used to solve the gas species transport equations in multiphase conditions. This method is based on a formal analogy between the equations of gas transport in a two phase system and the equations of solute tracer transport in water saturated systems. We perform a sensitivity analysis to quantify the relevance of the various transport mechanisms. We find that gas tracer migration is very sensitive to gas tracer solubility, which affects gas tracer transport of both mobile and immobile zones, and shows high sensitivity to diffusion in the gas phase, to heterogeneity and to gas pressure, but the largest sensitivity was observed with respect to injection borehole properties, i.e. borehole volume and water filled fraction.
机译:金属的厌氧腐蚀以及放射性废物地下储存库中有机物质的化学和生物降解可能产生大量气体。气体的产生可能导致气相气泡的形成并导致放射性气态物质的迁移。迁移至少以两种形式发生:(1)气泡,迁移受气相中的对流,分散和扩散控制,(2)在水囊内,溶解的物质主要通过扩散迁移。我们考虑一个二维系统,它代表一个孤立的非均质裂缝带。产生偶极子气流场,并注入气体示踪剂。研究了突破曲线的延迟。一种简单的方法用于求解多相条件下的气体物种迁移方程。该方法基于两相系统中气体输运方程与水饱和系统中溶质示踪剂输运方程之间的形式类比。我们进行敏感性分析以量化各种运输机制的相关性。我们发现,气体示踪剂的迁移对气体示踪剂的溶解度非常敏感,这会影响气体示踪剂在活动区和非活动区的运输,并且对气相扩散,非均质性和气压显示出很高的敏感性,但是观察到的最大敏感性关于注入井眼特性,即井眼体积和注水率。

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