首页> 外文期刊>Transport in Porous Media >Simulation of Gas Production from Multilayered Hydrate-Bearing Media with Fully Coupled Flow, Thermal, Chemical and Geomechanical Processes Using TOUGH + Millstone. Part 1: Numerical Modeling of Hydrates
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Simulation of Gas Production from Multilayered Hydrate-Bearing Media with Fully Coupled Flow, Thermal, Chemical and Geomechanical Processes Using TOUGH + Millstone. Part 1: Numerical Modeling of Hydrates

机译:使用坚韧+磨石的全耦合流动,热,化工和地质力学过程的多层水合物介质仿真气体生产。第1部分:水合物的数值建模

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摘要

TOUGH+Millstone has been developed for the analysis of coupled flow, thermal and geomechanical processes associated with the formation and/or dissociation of CH4-hydrates in geological media. It is composed of two constituent codes: (a) a significantly enhanced version of the TOUGH+HYDRATE simulator, V2.0, that accounts for all known flow, physical, thermodynamic and chemical processes associated with the behavior of hydrate-bearing systems undergoing changes and includes the most recent advances in the description of the system properties, coupled seamlessly with (b) Millstone V1.0, a new code that addresses the conceptual, computational and mathematical shortcomings of earlier codes used to describe the geomechanical response of these systems. The capabilities of TOUGH+Millstone are demonstrated in the simulation and analysis of the system flow, thermal and geomechanical behavior during gas production from a realistic complex offshore hydrate deposit. In the first paper of this series, we discuss the physics underlying the T+H hydrate simulator, the constitutive relationships describing the physical, chemical (equilibrium and kinetic) and thermal processes, the states of the CH4+H2O system and the sources of critically important data, as well as the mathematical approaches used for the development of the of mass and energy balance equations and their solution. Additionally, we provide verification examples of the hydrate code against numerical results from the simulation of laboratory and field experiments.
机译:已经开发出坚韧的+磨石用于分析与地质介质中CH4水合物的形成和/或解离相关的耦合流动,热和地理工程。它由两个组成代码组成:(a)对于与正在进行变化的水合物系统行为相关的所有已知的流动,物理,热力学和化学过程的韧性+水合物模拟器,V2.0的显着增强版本。包括在系统性质描述中的最新进步,与(b)毫米v1.0无缝耦合,这是一种解决较早代码的概念,计算和数学缺点的新代码,用于描述这些系统的地质力学响应的概念性,计算和数学缺点。韧性+磨石的能力在仿真和分析中,从逼真的近海水合物沉积物的天然气生产过程中的系统流动,热和地理行为的仿真和分析。在本系列的第一个论文中,我们讨论了T + H水合物模拟器的物理学,构成关系描述了物理,化学(均衡和动力学)和热过程,CH4 + H2O系统的状态和批判性的来源重要数据,以及用于开发质量和能量平衡方程及其解决方案的数学方法。另外,我们提供了利用实验室和现场实验模拟的数值结果的水合物代码的验证例。

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