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Development of a simulation-optimization model for multiphase systems in the subsurface: a challenge to real-world simulation-optimization

机译:开发地下多相系统的仿真优化模型:对现实世界中仿真优化的挑战

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The main purpose of this paper is to demonstrate the capability of a new simulation-optimization model especially tailored to investigate the optimal management strategy of a closed coal mine in the Ruhr, Germany. This paper deals with the multiphase/multicomponent flow simulation; the optimization model (simulated annealing); the mesh generation function; the coupling of them; and the use of a parallel computer. Firstly, a mesh generation function is included in the total procedure for the modelling of complex system configurations often required when the real-world problem is dealt with. The multiphase/multicomponent flow simulator can simulate not only groundwater flow and a tracer in it but also the multiphase systems (e.g. gas-water, gas-water-NAPL system). Moreover, a parallelization strategy for the optimization procedure is proposed and implemented to overcome the enormous CPU time problem always tagged to real-world simulation-optimizations. This strategy succeeded in enhancing the efficiency of the overall procedure almost linearly by the number of the processors in a parallel computer. This model is then applied to study how to install the passive extraction wells for controlling the migration of methane continuously desorbed from coal seams inside the closed coal mine in the Ruhr, Germany. The general rule proposed as the result of the application is rather simple although it is considered very useful in many practices of coal mining operations. This paper briefly outlines the overall procedure.
机译:本文的主要目的是演示一种新的模拟优化模型的功能,该模型专门用于研究德国鲁尔的一家封闭式煤矿的最优管理策略。本文涉及多相/多组分流动模拟。优化模型(模拟退火);网格生成功能;他们的耦合;并使用并行计算机。首先,在处理实际问题时经常需要的复杂系统配置的建模过程中,网格生成函数包含在整个过程中。多相/多组分流量模拟器不仅可以模拟地下水流和其中的示踪剂,还可以模拟多相系统(例如,气-水,气-水-NAPL系统)。此外,提出并实施了用于优化程序的并行化策略,以克服总是贴在现实世界中的仿真优化中的巨大CPU时间问题。该策略成功地通过并行计算机中的处理器数量线性地提高了整个过程的效率。然后将该模型用于研究如何安装被动抽采井,以控制在德国鲁尔的封闭煤矿内部从煤层连续解吸的甲烷的运移。尽管由于在许多煤矿开采实践中被认为非常有用,但作为该应用程序结果提出的一般规则相当简单。本文简要概述了整个过程。

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