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Study on the Application of the Tie-Line-Table-Look-Up-Based Methods to Flash Calculations in Compositional Simulations

机译:基于联系线表查找的方法在合成模拟中的闪光计算中的应用研究

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Flash calculation can be a time-consuming part in compositional reservoir simulations, and several approaches have been proposed to speed it up. One recent approach is the shadow-region method that reduces the computation time mainly by skipping stability analysis for a large portion of the compositions in the single-phase region. In the two-phase region, a highly efficient Newton-Raphson algorithm can be used with the initial estimates from the previous step. Another approach is the compositional-space adaptivetabulation (CSAT) approach, which is based on tie-line table look-up (TTL). It saves computation time by replacing rigorous phase-equilibrium calculations with the stored results in a tie-line table whenever the new feed composition is on one of the stored tie-lines within a certain tolerance. In this study, a modified version of CSAT, named the TTL method, has been proposed to investigate if approximation by looking up a tie-line table can save flash-computation time in the two-phase region. The number of tie-lines stored for comparison and the tolerance set for accepting the feed composition are the key parameters in this method because they will influence the simulation speed and the accuracy of simulation results. We also proposed the tie-line distance-based approximation (TDBA) method, an alternative method to TTL, to obtain approximate flash results in the two-phase region. The method uses the distance to a previous tie-line in the same gridblock to determine whether the approximation should be made. Comparison between the shadow-region approach and the approximation approach, including TTL and TDBA, has been made with a slimtube simulator by which the simulation temperature and the simulation pressure are set constant. It is shown that TDBA can significantly improve the speed in the two-phase region. In contrast, TTL, even with a precalculated tie-line table, is not so advantageous compared with an efficient implementation of rigorous flash. Furthermore, we implemented TDBA in a compositional streamline simulator to apply TDBA to scenarios with pressure variation across the reservoir. We also discussed how to extend TDBA to the general situation in which pressures in gridblocks are updated dynamically.
机译:闪速计算可能是组成油藏模拟中的一个耗时部分,并且已经提出了几种方法来加快它的速度。一种最新的方法是阴影区域方法,该方法主要通过跳过对单相区域中大部分成分的稳定性分析来减少计算时间。在两阶段区域中,可以将高效的Newton-Raphson算法与上一步的初始估计一起使用。另一种方法是成分空间自适应制表(CSAT)方法,该方法基于联系线表查找(TTL)。每当新的进料组成在一定容差范围内的存储联络线之一上时,通过将严格的相位平衡计算替换为联络线表中的存储结果,可以节省计算时间。在这项研究中,已经提出了一种名为TTL方法的CSAT的修改版本,以研究通过查找联系线表进行的近似是否可以节省两相区域中的快速计算时间。为比较而存储的联络线数量和接受进料成分的公差设置是此方法的关键参数,因为它们会影响模拟速度和模拟结果的准确性。我们还提出了基于联系线距离的近似(TDBA)方法,这是TTL的替代方法,以获得两相区域中的近似闪光结果。该方法使用到同一网格块中到前一条联络线的距离来确定是否应进行近似。阴影区域方法和近似方法(包括TTL和TDBA)之间的比较已通过slimtube仿真器完成,通过该仿真器可以将仿真温度和仿真压力设置为恒定值。结果表明,TDBA可以显着提高两相区域的速度。相比之下,与有效实施严格的闪光相比,即使使用预先计算的联系表,TTL也不是那么有利。此外,我们在合成流线模拟器中实现了TDBA,以将TDBA应用于整个储层压力变化的情况。我们还讨论了如何将TDBA扩展到动态更新网格块中压力的一般情况。

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