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首页> 外文期刊>Journal of Petroleum Science & Engineering >A novel approach for automatic grid generation for multi-phase flow simulators: A robust computational framework for mass transfer at bubble point pressure
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A novel approach for automatic grid generation for multi-phase flow simulators: A robust computational framework for mass transfer at bubble point pressure

机译:一种用于多相流模拟器的自动网格生成的新方法:在气泡点压力下进行传质的强大计算框架

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Coarsening from fine geological model to dynamic coarse scale is an essential task in reservoir simulation. In this paper a new approach is introduced to create a coarse dynamic model based on effective parameters of fluid flow in porous media. In this technique, the effects of fine scale permeability map, key flow paths (streamlines) and well location are considered to build a coarse dynamic model from a fine geological one. An exact element size map is generated by comparing all the mentioned effective parameters and making the element size indicator by selecting the maximum value. This element size map (background grid) is applied to build an unstructured mesh for discretization of the reservoir. Afterward, this intelligent mesh generator was employed in three-phase flow simulation. Moreover, a novel computational framework is developed for the evaluation of bubble point pressure to prevent divergence of the solution when the reservoir conditions change. To evaluate the performance of the developed model, the fluid flow rate obtained by this model is compared to that obtained by the uniform grid model. It is found that the proposed method provides more accurate results for fluid flow rate compared to the uniform grid model. Moreover, it is faster and computationally less expensive than the fine model. This model can be applied in reservoir simulators and provides more accurate and reliable results in less CPU time compared to the traditional mesh generation techniques. In addition, the proposed model solves the problem of divergence of the solution at the bubble point pressure. (C) 2015 Elsevier B.V. All rights reserved.
机译:从精细地质模型到动态粗尺度的粗化是油藏模拟中必不可少的任务。本文介绍了一种基于多孔介质中流体流动的有效参数创建粗略动力学模型的新方法。在这项技术中,考虑了精细比例渗透率图,关键流动路径(流线)和井位的影响,从而根据精细地质构造了一个粗略的动力学模型。通过比较所有提到的有效参数并通过选择最大值作为元素尺寸指示符,可以生成精确的元素尺寸图。应用该元素尺寸图(背景网格)来构建非结构化网格,以离散化储层。之后,该智能网格生成器被用于三相流模拟。此外,开发了一种新颖的计算框架来评估泡点压力,以防止储层条件变化时溶液的发散。为了评估开发模型的性能,将通过此模型获得的流体流速与通过均匀网格模型获得的流体流速进行比较。发现与均匀网格模型相比,该方法为流体流速提供了更准确的结果。而且,与精细模型相比,它更快且计算成本更低。与传统的网格生成技术相比,该模型可以应用于油藏模拟器中,并以更少的CPU时间提供更准确,更可靠的结果。另外,所提出的模型解决了在泡点压力下溶液发散的问题。 (C)2015 Elsevier B.V.保留所有权利。

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