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Reactive transport upscaling at the Darcy scale: A new flow rate based approach raises the unsolved issue of porosity upscaling

机译:达西规模的反应性输运放大:基于流速的新方法提出了孔隙度放大的未解决问题

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摘要

This article demonstrates that permeability upscaling, which can require complex techniques, is not necessary to significantly decrease the CPU time in reactive transport modeling. CPU time depends more on the geochemistry than the flow calculation. Flow rate upscaling is proposed as an alternate method to permeability upscaling, which is more suited to time-consuming flow resolution. To apply this method, a finite volume approach is most convenient.Considering the equality of flow as the equivalence criterion, when the coarse grid overlays the fine grid, flow rate upscaling leads, by construction, to the exact results, whereas the accuracy of permeability upscaling methods often depends on specific conditions. Some focus is put on the limitations of a common permeability upscaling technique, the simplified renormalization. In stationary flow, the gain in CPU time is the same for both flow rate upscaling and permeability upscaling. In transient flow, flow rate upscaling is slightly less time-efficient but the ratio between both CPU times decreases when the geochemistry is more complex.Working with an accurate flow rate field in the upscaled case reveals that porosity upscaling is a surprisingly tricky issue. Solution mixing is induced and residence times can be significantly affected. These changes have potentially important consequences on reactive transport modeling. They are not specific to the flow rate upscaling method; they are a general issue. Some simplified cases, assuming a homogeneous mineralogy, are examined. At this stage, a simple heuristic method is proposed, which yields reliable results under particular conditions (high heterogeneity). Porosity upscaling remains an open research field.
机译:本文证明,渗透率提升可能需要复杂的技术,对于显着减少反应性传输建模中的CPU时间并不必要。 CPU时间更多地取决于地球化学而不是流量计算。提出将流量放大作为渗透率放大的替代方法,它更适合于耗时的流量解析。要应用此方法,最有限的方法是最方便的。将流量相等作为当量标准,当粗网格覆盖细网格时,通过构造,流量放大会导致精确的结果,而渗透率的准确性升级方法通常取决于特定条件。一些重点放在了常见的渗透率放大技术(简化的重新规范化)的局限性上。在固定流量中,流量提升和渗透率提升的CPU时间收益是相同的。在瞬变流中,流速放大的时间效率略低,但是当地球化学更加复杂时,两个CPU时间之间的比率会降低。在放大的情况下使用准确的流速场显示孔隙率放大是一个令人惊讶的棘手问题。引起溶液混合,并且停留时间会受到显着影响。这些变化对反应性运输模型具有潜在的重要影响。它们不特定于流量放大方法;他们是一个普遍的问题。假设均一的矿物学,研究了一些简化的情况。在这一阶段,提出了一种简单的启发式方法,该方法在特定条件下(高异质性)可获得可靠的结果。孔隙度提升仍然是一个开放的研究领域。

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  • 来源
    《Advances in Water Resources》 |2011年第10期|p.1239-1248|共10页
  • 作者

    J. Nos; V. Lagneau; V. Langlais;

  • 作者单位

    Tour AREVA, 1, place Jean Millier, 92084 Paris La Defense Cedex, France,Ecole des Mines de Paris, Centre de Ceosciences, 35 rue St. Honore, 77305 Fontainebleau Cedex, France;

    Ecole des Mines de Paris, Centre de Ceosciences, 35 rue St. Honore, 77305 Fontainebleau Cedex, France;

    Tour AREVA, 1, place Jean Millier, 92084 Paris La Defense Cedex, France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    reactive transport permeability upscaling porosity upscaling darcy scale;

    机译:反应输运渗透率递增孔隙率递增达西尺度;

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