首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >IMPACT OF INFLOW AND AMBIENT CONDITIONS ON DENSITY-INDUCED CURRENT IN A STRATIFIED RESERVOIR
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IMPACT OF INFLOW AND AMBIENT CONDITIONS ON DENSITY-INDUCED CURRENT IN A STRATIFIED RESERVOIR

机译:入流条件对分层储层中密度感应电流的影响

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摘要

The effects of inflow boundary conditions, ambient stratification, and geometry on the behavior of a density-induced current in a stratified reservoir are quantified through numerical experiments with a validated two-dimensional (2D) simulation model. Model results are analyzed to evaluate the sensitivity of reservoir flow va riables to changes in the parameters characterizing inflow and ambient water. Quantitative evidence is presented to show that reservoir flow is more sensitive to Froude and Reynolds numbers than to other parameters. A critical value for each parameter is identified, which divides significant and insignificant effects on flow and dilution.
机译:通过使用经过验证的二维(2D)模拟模型进行的数值实验,可以量化流入边界条件,环境分层和几何形状对分层储层中密度感应电流行为的影响。分析模型结果以评估储层流量变量对表征流入量和环境水的参数变化的敏感性。定量证据表明,储层流量对弗洛德和雷诺数的敏感性高于对其他参数的敏感性。确定每个参数的临界值,该临界值将对流量和稀释的影响分为明显影响和无关紧要。

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