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Critical and supercritical withdrawal from a two-layer fluid through a line sink in a partially bounded aquifer

机译:通过部分受限含水层中的管线汇从两层流体中进行临界和超临界抽取

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摘要

The steady response of the interface between two fluids of different density in a bounded aquifer is considered during extraction through a line sink. Both critical and supercritical withdrawals are investigated. An analytical solution is developed to determine the interface location and withdrawal strength for critical withdrawals when only one fluid is pulled into the sink. Supercritical flows are considered in which both fluids are drawn directly into the sink. A boundary integral method is used to calculate the interface location that depends on the supercritical withdrawal rate and the aquifer configuration. It is shown that for each withdrawal rate greater than the critical value, the entry angle of the interface decreases as the withdrawal rate increases. The minimum entry angle depends on the aquifer configuration, i.e., the ratio between the sink height and the impermeable boundary height. The steepest entry angle approaches frac(π, 2), where the interface shape approaches that given by the analytical solution for the critical rate, and the flow rate approaches the critical value. The viscosity ratio of the two fluids affects the effective withdrawal rate G. If the upper fluid is much more viscous than the lower fluid, coning is much less likely.
机译:有限制的含水层中两种密度不同的流体之间的界面的稳定响应是在通过管线水槽抽水时考虑的。关键和超临界退出都进行了研究。开发了一种分析解决方案,可以确定当仅一种流体被吸入水槽时,用于关键抽取的接口位置和抽取强度。考虑了超临界流,其中两种流体都直接吸入水槽。边界积分法用于计算取决于超临界抽水速率和含水层构造的界面位置。结果表明,对于每个大于临界值的退出速率,界面的进入角随退出速率的增加而减小。最小进入角取决于含水层的构造,即水槽高度与不可渗透边界高度之间的比值。最陡的入射角接近frac(π,2),其中界面形状接近临界速率的解析解所给出的形状,而流量接近临界值。两种流体的粘度比会影响有效抽水速率G。如果上部流体比下部流体粘稠得多,则锥化的可能性就小得多。

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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