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首页> 外文期刊>Geophysical Research Letters >Exact three-dimensional spectral solution to surface-groundwater interactions with arbitrary surface topography
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Exact three-dimensional spectral solution to surface-groundwater interactions with arbitrary surface topography

机译:具有任意表面形貌的地表-地下水相互作用的精确三维光谱解

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It has been long known that land surface topography governs both groundwater flow patterns at the regional-to-continental scale and on smaller scales such as in the hyporheic zone of streams. Here we show that the surface topography can be separated in a Fourier-series spectrum that provides an exact solution of the underlying three-dimensional groundwater flows. The new spectral solution offers a practical tool for fast calculation of subsurface flows in different hydrological applications and provides a theoretical platform for advancing conceptual understanding of the effect of landscape topography on subsurface flows. We also show how the spectrum of surface topography influences the residence time distribution for subsurface flows. The study indicates that the subsurface head variation decays exponentially with depth faster than it would with equivalent two-dimensional features, resulting in a shallower flow interaction.
机译:长期以来,众所周知,地表地形决定了区域到大陆范围以及较小范围(例如河流的流变带)中的地下水流模式。在这里,我们显示了可以在傅立叶级数谱中分离表面形貌,从而提供了基础三维地下水流的精确解决方案。新的频谱解决方案为快速计算不同水文应用中的地下流量提供了一种实用的工具,并为增进对地形地形对地下流量影响的概念理解提供了理论平台。我们还显示了表面形貌的光谱如何影响地下流的停留时间分布。研究表明,地下头部的变化深度比同等的二维特征要快得多,从而导致了较浅的流动相互作用。

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