论文标题
关于耦合的表面表面露水集水区模型的开发和分析。第2部分。三维基准模型及其特性
On the development and analysis of coupled surface-subsurface models of catchments. Part 2. A three-dimensional benchmark model and its properties
论文作者
论文摘要
这三部分工作的目的是制定和严格分析许多减少的数学模型,这些模型仍然能够描述河流盆地规模的水文学(即集水区)。考虑了耦合的表面和地下流。在第二部分中,我们构建了一个基准集水场景,并研究了参数在典型范围内的影响。先前对耦合表面表面模型的研究重点是针对特定地点流域的数值模拟。在这里,我们的重点是广泛的,强调了对数学模型的一般解决方案及其对无量纲参数的依赖性的研究。这项研究基于对几何简单的三维基准场景的检查提供了基础。我们开发了非二维耦合的表面表面模型,并提取关键无量纲参数。渐近方法证明了在什么条件下,该模型可以简化为二维形式,在山坡方向上,主要地下水和陆上流发生。数值解决方案提供了有关此类降低的有效性的指导,并证明了与强降雨事件相对应的参数依赖性。
The objective of this three-part work is to formulate and rigorously analyse a number of reduced mathematical models that are nevertheless capable of describing the hydrology at the scale of a river basin (i.e. catchment). Coupled surface and subsurface flows are considered. In this second part, we construct a benchmark catchment scenario and investigate the effects of parameters within their typical ranges. Previous research on coupled surface-subsurface models have focused on numerical simulations of site-specific catchments. Here, our focus is broad, emphasising the study of general solutions to the mathematical models, and their dependencies on dimensionless parameters. This study provides a foundation based on the examination of a geometrically simple three-dimensional benchmark scenario. We develop a nondimensional coupled surface-subsurface model and extract the key dimensionless parameters. Asymptotic methods demonstrate under what conditions the model can be reduced to a two-dimensional form, where the principal groundwater and overland flows occur in the hillslope direction. Numerical solutions provide guidance on the validity of such reductions, and demonstrate the parametric dependencies corresponding to a strong rainfall event.