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A physically based model concept for transport modelling in coupled hydrosystems

机译:基于物理的模型概念在耦合水系统中进行输运建模

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摘要

Hydrosystems are very complex systems with numerous processes occuring simultaneously at different spatial and temporal scales. In this paper we present the concept of a compartment approach for the analysis of coupled hydrosystems including heat and mass transport. In this concept, flow and transport processes are coupled via their compartment (or process domain) boundaries without giving up the computational necessities and optimisations for the numerical solution of each individual process. In this new approach, random walk particle tracking (RWPT) methods are integrated into the coupled hydrosystem analysis. We briefly introduce the RWPT method and the governing equations for water flow, heat, and mass transport in aquifers, soils and on surfaces. Flow processes are described by diffusion equations (Darcy equation for groundwater flow, Richards equation for flow in the unsaturated zone, and the diffusive wave approximation for overland flow) which are coupled by exchange fluxes. Transport processes are described by advection-diffusion equations and coupled with the exchange fluxes by advection. We present three application examples concerning flow, mass and heat transport in coupled hydrosystems based on Horton- and Dunne overland flow as well as on hyporheic flows.
机译:水文系统是非常复杂的系统,在不同的时空尺度上同时发生许多过程。在本文中,我们提出了一种用于分析耦合水系(包括热量和物质传输)的隔室方法的概念。在这个概念中,流和传输过程通过它们的区室(或过程域)边界耦合,而不必为每个过程的数值解放弃计算上的必要性和优化。在这种新方法中,随机游动粒子跟踪(RWPT)方法被集成到耦合水文系统分析中。我们简要介绍了RWPT方法以及在含水层,土壤和表面中的水流,热量和质量传输的控制方程式。用交换通量耦合的扩散方程(地下水流动的达西方程,非饱和区流动的Richards方程和陆上流动的扩散波近似)描述流动过程。输运过程由对流扩散方程描述,并与对流交换流耦合。我们给出了三个基于Horton-Dunne陆上流以及低渗流的耦合水系统中流量,质量和热传输的应用示例。

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