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首页> 外文期刊>Journal of Hydrology >Modeling spatially and temporally varied hydraulic behavior of a folded karst system with dominant conduit drainage at catchment scale, Hochifen-Gottesacker, Alps
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Modeling spatially and temporally varied hydraulic behavior of a folded karst system with dominant conduit drainage at catchment scale, Hochifen-Gottesacker, Alps

机译:在集水规模上占主导的导管排水的折叠岩溶系统水力行为的时空变化模型,阿尔卑斯山,Hochifen-Gottesacker

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摘要

Karst aquifers are important for freshwater supply, but difficult to manage, due to highly variable water levels and spring discharge rates. Conduits are crucial for groundwater flow in karst aquifers, but their location is often unknown, thus limiting the applicability and validity of numerical models. We have applied a conduit model (SWMM) to simulate highly variable flow in a folded alpine karst aquifer system, where the underground drainage pattern is comparatively well-known from previous tracer studies. The conduit model was coupled with a reservoir model representing recharge, storage and transfer of water in the epikarst and unsaturated zone. The global optimization approach (GA) was applied to achieve an efficient model calibration. It was possible to simultaneously simulate the highly variable discharge characteristics of an estavelle, and overflow spring and a permanent spring draining the conduit system. The model allowed for the collection of spatially differentiated information on recharge, rapid flow and slow flow in four individual sub-catchments. The formation of backwater upgradient from conduit restrictions turned out to be a key process in activating overflow springs. The proposed modeling approach appears to be transferrable to other karst systems with predominant conduit drainage, but requires previous knowledge of the configuration of the conduit system.
机译:岩溶含水层对于淡水供应很重要,但由于水位和春季出水量变化很大,因此难以管理。管道对于岩溶含水层中的地下水至关重要,但是它们的位置通常是未知的,因此限制了数值模型的适用性和有效性。我们已经应用了导管模型(SWMM)来模拟折叠的高山喀斯特含水层系统中的高度可变的流量,该地区的地下排水模式在以前的示踪研究中相对众所周知。管道模型与储层模型相结合,代表了表层岩溶和非饱和区中水的补给,存储和转移。全局优化方法(GA)用于实现有效的模型校准。可以同时模拟动臂的高度可变的排放特性,以及排放导管系统的溢流弹簧和永久弹簧。该模型允许在四个单独的子集水区收集有关补给,快速流量和缓慢流量的空间差异信息。由导管限制而形成的回水升级被证明是激活溢流弹簧的关键过程。拟议的建模方法似乎可以转移到其他具有主要导管排泄功能的岩溶系统,但是需要对导管系统的配置有事先的了解。

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