首页> 外文期刊>Journal of Hydrology >Solute transport in heterogeneous karst systems: Dimensioning and estimation of the transport parameters via multi-sampling tracer-tests modelling using the OTIS (One-dimensional Transport with Inflow and Storage) program
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Solute transport in heterogeneous karst systems: Dimensioning and estimation of the transport parameters via multi-sampling tracer-tests modelling using the OTIS (One-dimensional Transport with Inflow and Storage) program

机译:异质岩溶系统中的溶质运移:使用OTIS(带流入量和存储量的一维运移)程序,通过多重采样示踪剂测试建模来确定运移参数的尺寸和估计

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This paper presents the modelling results of several tracer -tests performed in the cave system of Han-surLesse (South Belgium). In Han-sur-Lesse, solute flows along accessible underground river stretches and through flooded areas that are rather unknown in terms of geometry. This paper focus on the impact of those flooded areas on solute transport and their dimensioning. The program used (Onedimensional Transport with Inflow and Storage: OTIS) is based on the two -region non equilibrium model that supposes the existence of an immobile water zone along the main flow zone in which solute can be caught. The simulations aim to replicate experimental breakthrough curves (BTCs) by adapting the main transport and geometric parameters that govern solute transport in karst conduits. Furthermore, OTIS allows a discretization of the investigated system, which is particularly interesting in systems presenting heterogeneous geometries. Simulation results show that transient storage is a major process in flooded areas and that the crossing of these has a major effect on the BTCs shape. This influence is however rather complex and very dependent of the flooded areas geometry and transport parameters. Sensibility tests performed in this paper aim to validate the model and show the impact of the parametrization on the BTCs shape. Those tests demonstrate that transient storage is not necessarily transformed in retardation. Indeed, significant tailing effect is only observed in specific conditions (depending on the system geometry and/or the flow) that allow residence time in the storage area to be longer than restitution time. This study ends with a comparison of solute transport in river stretches and in flooded areas. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文介绍了在Han-surLesse(南比利时)的洞穴系统中进行的几次示踪测试的建模结果。在勒苏河畔汉河畔,溶质沿着可到达的地下河段流经洪水,这些洪水在几何形状方面尚属未知。本文着重于这些洪灾地区对溶质运移的影响及其规模。所使用的程序(带流入量和存储量的一维传输:OTIS)基于两区域非平衡模型,该模型假定沿主流区存在固定的水区,可以在其中捕获溶质。该模拟旨在通过调整控制岩溶导管中溶质运移的主要运移和几何参数来复制实验突破曲线(BTC)。此外,OTIS可以离散化所研究的系统,这在呈现异构几何体的系统中特别有趣。仿真结果表明,瞬态存储是洪水泛滥地区的主要过程,穿越这些区域对BTC的形状有重大影响。然而,这种影响是相当复杂的,并且非常取决于淹没区的几何形状和运输参数。本文进行的敏感性测试旨在验证模型并显示参数化对BTC形状的影响。这些测试表明,瞬态存储不一定会延迟。实际上,仅在允许储存区域中的停留时间长于恢复时间的特定条件下(取决于系统几何形状和/或流量)才观察到明显的拖尾效应。这项研究最后比较了河段和洪水地区的溶质运移。 (C)2016 Elsevier B.V.保留所有权利。

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