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Featured researches published by Luisa Hopp.


Water Resources Research | 2016

On the value of surface saturated area dynamics mapped with thermal infrared imagery for modeling the hillslope-riparian-stream continuum

Barbara Glaser; Julian Klaus; Sven Frei; Jay Frentress; Laurent Pfister; Luisa Hopp

The highly dynamic processes within a hillslope-riparian-stream (HRS) continuum are known to affect streamflow generation, but are yet not fully understood. Within this study, we simulated a headwater HRS continuum in western Luxembourg with an integrated hydrologic surface subsurface model (HydroGeoSphere). The model was set up with thorough consideration of catchment-specific attributes and we performed a multi criteria model evaluation (4 years) with special focus on the temporally varying spatial patterns of surface saturation. We used a portable thermal infrared (TIR) camera to map surface saturation with a high spatial resolution and collected 20 panoramic snapshots of the riparian zone (approx. 10 m x 20 m) under different hydrologic conditions. Qualitative and quantitative comparison of the processed TIR panoramas and the corresponding model output panoramas revealed a good agreement between spatiotemporal dynamic model and field surface saturation patterns. A double logarithmic linear relationship between surface saturation extent and discharge was similar for modeled and observed data. This provided confidence in the capability of an integrated hydrologic surface subsurface model to represent temporal and spatial water flux dynamics at small (HRS continuum) scales. However, model scenarios with different parameterizations of the riparian zone showed that discharge and surface saturation were controlled by different parameters and hardly influenced each other. Surface saturation only affected very fast runoff responses with a small volumetric contribution to stream discharge, indicating that the dynamic surface saturation in the riparian zone does not necessarily imply a major control on runoff generation. This article is protected by copyright. All rights reserved.


Journal of Hydrology | 2009

Connectivity at the hillslope scale: Identifying interactions between storm size, bedrock permeability, slope angle and soil depth

Luisa Hopp; Jeffrey J. McDonnell


Hydrology and Earth System Sciences | 2009

Hillslope hydrology under glass: confronting fundamental questions of soil-water-biota co-evolution at Biosphere 2

Luisa Hopp; Ciaran J. Harman; Sharon L. E. Desilets; Chris B. Graham; Jeffrey J. McDonnell; Peter Troch


Earth Surface Processes and Landforms | 2013

Simulated effect of soil depth and bedrock topography on near-surface hydrologic response and slope stability

Cristiano Lanni; Jeffrey J. McDonnell; Luisa Hopp; Riccardo Rigon


Environmental Science & Technology | 2008

Arsenic and chromium partitioning in a podzolic soil contaminated by chromated copper arsenate

Luisa Hopp; Peter S. Nico; Matthew A. Marcus; Stefan Peiffer


Hydrological Processes | 2015

Spatio-temporal variability of piezometric response on two steep alpine hillslopes

Daniele Penna; N. Mantese; Luisa Hopp; G. Dalla Fontana; Marco Borga


Journal of Hydrology | 2011

Examining the role of throughfall patterns on subsurface stormflow generation

Luisa Hopp; Jeffrey J. McDonnell


Hydrology and Earth System Sciences | 2012

The effect of spatial throughfall patterns on soil moisture patterns at the hillslope scale

A. M. J. Coenders-Gerrits; Luisa Hopp; Hubert H. G. Savenije; Lena Pfister


Journal of Contaminant Hydrology | 2006

Spatial variability of arsenic and chromium in the soil water at a former wood preserving site

Luisa Hopp; Stefan Peiffer; Wolfgang Durner


Journal of Plant Nutrition and Soil Science | 2004

Simulation of chromium transport in the unsaturated zone for predicting contaminant entries into the groundwater

Uwe Buczko; Luisa Hopp; Wolfgang Berger; Wolfgang Durner; Stefan Peiffer; Markus Scheithauer

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Wolfgang Durner

Braunschweig University of Technology

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Hubert H. G. Savenije

Delft University of Technology

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