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  • (-) WSL Research Units = Mountain Hydrology and Mass Movements
  • (-) Publication Year = 2019
  • (-) Keywords ≠ PREVAH model
  • (-) WSL Authors ≠ Malle, Johanna T.
  • (-) WSL Authors ≠ Zappa, Massimiliano
Search Results 41 - 60 of 89
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Spatiotemporal variability in hydrochemistry of shallow groundwater in a small pre‐alpine catchment: the importance of landscape elements
Kiewiet, L., von Freyberg, J., & van Meerveld, H. J. (I. ). (2019). Spatiotemporal variability in hydrochemistry of shallow groundwater in a small pre‐alpine catchment: the importance of landscape elements. Hydrological Processes, 33(19), 2502-2522. https://doi.org/10.1002/hyp.13517
Quantifying new water fractions and transit time distributions using ensemble hydrograph separation: theory and benchmark tests
Kirchner, J. W. (2019). Quantifying new water fractions and transit time distributions using ensemble hydrograph separation: theory and benchmark tests. Hydrology and Earth System Sciences, 23(1), 303-349. https://doi.org/10.5194/hess-23-303-2019
New water fractions and transit time distributions at Plynlimon, Wales, estimated from stable water isotopes in precipitation and streamflow
Knapp, J. L. A., Neal, C., Schlumpf, A., Neal, M., & Kirchner, J. W. (2019). New water fractions and transit time distributions at Plynlimon, Wales, estimated from stable water isotopes in precipitation and streamflow. Hydrology and Earth System Sciences, 23(10), 4367-4388. https://doi.org/10.5194/hess-23-4367-2019
Snow depth variability in the Northern Hemisphere mountains observed from space
Lievens, H., Demuzere, M., Marshall, H. P., Reichle, R. H., Brucker, L., Brangers, I., … De Lannoy, G. J. M. (2019). Snow depth variability in the Northern Hemisphere mountains observed from space. Nature Communications, 10, 4629 (12 pp.). https://doi.org/10.1038/s41467-019-12566-y
Modelling rockfall impact with scarring in compactable soils
Lu, G., Caviezel, A., Christen, M., Demmel, S. E., Ringenbach, A., Bühler, Y., … Bartelt, P. (2019). Modelling rockfall impact with scarring in compactable soils. Landslides, 16, 2353-2367. https://doi.org/10.1007/s10346-019-01238-z
Seasonal response of a scree slope
Lucas Guzman, D. R. (2019). Seasonal response of a scree slope [Doctoral dissertation, ETH Zurich]. https://doi.org/10.3929/ethz-b-000377426
Projections of Alpine snow-cover in a high-resolution climate simulation
Lüthi, S., Ban, N., Kotlarski, S., Steger, C. R., Jonas, T., & Schär, C. (2019). Projections of Alpine snow-cover in a high-resolution climate simulation. Atmosphere, 10(8), 463 (18 pp.). https://doi.org/10.3390/atmos10080463
Influence of spatial resolution on snow cover dynamics for a coastal and mountainous region at high latitudes (Norway)
Magnusson, J., Eisner, S., Huang, S., Lussana, C., Mazzotti, G., Essery, R., … Beldring, S. (2019). Influence of spatial resolution on snow cover dynamics for a coastal and mountainous region at high latitudes (Norway). Water Resources Research, 55(7), 5612-5630. https://doi.org/10.1029/2019WR024925
Infrasound array analysis of debris flow activity and implication for early warning
Marchetti, E., Walter, F., Barfucci, G., Genco, R., Wenner, M., Ripepe, M., … Price, C. (2019). Infrasound array analysis of debris flow activity and implication for early warning. Journal of Geophysical Research F: Earth Surface, 124(2), 567-587. https://doi.org/10.1029/2018JF004785
History-dependent threshold for motion revealed by continuous bedload transport measurements in a steep mountain stream
Masteller, C. C., Finnegan, N. J., Turowski, J. M., Yager, E. M., & Rickenmann, D. (2019). History-dependent threshold for motion revealed by continuous bedload transport measurements in a steep mountain stream. Geophysical Research Letters, 46(5), 2583-2591. https://doi.org/10.1029/2018GL081325
The open global glacier model (OGGM) v1.1
Maussion, F., Butenko, A., Champollion, N., Dusch, M., Eis, J., Fourteau, K., … Marzeion, B. (2019). The open global glacier model (OGGM) v1.1. Geoscientific Model Development, 12(3), 909-931. https://doi.org/10.5194/gmd-12-909-2019
Revisiting snow cover variability and canopy structure within forest stands: insights from airborne lidar data
Mazzotti, G., Currier, W. R., Deems, J. S., Pflug, J. M., Lundquist, J. D., & Jonas, T. (2019). Revisiting snow cover variability and canopy structure within forest stands: insights from airborne lidar data. Water Resources Research, 55(7), 6198-6216. https://doi.org/10.1029/2019WR024898
Instruments and methods: hot-water borehole drilling at a high-elevation debris-covered glacier
Miles, K. E., Miles, E. S., Hubbard, B., Quincey, D. J., Rowan, A. V., & Pallett, M. (2019). Instruments and methods: hot-water borehole drilling at a high-elevation debris-covered glacier. Journal of Glaciology, 65(253), 822-832. https://doi.org/10.1017/jog.2019.49
Surface and subsurface hydrology of debris-covered Khumbu Glacier, Nepal, revealed by dye tracing
Miles, K. E., Hubbard, B., Quincey, D. J., Miles, E. S., Irvine-Fynn, T. D. L., & Rowan, A. V. (2019). Surface and subsurface hydrology of debris-covered Khumbu Glacier, Nepal, revealed by dye tracing. Earth and Planetary Sciences Letters, 513, 176-186. https://doi.org/10.1016/j.epsl.2019.02.020
Snow microwave complex permittivity measured with resonator sensors
Naderpour, R., Schwank, M., & Houtz, D. (2019). Snow microwave complex permittivity measured with resonator sensors. In 2019 IEEE international geoscience and remote aensing symposium. Proceedings (pp. 3978-3981). https://doi.org/10.1109/IGARSS.2019.8900530
Field calibration of the Swiss plate geophone system at the Albula stream and comparison with controlled flume experiments
Nicollier, T., Rickenmann, D., & Hartlieb, A. (2019). Field calibration of the Swiss plate geophone system at the Albula stream and comparison with controlled flume experiments (p. 8 pp.). Presented at the SEDHYD 2019. .
Bias correction of airborne thermal infrared observations over forests using melting snow
Pestana, S., Chickadel, C. C., Harpold, A., Kostadinov, T. S., Pai, H., Tyler, S., … Lundquist, J. D. (2019). Bias correction of airborne thermal infrared observations over forests using melting snow. Water Resources Research, 55(12), 11331-11343. https://doi.org/10.1029/2019WR025699
Topographic controls on the extension and retraction of flowing streams
Prancevic, J. P., & Kirchner, J. W. (2019). Topographic controls on the extension and retraction of flowing streams. Geophysical Research Letters, 46(4), 2084-2092. https://doi.org/10.1029/2018GL081799
Small scale debris-flow experiments on run-up height
Rickenmann, D., Karrer, T., McArdell, B., & Scheidl, C. (2019). Small scale debris-flow experiments on run-up height. In J. W. Kean, J. A. Coe, P. M. Santi, & B. K. Guillen (Eds.), Association of environmental and engineering geologists special publication: Vol. 28. Debris-flow hazards mitigation: mechanics, monitoring, modeling, and assessment (pp. 414-420). https://doi.org/10.25676/11124/173191
Schützt der Wald vor Rutschungen? Hinweise aus der WSL-Rutschungsdatenbank
Rickli, C., Graf, F., Bebi, P., Bast, A., Loup, B., & McArdell, B. (2019). Schützt der Wald vor Rutschungen? Hinweise aus der WSL-Rutschungsdatenbank. Schweizerische Zeitschrift für Forstwesen, 170(6), 310-317. https://doi.org/10.3188/szf.2019.0310