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Spatial variability in specific discharge and streamwater chemistry during low flows: results from snapshot sampling campaigns in eleven Swiss catchments
Floriancic, M. G., Fischer, B. M. C., Molnar, P., Kirchner, J. W., & Meerveld, I. H. J. (2019). Spatial variability in specific discharge and streamwater chemistry during low flows: results from snapshot sampling campaigns in eleven Swiss catchments. Hydrological Processes, 33(22), 2847-2866. https://doi.org/10.1002/hyp.13532
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
Distributed modelling of snow cover instability at regional scale
Bellaire, S., van Herwijnen, A., Bavay, M., & Schweizer, J. (2018). Distributed modelling of snow cover instability at regional scale. In International snow science workshop proceedings 2018 (pp. 871-875). Retrieved from http://arc.lib.montana.edu/snow-science/item/2667
Ground-based soil moisture determination
Jonard, F., Bogena, H., Caterina, D., Garré, S., Klotzsche, A., Monerris, A., … von Hebel, C. (2018). Ground-based soil moisture determination. In X. Li & H. Vereecken (Eds.), Ecohydrology: Vol. 2. Observation and measurement (pp. 1-42). https://doi.org/10.1007/978-3-662-47871-4_2-1
Variations of snow instability seen from a bird's eye
Reuter, B., & Schweizer, J. (2016). Variations of snow instability seen from a bird's eye. In ISSW proceedings. International snow science workshop proceedings 2016 (pp. 262-165). Retrieved from http://arc.lib.montana.edu/snow-science/item/2275
Scaling precipitation input to spatially distributed hydrological models by measured snow distribution
Vögeli, C., Lehning, M., Wever, N., & Bavay, M. (2016). Scaling precipitation input to spatially distributed hydrological models by measured snow distribution. Frontiers in Earth Science, 4, 108 (15 pp.). https://doi.org/10.3389/feart.2016.00108
Are flat-field snow depth measurements representative? A comparison of selected index sites with areal snow depth measurements at the small catchment scale
Grünewald, T., & Lehning, M. (2015). Are flat-field snow depth measurements representative? A comparison of selected index sites with areal snow depth measurements at the small catchment scale. Hydrological Processes, 29(7), 1717-1728. https://doi.org/10.1002/hyp.10295
Forecasting wet-snow avalanche probability in mountainous terrain
Helbig, N., van Herwijnen, A., & Jonas, T. (2015). Forecasting wet-snow avalanche probability in mountainous terrain. Cold Regions Science and Technology, 120, 219-226. https://doi.org/10.1016/j.coldregions.2015.07.001
Relating simple drivers to snow instability
Reuter, B., van Herwijnen, A., Veitinger, J., & Schweizer, J. (2015). Relating simple drivers to snow instability. Cold Regions Science and Technology, 120, 168-178. https://doi.org/10.1016/j.coldregions.2015.06.016
Quantitative snow stratigraphy and stability derived from high-resolution penetrometry
Proksch, M., Reuter, B., Löwe, H., Schweizer, J., & Schneebeli, M. (2014). Quantitative snow stratigraphy and stability derived from high-resolution penetrometry. In ISSW proceedings. International snow science workshop proceedings 2014 (pp. 196-201). Retrieved from http://arc.lib.montana.edu/snow-science/item/2052
Simple drivers of snow instability
Reuter, B., Schweizer, J., & van Herwijnen, A. (2014). Simple drivers of snow instability. In ISSW proceedings. International snow science workshop proceedings 2014 (pp. 716-721). Retrieved from http://arc.lib.montana.edu/snow-science/item/2138
The effect of spatial variations of snowpack properties on snow slope stability: a mechanically-based statistical approach
Gaume, J., Schweizer, J., van Herwijnen, A., Chambon, G., Eckert, N., & Naaim, M. (2013). The effect of spatial variations of snowpack properties on snow slope stability: a mechanically-based statistical approach. In F. Naaim-Bouvet, Y. Durand, & R. Lambert (Eds.), ISSW proceedings. International snow science workshop proceedings 2013 (pp. 57-60). Retrieved from http://arc.lib.montana.edu/snow-science/item/1948
Weak-layer spatial variability as a possible trigger of slab tensile failure
Gaume, J., Chambon, G., Eckert, N., & Naaim, M. (2013). Weak-layer spatial variability as a possible trigger of slab tensile failure. In F. Naaim-Bouvet, Y. Durand, & R. Lambert (Eds.), ISSW proceedings. International snow science workshop proceedings 2013 (pp. 12-16). Retrieved from http://arc.lib.montana.edu/snow-science/item/1765
On modeling the formation and survival of surface hoar in complex terrain
Helbig, N., & van Herwijnen, A. (2013). On modeling the formation and survival of surface hoar in complex terrain. In F. Naaim-Bouvet, Y. Durand, & R. Lambert (Eds.), ISSW proceedings. International snow science workshop proceedings 2013 (pp. 52-56). Retrieved from http://arc.lib.montana.edu/snow-science/item/1947
Small scale spatial variability of snow density and depth over complex alpine terrain: implications for estimating snow water equivalent
López-Moreno, J. I., Fassnacht, S. R., Heath, J. T., Musselman, K. N., Revuelto, J., Latron, J., … Jonas, T. (2013). Small scale spatial variability of snow density and depth over complex alpine terrain: implications for estimating snow water equivalent. Advances in Water Resources, 55, 40-52. https://doi.org/10.1016/j.advwatres.2012.08.010
Linking weather conditions to snow property variations
Reuter, B., & Schweizer, J. (2013). Linking weather conditions to snow property variations. In F. Naaim-Bouvet, Y. Durand, & R. Lambert (Eds.), ISSW proceedings. International snow science workshop proceedings 2013 (pp. 61-64). Retrieved from http://arc.lib.montana.edu/snow-science/item/1949
Measuring spatial variations of weak layer and slab properties with regard to snow slope stability
Bellaire, S., & Schweizer, J. (2011). Measuring spatial variations of weak layer and slab properties with regard to snow slope stability. Cold Regions Science and Technology, 65(2), 234-241. https://doi.org/10.1016/j.coldregions.2010.08.013
Measurements of small scale spatial and temporal variability of snow depth and SWE in a small mountain catchment
Grünewald, T., Schirmer, M., & Lehning, M. (2009). Measurements of small scale spatial and temporal variability of snow depth and SWE in a small mountain catchment. In J. Schweizer & A. van Herwijnen (Eds.), ISSW proceedings. International snow science workshop proceedings 2009 (pp. 151-154). Retrieved from http://arc.lib.montana.edu/snow-science/item/215
Understanding snow transport processes shaping the mountain snow-cover
Mott, R., Schirmer, M., Grünewald, T., & Lehning, M. (2009). Understanding snow transport processes shaping the mountain snow-cover. In J. Schweizer & A. van Herwijnen (Eds.), ISSW proceedings. International snow science workshop proceedings 2009 (pp. 141-145). Retrieved from http://arc.lib.montana.edu/snow-science/item/213
Deriving spatial stability variations from penetration resistance measurements
Bellaire, S., & Schweizer, J. (2008). Deriving spatial stability variations from penetration resistance measurements. In ISSW proceedings. International snow science workshop proceedings 2008 (pp. 188-194). Retrieved from http://arc.lib.montana.edu/snow-science/item/29