Radar measurements of blowing snow off a mountain ridge
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M. Lehning | H. Huwald | Y. Bühler | B. Walter | J. Gehring
[1] anonymous. Review of the paper “Radar measurements of blowing snow off a mountain ridge” , 2020 .
[2] M. Parlange,et al. Preferential Deposition of Snow and Dust Over Hills: Governing Processes and Relevant Scales , 2019, Journal of Geophysical Research: Atmospheres.
[3] G. Picard,et al. Observation of the process of snow accumulation on the Antarctic Plateau by time lapse laser scanning , 2019, The Cryosphere.
[4] Alexander V. Ryzhkov,et al. Radar Polarimetry for Weather Observations , 2019, Springer Atmospheric Sciences.
[5] M. Lehning,et al. Understanding snow bedform formation by adding sintering to a cellular automata model , 2019, The Cryosphere.
[6] M. Lehning,et al. The Importance of Near-Surface Winter Precipitation Processes in Complex Alpine Terrain , 2019, Journal of Hydrometeorology.
[7] M. Naaim,et al. A meteorological and blowing snow data set (2000–2016) from a high-elevation alpine site (Col du Lac Blanc, France, 2720 m a.s.l.) , 2019, Earth System Science Data.
[8] Y. Bühler,et al. Schneedecke als Wasserspeicher. Drohnen können helfen, die Abschätzungen der Schneereserven zu verbessern , 2019 .
[9] V. Vionnet,et al. The Seasonal Snow Cover Dynamics: Review on Wind-Driven Coupling Processes , 2018, Front. Earth Sci..
[10] M. Lehning,et al. On the suitability of the Thorpe–Mason model for calculating sublimation of saltating snow , 2018, The Cryosphere.
[11] P. Sirguey,et al. Repeat mapping of snow depth across an alpine catchment with RPAS photogrammetry , 2018, The Cryosphere.
[12] U. Germann,et al. Spatial variability in snow precipitation and accumulation in COSMO–WRF simulations and radar estimations over complex terrain , 2018, The Cryosphere.
[13] Michael Lehning,et al. The European mountain cryosphere: a review of its current state, trends, and future challenges , 2018 .
[14] Y. Bühler,et al. Drohneneinsatz für die Kartierung der Schneehöhenverteilung , 2018 .
[15] Yuekui Yang,et al. Blowing Snow Sublimation and Transport over Antarctica from 11 Years of CALIPSO Observations , 2017 .
[16] V. Masson,et al. High‐Resolution Large Eddy Simulation of Snow Accumulation in Alpine Terrain , 2017 .
[17] Timothy J. Garrett,et al. Using snowflake surface area-to-volume ratio to model and interpret snowfall triple-frequency radar signatures , 2017 .
[18] M. Lehning,et al. A close‐ridge small‐scale atmospheric flow field and its influence on snow accumulation , 2017 .
[19] M. Lehning,et al. Snow farming: conserving snow over the summer season , 2017 .
[20] A. Stoffel,et al. Photogrammetric reconstruction of homogenous snow surfaces in alpine terrain applying near-infrared UAS imagery , 2017 .
[21] Gianfranco Forlani,et al. Testing Accuracy and Repeatability of UAV Blocks Oriented with GNSS-Supported Aerial Triangulation , 2017, Remote. Sens..
[22] N. Huang,et al. Numerical simulation of the falling snow deposition over complex terrain , 2017 .
[23] J. Pomeroy,et al. Near-surface snow particle dynamics from particle tracking velocimetry and turbulence measurements during alpine blowing snow storms , 2016 .
[24] J. Pomeroy,et al. Accuracy of snow depth estimation in mountain and prairie environments by an unmanned aerial vehicle , 2016 .
[25] Andreas Stoffel,et al. Mapping snow depth in alpine terrain with unmanned aerial systems (UASs): potential and limitations , 2016 .
[26] D. Kristovich,et al. Blowing Snow as a Natural Glaciogenic Cloud Seeding Mechanism , 2015 .
[27] M. Heiser,et al. Improving a terrain-based parameter for the assessment of snow depths with TLS data in the Col du Lac Blanc area , 2015 .
[28] Michael Lehning,et al. Experimental assessment of Owen's second hypothesis on surface shear stress induced by a fluid during sediment saltation , 2014 .
[29] K. Fujita,et al. Snow particle speeds in drifting snow , 2014 .
[30] Jiarong Hong,et al. Natural snowfall reveals large-scale flow structures in the wake of a 2.5-MW wind turbine , 2014, Nature Communications.
[31] M. Schneebeli,et al. Orographic effects on snow deposition patterns in mountainous terrain , 2014 .
[32] Michael Lehning,et al. Snow particle characteristics in the saltation layer , 2014 .
[33] Robert J. Gurney,et al. Simulating wind-affected snow accumulations at catchment to basin scales , 2013 .
[34] Betty Sovilla,et al. High‐resolution radar measurements of snow avalanches , 2013 .
[35] Pavlos Kollias,et al. Improved Micro Rain Radar snow measurements using Doppler spectra post-processing , 2012 .
[36] L. Mona,et al. Lidar Measurements for Desert Dust Characterization: An Overview , 2012 .
[37] M. Lehning,et al. Shear-Stress Partitioning in Live Plant Canopies and Modifications to Raupach’s Model , 2012, Boundary-Layer Meteorology.
[38] Michael Lehning,et al. Persistence in intra‐annual snow depth distribution: 1. Measurements and topographic control , 2011 .
[39] H. Löwe,et al. Drifting snow sublimation: A high‐resolution 3‐D model with temperature and moisture feedbacks , 2011 .
[40] M. Maahn,et al. Observation of snowfall with a low-power FM-CW K-band radar (Micro Rain Radar) , 2011 .
[41] Y. Pointin,et al. Aliasing in Micro Rain Radar data due to strong vertical winds , 2011 .
[42] Michael Lehning,et al. Wind influence on snow depth distribution and accumulation over glaciers , 2010 .
[43] R. Armstrong,et al. Snow and Climate: Physical Processes, Surface Energy Exchange and Modeling , 2010 .
[44] Mohamed Naaim,et al. Back analysis of drifting-snow measurements over an instrumented mountainous site , 2010, Annals of Glaciology.
[45] M. E. Rindol. Validation of an application for forecasting blowing snow , 2010 .
[46] M. Lehning,et al. Inhomogeneous precipitation distribution and snow transport in steep terrain , 2008 .
[47] Michael Lehning,et al. Snow saltation threshold measurements in a drifting-snow wind tunnel , 2006 .
[48] Gerhard Peters,et al. Profiles of Raindrop Size Distributions as Retrieved by Microrain Radars , 2005 .
[49] M. Nemoto,et al. Blowing snow at Mizuho station, Antarctica , 2005, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences.
[50] G. Moore. Mount Everest snow plume: A case study , 2004 .
[51] G. Peters,et al. Rain observations with a vertically looking Micro Rain Radar (MRR) , 2002 .
[52] L. Mérindol,et al. Validation of an application for forecasting blowing snow , 1998, Annals of Glaciology.
[53] John W. Pomeroy,et al. Estimates of Threshold Wind Speeds for Snow Transport Using Meteorological Data. , 1997 .
[54] D. Gray,et al. Small-Scale Spatial Structure of Shallow Snowcovers , 1996 .
[55] P. Föhn. Snow Transport Over Mountain Crests , 1980, Journal of Glaciology.
[56] R. Schmidt. Threshold Wind-Speeds and Elastic Impact in Snow Transport , 1980, Journal of Glaciology.
[57] R. Bagnold,et al. The Physics of Blown Sand and Desert Dunes , 1941 .