Using the Airborne Snow Observatory to Assess Remotely Sensed Snowfall Product in the California Sierra Nevada

被引:23
作者
Behrangi, Ali [1 ,2 ]
Bormann, Kat J. [2 ]
Painter, Thomas H. [2 ]
机构
[1] Univ Arizona, Dept Hydrol & Atmospher Sci, Tucson, AZ 85721 USA
[2] CALTECH, Jet Prop Lab, Pasadena, CA 91109 USA
基金
美国国家航空航天局;
关键词
NORTH PACIFIC-OCEAN; PRECIPITATION ESTIMATION; ATMOSPHERIC RIVERS; PASSIVE MICROWAVE; SATELLITE; WINTER; RAINFALL; ACCURACY; TERRAIN; DENSITY;
D O I
10.1029/2018WR023108
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The Airborne Snow Observatory (ASO) performed two acquisitions over two mountainous basins in California on 29 January and 3 March 2017, encompassing two atmospheric river events that brought heavy snowfall to the area. These surveys produced high-resolution (50 m) maps of snow depth and snow water equivalent (SWE) that were used to estimate monthly areal snowfall accumulation. Comparison of ASO snow accumulation with point measurements showed that the ASO estimates ranged from -10 to +16% relative bias across three sites, which is likely inflated by the disagreement in areal representation of the quantities from the actual errors in these products. The aggregated SWE accumulations from ASO are then used to evaluate a suite of in situ based and remote sensing precipitation products. During the study period, Parameter-Elevation Regressions on Independent Slopes Model (PRISM) and Mountain Mapper estimates had relative bias <10% compared with ASO-based estimates of snow accumulation, but satellite and radar products largely underestimate snowfall accumulation compared to ASO (up to 50%). Despite their underestimation, satellite and radar products show correlation coefficients >0.8 with ASO snow accumulation over the selected grids at the monthly scale. Finally, we leveraged the fine-scale sampling of the spatially complete ASO products to show that by moving from 100 m to 2 km spatial scales, the perceived bias errors SWE at point locations increased by an order of magnitude, displaying a nonlinear relationship. The study demonstrates that ASO acquisitions in cold months can bring a new and effective approach to spatial evaluation of precipitation products.
引用
收藏
页码:7331 / 7346
页数:16
相关论文
共 73 条
[1]  
[Anonymous], 2018, Thriving on Our Changing Planet: A Decadal Strategy for Earth Observation from Space. Page, P24938, DOI DOI 10.17226/24938
[2]  
[Anonymous], 2018, ALGORITHM THEORETICA
[3]   PERSIANN-CDR Daily Precipitation Climate Data Record from Multisatellite Observations for Hydrological and Climate Studies [J].
Ashouri, Hamed ;
Hsu, Kuo-Lin ;
Sorooshian, Soroosh ;
Braithwaite, Dan K. ;
Knapp, Kenneth R. ;
Cecil, L. Dewayne ;
Nelson, Brian R. ;
Prat, Olivier P. .
BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY, 2015, 96 (01) :69-+
[4]   Investigating Satellite Precipitation Uncertainty Over Complex Terrain [J].
Bartsotas, N. S. ;
Anagnostou, E. N. ;
Nikolopoulos, E. I. ;
Kallos, G. .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2018, 123 (10) :5346-5359
[5]   On distinguishing snowfall from rainfall using near-surface atmospheric information: Comparative analysis, uncertainties and hydrologic importance [J].
Behrangi, Ali ;
Yin, Xungang ;
Rajagopal, Seshadri ;
Stampoulis, Dimitrios ;
Ye, Hengchun .
QUARTERLY JOURNAL OF THE ROYAL METEOROLOGICAL SOCIETY, 2018, 144 :89-102
[6]   Using GRACE to constrain precipitation amount over cold mountainous basins [J].
Behrangi, Ali ;
Gardner, Alex S. ;
Reager, John T. ;
Fisher, Joshua B. .
GEOPHYSICAL RESEARCH LETTERS, 2017, 44 (01) :219-227
[7]   On the Quantification of Atmospheric Rivers Precipitation from Space: Composite Assessments and Case Studies over the Eastern North Pacific Ocean and the Western United States [J].
Behrangi, Ali ;
Guan, Bin ;
Neiman, Paul J. ;
Schreier, Mathias ;
Lambrigtsen, Bjorn .
JOURNAL OF HYDROMETEOROLOGY, 2016, 17 (01) :369-382
[8]   Satellite-Based Precipitation Estimation and Its Application for Streamflow Prediction over Mountainous Western US Basins [J].
Behrangi, Ali ;
Andreadis, Konstantinos ;
Fisher, Joshua B. ;
Turk, F. Joseph ;
Granger, Stephanie ;
Painter, Thomas ;
Das, Narendra .
JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY, 2014, 53 (12) :2823-2842
[9]   What does CloudSat reveal about global land precipitation detection by other spaceborne sensors? [J].
Behrangi, Ali ;
Tian, Yudong ;
Lambrigtsen, Bjorn H. ;
Stephens, Graeme L. .
WATER RESOURCES RESEARCH, 2014, 50 (06) :4893-4905
[10]   THE SENSITIVITY OF WINTER EVAPORATION TO THE FORMULATION OF AERODYNAMIC RESISTANCE IN THE ECMWF MODEL [J].
BELJAARS, ACM ;
VITERBO, P .
BOUNDARY-LAYER METEOROLOGY, 1994, 71 (1-2) :135-149