Large Precipitation Gradients along the South Coast of Alaska Revealed by Spaceborne Radars
Author:
Affiliation:
1. Graduate School of Science, Kyoto University, Kyoto, Japan
Publisher
Meteorological Society of Japan
Subject
Atmospheric Science
Link
https://www.jstage.jst.go.jp/article/jmsj/99/1/99_2021-001/_pdf
Reference48 articles.
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2. Battaglia, A., P. Kollias, R. Dhillon, R. Roy, S. Tanelli, K. Lamer, M. Grecu, M. Lebsock, D. Watters, K. Mroz, G. Heymsfield, L. Li, and K. Furukawa, 2020: Spaceborne cloud and precipitation radars: Status, challenges, and ways forward. Rev. Geophys., 58, e2019RG000686, doi:10.1029/2019RG000686.
3. Berg, W., T. L'ecuyer, and J. M. Haynes, 2010: The distribution of rainfall over oceans from spaceborne radars. J. Appl. Meteor. Climatol., 49, 535-543.
4. Biasutti, M., S. E. Yuter, C. D. Burleyson, and A. H. Sobel, 2012: Very high resolution rainfall patterns measured by TRMM precipitation radar: Seasonal and diurnal cycles. Climate Dyn., 39, 239-258.
5. Casella, D., G. Panegrossi, P. Sanò, A. C. Marra, S. Dietrich, B. T. Johnson, and M. S. Kulie, 2017: Evaluation of the GPM-DPR snowfall detection capability: Comparison with CloudSat-CPR. Atmos. Res., 197, 64-75.
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